WO2023171665A1 - ピペリジノン誘導体又はその塩類及び該化合物を含有する有害生物防除剤並びにその使用方法 - Google Patents
ピペリジノン誘導体又はその塩類及び該化合物を含有する有害生物防除剤並びにその使用方法 Download PDFInfo
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- WO2023171665A1 WO2023171665A1 PCT/JP2023/008567 JP2023008567W WO2023171665A1 WO 2023171665 A1 WO2023171665 A1 WO 2023171665A1 JP 2023008567 W JP2023008567 W JP 2023008567W WO 2023171665 A1 WO2023171665 A1 WO 2023171665A1
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Classifications
-
- A—HUMAN NECESSITIES
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Definitions
- the present invention relates to piperidinone derivatives or salts thereof, pest control agents containing the compounds, and methods for using the same.
- Patent Document 1 reports certain piperidinone derivatives as intermediates for pharmaceutical compounds. However, these documents do not describe or suggest the control activity of these compounds against harmful organisms such as pests in the field of agriculture and horticulture and parasites of animals.
- the present inventors have conducted intensive research to develop new pest control agents, particularly agricultural and horticultural pest control agents, animal ectoparasite control agents, and animal endoparasite control agents.
- the present invention was completed based on the discovery that a compound having a piperidinone derivative as the carboxylic acid moiety of the carboxamide represented by formula (1) or a salt thereof is useful as a pest control agent.
- R 1 is (a1) (C 1 -C 6 ) alkyl group; (a2) (C 2 -C 6 ) alkenyl group; (a3) (C 2 -C 6 ) alkynyl group; (a4) (C 3 -C 6 ) cyclo Alkyl group; (a5) halo (C 1 - C 6 ) alkyl group; (a6) halo (C 2 - C 6 ) alkenyl group; (a7) halo (C 2 - C 6 ) alkynyl group; (a8) halo ( C 3 -C 6 ) cycloalkyl group; (a9) substituted (C 1 -C 6 ) alkyl group having 1 to 3 substituents each independently selected from substituent group A; (a10) substituent group Substituted (C 3 - C 6 ) cycloalkyl group having 1 to 3 substituents each independently selected from B;
- R2 is (b1) Amino group; (b2) (C 1 -C 6 ) alkyl group; (b3) (C 2 -C 6 ) alkenyl group; (b4) (C 2 -C 6 ) alkynyl group; (b5) (C 3 - C 6 ) cycloalkyl group; (b6) halo (C 1 - C 6 ) alkyl group; (b7) halo (C 2 - C 6 ) alkenyl group; (b8) halo (C 2 - C 6 ) alkynyl group (b9) halo(C 3 -C 6 )cycloalkyl group; (b10) substituted (C 1 -C 6 )alkyl group having 1 to 3 substituents each independently selected from substituent group A; (b11) Substituted (C 3 - C 6 ) cycloalkyl group having 1 to 3 substituents on the ring, each independently selected from Substituent Group B; (b
- R3 is (c1) Hydrogen atom; (c2) (C 1 -C 6 ) alkyl group; (c3) (C 3 -C 6 ) cycloalkyl group; (c4) (C 1 -C 6 ) alkoxy group; or (c5) (C 1 -C 6 ) represents an alkylcarbonyl group.
- R 2 and R 3 may be bonded to each other to form a ring.
- X represents CH 2 or an oxygen atom.
- Y represents an oxygen atom or a sulfur atom.
- Substituent group A is (d1) Cyano group; (d2) (C 1 -C 6 ) alkyl group; (d3) (C 2 -C 6 ) alkenyl group; (d4) (C 2 -C 6 ) alkynyl group; (d5) (C 3 - C6 ) cycloalkyl group; (d6) ( C1 - C6 ) alkoxy group; (d7) ( C1 - C6 ) alkylsulfanyl group; (d8) ( C1 - C6 ) alkylsulfinyl group; (d9) (C 1 - C 6 ) alkylsulfonyl group; (d10) Halo (C 1 - C 6 ) alkyl group; (d11) Halo (C 3 - C 6 ) cycloalkyl group; (d12) Halo (C 1 -C 6 ) alkoxy group; (d13) halo(C 1 -C 6 )al
- a cyano group a (C 1 -C 6 )alkyl group, a (C 1 -C 6 )alkoxy group, a halo(C 1 -C 6 )alkyl group, and a halo(C 1 -C 6 )alkoxy group, respectively. It consists of a substituted thienyl group having 1 to 3 independently selected substituents on the ring.
- Substituent group B is (e1) Cyano group; (e2) (C 1 -C 6 ) alkyl group; (e3) (C 2 -C 6 ) alkenyl group; (e4) (C 2 -C 6 ) alkynyl group; (e5) (C 3 - C6 ) cycloalkyl group; (e6) ( C1 - C6 ) alkoxy group; (e7) ( C1 - C6 ) alkylsulfanyl group; (e8) ( C1 - C6 ) alkylsulfinyl group; (e9) (C 1 -C 6 )alkylsulfonyl group; (e10) Halo (C 1 -C 6 ) alkyl group; (e11) Halo (C 3 -C 6 )cycloalkyl group; (e12) Halo (C 1 -C 6 ) alkoxy group; (e13) halo(C 1 -C 6 )alky
- Substituent group C is (f1) Halogen atom; (f2) Cyano group; (f3) Nitro group; (f4) Hydroxyl group; (f5) Carboxyl group; (f6) (C 1 - C 6 ) alkyl group; (f7) (C 2 - C 6 ) alkenyl group; (f8) (C 2 -C 6 ) alkynyl group; (f9) (C 1 -C 6 ) alkoxy group; (f10) (C 3 -C 6 ) cycloalkyl group; (f11) ( C1 - C6 ) alkylsulfanyl group; (f12) ( C1 - C6 ) alkylsulfinyl group; (f13) ( C1 - C6 ) alkylsulfonyl group; (f14) halo( C1 - C6 ) alkyl Group; (f15) Halo (C 2 - C 6 ) alkenyl group; (f16
- Substituent group D is (g1) Halogen atom; (g2) Cyano group; (g3) Nitro group; (g4) Hydroxyl group; (g5) Carboxyl group; (g6) (C 1 - C 6 ) alkyl group; (g7) (C 2 - C 6 ) alkenyl group; (g8) (C 2 -C 6 ) alkynyl group; (g9) (C 1 -C 6 ) alkoxy group; (g10) (C 3 -C 6 ) cycloalkyl group; (g11) ( C1 - C6 ) alkylsulfanyl group; (g12) ( C1 - C6 ) alkylsulfinyl group; (g13) ( C1 - C6 ) alkylsulfonyl group; (g14) halo( C1 - C6 ) alkyl Group; (g15) Halo (C 2 - C 6 ) alkenyl group; (g16
- the substituent group E is (h1) Halogen atom; (h2) Cyano group; (h3) Nitro group; (h4) Amino group; (h5) Hydroxyl group; (h6) Carboxyl group; (h7) (C 1 - C 6 ) alkyl group; ( h8) (C 1 - C 6 ) alkoxy group; (h9) (C 3 - C 6 ) cycloalkyl group; (h10) (C 1 - C 6 ) alkylsulfanyl group; (h11) (C 1 - C 6 ) Alkylsulfinyl group; (h12) (C 1 - C 6 ) alkyl sulfonyl group; (h13) halo (C 1 - C 6 ) alkyl group; (h14) halo (C 1 - C 6 ) alkoxy group; (h15) halo (C 3 -C 6 )cycloalkyl group; (h16) halo(C
- R 1 is (a3) (C 2 -C 6 ) alkynyl group; (a9) Substituted (C 1 -C 6 ) alkyl group having 1 to 3 substituents each independently selected from substituent group A; (a11) Phenyl (C 1 -C 6 ) alkyl group (excluding phenylmethyl group); (a12) Substituted phenyl (C 1 -C 6 ) alkyl group; (a13) pyridyl (C 1 -C 6 ) alkyl group; (a14) substituted pyridyl having 1 to 4 substituents on the ring, each independently selected from substituent group C; C1 - C6 ) alkyl group; (a15) ( C1 - C6 ) alkylcarbonyl group; (a16) halo( C1 - C6 ) alkylcarbonyl group; (a17) each independently selected from substituent group A Substituted (C 1 -C
- the substituent group D is (g1) Halogen atom; (g2) Cyano group; (g6) (C 1 -C 6 ) alkyl group; (g9) (C 1 -C 6 ) alkoxy group; (g11) (C 1 -C 6 ) alkylsulfanyl Group; (g14) Halo(C 1 -C 6 )alkyl group; (g17) Halo(C 1 -C
- R 1 is (a3) (C 2 -C 6 ) alkynyl group; (a9) Substituted (C 1 -C 6 ) alkyl group having 1 to 3 substituents each independently selected from substituent group A; (a11) Phenyl (C 1 -C 6 ) alkyl group (excluding phenylmethyl group); (a12) Substituted phenyl (C 1 -C 6 ) alkyl group; (a13) pyridyl (C 1 -C 6 ) alkyl group; (a14) substituted pyridyl having 1 to 4 substituents on the ring, each independently selected from substituent group C; C 1 -C 6 )alkyl group; (a16) halo(C 1 -C 6 )alkylcarbonyl group; (a17) substituent having 1 to 3 substituents each independently selected from substituent group A; 1 -C 6 ) alkylcarbonyl group; (a18)
- the substituent group D is (g1) Halogen atom; (g2) Cyano group; (g6) (C 1 -C 6 ) alkyl group; (g9) (C 1 -C 6 ) alkoxy group; (g14) Halo(C 1 -C 6 ) alkyl Group; (g19) Halo(C 1 -C 6 )alkylsulfanyl group; (g29) (C 1 -C 6 )alkoxycarbonyl group; (g73) Phenyl group; and (g74)
- a pest control agent characterized by containing the compound described in any one of [1] to [3] or a salt thereof as an active ingredient
- a pest control agent for agricultural and horticultural purposes characterized by containing the compound described in any one of [1] to [3] or its salts as an active ingredient
- An ectoparasite control agent for animals characterized by containing the compound or salt thereof according to any one of [1] to [3] as an active ingredient
- An animal endoparasite control agent characterized in that it contains the compound or its salts according to any one of [1] to [3] as an active ingredient
- a method for controlling agricultural and horticultural pests which comprises applying an effective amount of the agricultural and horticultural pest control agent according to [5] to plants or soil
- a method for controlling animal ectoparasites which comprises orally or parenterally administering an effective amount of the animal ectoparasiticide according to [6] to a target
- the compound or salt thereof of the present invention provides a piperidinone derivative represented by the general formula (1), which has excellent effects as a pest control agent.
- halo means a "halogen atom” and represents a chlorine atom, a bromine atom, an iodine atom, or a fluorine atom.
- (C 1 -C 6 )alkyl group means, for example, a methyl group, an ethyl group, a normal propyl group, an isopropyl group, a normal butyl group, an isobutyl group, a secondary butyl group, a tertiary butyl group, a normal pentyl group, an isopentyl group.
- tertiary pentyl group neopentyl group, 2,3-dimethylpropyl group, 1-ethylpropyl group, 1-methylbutyl group, 2-methylbutyl group, normal hexyl group, isohexyl group, 2-hexyl group, 3-hexyl group, Indicates a straight or branched alkyl group having 1 to 6 carbon atoms such as 2-methylpentyl group, 3-methylpentyl group, 1,1,2-trimethylpropyl group, 3,3-dimethylbutyl group, etc. .
- (C 2 -C 6 )alkenyl group means, for example, vinyl group, allyl group, isopropenyl group, 1-butenyl group, 2-butenyl group, 2-methyl-2-propenyl group, 1-methyl-2- Straight chain or branched alkenyl groups having 2 to 6 carbon atoms such as propenyl group, 2-methyl-1-propenyl group, pentenyl group, 1-hexenyl group, 3,3-dimethyl-1-butenyl group, etc.
- (C 2 -C 6 )alkynyl group refers to, for example, ethynyl group, 1-propynyl group, 2-propynyl group, 1-butynyl group, 2-butynyl group, 3-butynyl group, 3-methyl-1 - Straight chain or branched carbon such as propynyl group, 2-methyl-3-propynyl group, pentynyl group, 1-hexynyl group, 3-methyl-1-butynyl group, 3,3-dimethyl-1-butynyl group, etc. Indicates an alkynyl group having 2 to 6 atoms.
- (C 3 -C 6 ) cycloalkyl group refers to a cyclic alkyl group having 3 to 6 carbon atoms such as cyclopropyl group, cyclobutyl group, cyclopentyl group, cyclohexyl group, and "(C 1 - Examples of “C 6 ) alkoxy group” include methoxy group, ethoxy group, normal propoxy group, isopropoxy group, normal butoxy group, secondary butoxy group, tertiary butoxy group, normal pentyloxy group, isopentyloxy group, tertiary Pentyloxy group, neopentyloxy group, 2,3-dimethylpropyloxy group, 1-ethylpropyloxy group, 1-methylbutyloxy group, n-hexyloxy group, isohexyloxy group, 1,1,2-trimethylpropyl Indicates a linear or branched alkoxy group having 1 to 6 carbon atoms such as an
- Examples of the "(C 1 -C 6 )alkylsulfanyl group” include a methylsulfanyl group, an ethylsulfanyl group, a normal propylsulfanyl group, an isopropylsulfanyl group, a normal butylsulfanyl group, a secondary butylsulfanyl group, a tertiary butylsulfanyl group, Normal pentylsulfanyl group, isopentylsulfanyl group, tertiary pentylsulfanyl group, neopentylsulfanyl group, 2,3-dimethylpropylsulfanyl group, 1-ethylpropylsulfanyl group, 1-methylbutylsulfanyl group, normal hexylsulfanyl group, iso Indicates a linear or branched alkylsulfanyl group having 1 to 6 carbon
- Examples of the "(C 1 -C 6 )alkylsulfinyl group” include a methylsulfinyl group, an ethylsulfinyl group, a normal propylsulfinyl group, an isopropylsulfinyl group, a normal butylsulfinyl group, a secondary butylsulfinyl group, a tertiary butylsulfinyl group, Normal pentylsulfinyl group, isopentylsulfinyl group, tertiary pentylsulfinyl group, neopentylsulfinyl group, 2,3-dimethylpropylsulfinyl group, 1-ethylpropylsulfinyl group, 1-methylbutylsulfinyl group, normal hexylsulfinyl group, iso It represents a linear or branched
- Examples of the "(C 1 -C 6 )alkylsulfonyl group” include a methylsulfonyl group, an ethylsulfonyl group, a normal propylsulfonyl group, an isopropylsulfonyl group, a normal butylsulfonyl group, a secondary butylsulfonyl group, a tertiary butylsulfonyl group, Normal pentylsulfonyl group, isopentylsulfonyl group, tertiary pentylsulfonyl group, neopentylsulfonyl group, 2,3-dimethylpropylsulfonyl group, 1-ethylpropylsulfonyl group, 1-methylbutylsulfonyl group, normal hexylsulfonyl group, iso Indicates a linear or branche
- N-(C 1 -C 6 )alkylamino group examples include N-methylamino group, N-ethylamino group, N-normal propylamino group, N-isopropylamino group, N-normal butylamino group.
- N,N-di(C 1 -C 6 )alkylamino group examples include N,N-dimethylamino group, N,N-diethylamino group, N,N-dinormalpropylamino group, N,N-di(C 1 -C 6 )alkylamino group, -diisopropylamino group, N,N-dinormalbutylamino group, N,N-dise-butylamino group, N,N-ditertiarybutylamino group, N-methyl-N-ethylamino group, N-methyl-N - normal propylamino group, N-methyl-N-isopropylamino group, N-methyl-N-normal butylamino group, N-methyl-N-secondary butylamino group, N-methyl-N-tertiary butylamino group, N-methyl-N-normalpentylamino group, N-methyl-N-N-
- (C 1 -C 6 )alkylcarbonyl group means, for example, acetyl group, propanoyl group, butanoyl group, 2-methylpropanoyl group, pentanoyl group, 2-methylbutanoyl group, 3-methylbutanoyl group, It refers to an alkylcarbonyl group having 2 to 7 carbon atoms, such as an alkylcarbonyl group having the above-mentioned (C 1 -C 6 ) alkyl group such as a pivaloyl group or a hexanoyl group.
- (C 1 -C 6 )alkylcarbonylamino group means, for example, acetylamino group, propanoylamino group, butanoylamino group, 2-methylpropanoylamino group, pentanoylamino group, 2-methylbutanoyl
- An alkylcarbonylamino group having 2 to 7 carbon atoms such as an alkylcarbonylamino group having the above-mentioned (C 1 -C 6 ) alkyl group such as an amino group, 3-methylbutanoylamino group, pivaloylamino group, hexanoylamino group, etc. shows.
- Examples of the "(C 1 -C 6 )alkylsulfonylamino group” include a methylsulfonylamino group, an ethylsulfonylamino group, a normal propylsulfonylamino group, an isopropylsulfonylamino group, a normal butylsulfonylamino group, and a secondary butylsulfonylamino group.
- tertiary butylsulfonylamino group normal pentylsulfonylamino group, isopentylsulfonylamino group, tertiary pentylsulfonylamino group, neopentylsulfonylamino group, 2,3-dimethylpropylsulfonylamino group, 1-ethylpropylsulfonylamino group , 1-methylbutylsulfonylamino group, n-hexylsulfonylamino group, isohexylsulfonylamino group, 1,1,2-trimethylpropylsulfonylamino group, etc.
- linear or branched alkyl having 1 to 6 carbon atoms Indicates a sulfonylamino group.
- N-(C 1 -C 6 )alkylaminocarbonyl group means, for example, N-methyl-aminocarbonyl group, N-ethylaminocarbonyl group, N-normalpropylaminocarbonyl group, N-isopropylaminocarbonyl group, -Normal butylaminocarbonyl group, N-isobutylaminocarbonyl group, N-secondary butylaminocarbonyl group, N-tertiary butylaminocarbonyl group, N-normalpentylaminocarbonyl group, N-isopentylaminocarbonyl group, N-tertiary Contains a linear or branched alkyl group having 1 to 6 carbon atoms, such as a liepentylaminocarbonyl group, N-neopentylaminocarbonyl group, N-normalhexylaminocarbonyl group, and N-isohexylaminocarbonyl group. It
- N,N-di(C 1 -C 6 )alkylaminocarbonyl group examples include N,N-dimethyl-aminocarbonyl group, N,N-diethylaminocarbonyl group, and N,N-dinormalpropylaminocarbonyl group.
- (C 1 -C 6 )alkoxycarbonyl group means, for example, methoxycarbonyl group, ethoxycarbonyl group, normal propoxycarbonyl group, isopropoxycarbonyl group, normal butoxycarbonyl group, isobutoxycarbonyl group, secondary butoxycarbonyl group, It refers to an alkoxycarbonyl group having 2 to 7 carbon atoms, such as an alkoxycarbonyl group having the above-mentioned (C 1 -C 6 ) alkoxy group, such as a tert-butoxycarbonyl group or a pentyloxycarbonyl group.
- N-(C 1 -C 6 )alkylaminosulfonyl group examples include N-methylaminosulfonyl group, N-ethylaminosulfonyl group, N-normalpropylaminosulfonyl group, N-isopropylaminosulfonyl group, N- -Normal butylaminosulfonyl group, N-Secondary butylaminosulfonyl group, N-Tertiary butylaminosulfonyl group, N-Normalpentylaminosulfonyl group, N-Isopentylaminosulfonyl group, N-Tertiary pentylaminosulfonyl group, N -Neopentylaminosulfonyl group, N-(2,3-dimethylpropyl)aminosulfonyl group, N-(1-ethylpropyl)aminosulfonyl
- N,N-di(C 1 -C 6 )alkylaminosulfonyl group examples include N,N-dimethylaminosulfonyl group, N,N-diethylaminosulfonyl group, and N,N-dinormalpropylaminosulfonyl group.
- N,N-diisopropylaminosulfonyl group N,N-di-n-butylaminosulfonyl group, N,N-dise-butylaminosulfonyl group, N,N-ditertiarybutylaminosulfonyl group, N-methyl-N-ethyl Aminosulfonyl group, N-methyl-N-normalpropylaminosulfonyl group, N-methyl-N-isopropylaminosulfonyl group, N-methyl-N-normalbutylaminosulfonyl group, N-methyl-N-secondary butylaminosulfonyl group , N-methyl-N-tert-butylaminosulfonyl group, N-methyl-N-normalpentylaminosulfonyl group, N-methyl-N-isopentylaminosulfonyl group, N-methyl-N-tert-pent
- Halo(C 1 -C 6 )alkyl group "Halo(C 2 -C 6 )alkenyl group”, “Halo(C 2 -C 6 )alkynyl group”, “Halo(C 1 -C 6 ) alkyl group”, respectively.
- alkoxy group "halo(C 1 -C 6 )alkylsulfanyl group”, “halo(C 1 -C 6 )alkylsulfinyl group”, “halo(C 1 -C 6 )alkylsulfonyl group”, "N-halo (C 1 -C 6 )alkylamino group”, “N,N-dihalo(C 1 -C 6 )alkylamino group”, “halo(C 3 -C 6 )cycloalkyl group”, “halo(C 1 - "C 6 )alkylcarbonylamino group", "Halo(C 1 -C 6 )alkylsulfonylamino group", "N-halo(C 1 -C 6 )alkylaminocarbonyl group”, “N,N-dihalo(C 1 -C 6 ) alkylaminocarbonyl group.
- aryl group refers to an aromatic hydrocarbon group having 6 to 10 carbon atoms, such as a phenyl group, 1-naphthyl group, and 2-naphthyl group.
- a “5- to 10-membered heterocyclic group” refers to a 5- or 6-membered monocyclic aromatic ring containing 1 to 4 heteroatoms selected from oxygen atoms, sulfur atoms, and nitrogen atoms in addition to carbon atoms as ring constituent atoms.
- group heterocyclic group an aromatic fused heterocyclic group in which the monocyclic aromatic heterocycle is fused with a benzene ring or a monocyclic aromatic ring, a 4- to 6-membered monocyclic non-aromatic heterocyclic group, or Examples include non-aromatic fused heterocyclic groups in which a monocyclic non-aromatic heterocycle is fused to a benzene ring or a monocyclic aromatic ring.
- the ring atoms of the 5- to 10-membered heterocyclic group may be oxidized with an oxo group.
- Examples of the "monocyclic aromatic heterocyclic group” include furyl group, thienyl group, pyridyl group, 2-oxopyridyl group, pyrimidinyl group, pyridazinyl group, pyrazinyl group, pyrrolyl group, imidazolyl group, pyrazolyl group, and thiazolyl group. , isothiazolyl group, oxazolyl group, isoxazolyl group, oxadiazolyl group (e.g. 1,3,4-oxadiazolyl group, 1,2,4-oxadiazolyl group), thiadiazolyl group (e.g.
- aromatic fused heterocyclic group include quinolinyl group, isoquinolinyl group, quinazolinyl group, quinoxalinyl group, cinnolinyl group, phthalazinyl group, naphthyridinyl group, benzofuranyl group, benzothienyl group, benzoxazolyl group.
- benzisoxazolyl group benzothiazolyl group, benzisothiazolyl group, benzimidazolyl group, benzotriazolyl group, indolyl group, isoindolyl group, indazolyl group, furopyridyl group, thienopyridyl group, pyrrolopyridyl group (for example, pyrrolo[1, 2-a]pyridyl group, pyrrolo[2,3-b]pyridyl group), oxazolopyridyl group (e.g., oxazolo[3,2-a]pyridyl group, oxazolo[5,4-b]pyridyl group, oxazolo[ 4,5-b]pyridyl group), isoxazolopyridyl group (e.g., isoxazolo[2,3-a]pyridyl group, isoxazolo[4,5-b]
- imidazo[1,2-a]pyridyl group) imidazo[4,5-b]pyridyl group
- pyrazolopyridyl group e.g., pyrazolo[1,5-a]pyridyl group, pyrazolo[3,4-a]pyridyl group, pyrazolo[4,3-a] pyridyl group
- indolizinyl group triazolopyridyl group (e.g.
- [1,2,4]triazolo[1,5-a]pyridyl group) triazolopyrimidinyl group, pyrrolopyrimidinyl group, pyrrolopyrazinyl group, imidazopyrimidinyl group, imidazo Examples include pyrazinyl group, pyrazolopyrimidinyl group, pyrazolothienyl group, and pyrazolotriazinyl group.
- Examples of the "monocyclic non-aromatic heterocyclic group” include oxetanyl group, thietanyl group, azetidinyl group, pyrrolidinyl group, pyrrolidinyl-2-one group, piperidinyl group, morpholinyl group, thiomorpholinyl group, piperazinyl group, hexamethylene group, etc.
- Examples include pinyl group, tetrahydrobenzofuranyl group, chromenyl group, dihydroquinolinyl group, tetrahydroquinolinyl group, dihydroisoquinolinyl group, tetrahydroisoquinolinyl group, dihydrophthalazinyl group, and the like.
- R 2 and R 3 may be combined with each other to form a ring.
- the "ring” include 3- to 7-membered nitrogen-containing heterocycles such as aziridine, azetidine, pyrrolidine, piperidine, homopiperidine, piperazine, homopiperazine, morpholine, and homomorpholine.
- the nitrogen-containing heterocycle may be fused with a benzene ring.
- the nitrogen-containing heterocycle and benzene ring are substituted with 1 to 6 substituents selected from the group consisting of a halogen atom, a (C 1 -C 6 ) alkyl group, a (C 1 -C 6 ) alkyl group, etc. You can.
- Examples of the salts of the compound represented by the general formula (1) of the present invention include inorganic acid salts such as hydrochloride, sulfate, nitrate, phosphate, acetate, fumarate, maleate, oxalate, Examples include organic acid salts such as methanesulfonate, benzenesulfonate, and paratoluenesulfonate, and salts with inorganic or organic bases such as sodium ion, potassium ion, calcium ion, and trimethylammonium.
- inorganic acid salts such as hydrochloride, sulfate, nitrate, phosphate, acetate, fumarate, maleate, oxalate
- examples include organic acid salts such as methanesulfonate, benzenesulfonate, and paratoluenesulfonate
- salts with inorganic or organic bases such as sodium ion, potassium ion, calcium ion, and
- the compound represented by the general formula (1) of the present invention and its salts may have one or more asymmetric centers in its structural formula, and may have two or more optical isomers and diastereomers. In some cases, optical isomers exist, and the present invention includes all optical isomers and mixtures containing them in arbitrary proportions.
- the compound represented by the general formula (1) of the present invention and its salts may have two types of geometric isomers derived from a carbon-carbon double bond in the structural formula, but the present invention It also includes all geometric isomers and mixtures containing them in arbitrary proportions.
- the compound represented by the general formula (1) of the present invention and its salts may have a plurality of tautomers, but the present invention covers each tautomer and their arbitrary proportions. It also includes all mixtures included.
- R 1 is the above (a3), (a9), (a11), (a12), (a13), (a14), (a15), (a16), (a17), (a18), (a19), (a20), (a21), (a22), (a23), (a24), (a25), (a26), (a27), (a28), (a29), (a30 ), (a31), (a32), (a33), (a34), (a37), (a38), (a39), (a40), (a41), (a43), (a45), (a46), (a47), (a48), (a49), (a50), (a51), (a52), (a53), (a54), (a55), (a56), (a57), (a58), (a59 ), (a64), (a65), (a66), (a67), (a68), (a69), (a70), (a71), (a72
- R 2 is the above (b2), (b5), (b10), (b20), (b21), (b22), (b23), (b24), (b25), (b26), (b27), (b28), (b29), (b34), (b35), (b36), (b37), (b40), (b41), (b46), (b47), (b62 ), (b63), (b70), (b71), (b72), (b73), (b74), (b75), (b76), or (b77) are preferable, and (b2), ( b5), (b20), (b21), (b22), (b23), (b24), (b25), (b26), (b27), (b28), (b29), (b34), (b37) , (b40), (b41), (b46), (b47), (b56), (b57), (b62), (b63), (b70), (b71), (b72), (b73), ( b74), (b
- R 3 is preferably the group (c1), (c2), or (c3) described above, and more preferably the hydrogen atom (c1) described above.
- X is preferably CH 2 or an oxygen atom.
- Y is preferably an oxygen atom or a sulfur atom.
- substituent group A includes the above (d1), (d5), (d6), (d7), (d16), (d18), (d19), (d20), (d21 ), (d22), (d23), and (d24), and the above (d1), (d6), (d7), (d16), (d18), (d20), and (d21 ), (d22), and (d23) are more preferable.
- substituent group B preferably consists of the above groups (e1), (e2), and (e10).
- the substituent group C includes the above (f1), (f2), (f3), (f6), (f9), (f10), (f11), (f12), (f13). ), (f14), (f17), (f19), (f23), (f24), (f25), (f26), (f27), (f28), (f29), (f30), and (f31) It is preferable to consist of the above groups (f1), (f2), (f3), (f6), (f10), (f11), (f12), (f13), (f14), (f17), More preferably, it consists of the groups (f19), (f23), (f24), (f25), (f26), (f27), (f28), (f29), and (f31).
- the substituent group D includes the above (g1), (g2), (g6), (g9), (g11), (g14), (g17), (g19), (g29). ), (g73), and (g74), and the above More preferably, it consists of the groups (g1), (g2), (g6), (g9), (g14), (g19), (g29), (g73), and (g74).
- the substituent group E includes the above (h1), (h2), (h3), (h7), (h8), (h9), (h10), (h12), (h13). ), (h14), (h16), (h17), (h19), (h21), (h22), (h23), (h24), (h25), (h26), (h27), (h28), Preferably, it consists of the groups (h29), (h30), and (h31), The above (h1), (h2), (h3), (h7), (h8), (h9), (h10), (h12), (h13), (h14), (h16), (h17), More preferably, it consists of the groups (h19), (h22), (h23), (h25), (h26), (h27), (h28), (h29), and (h31).
- Manufacturing method 1 The compound represented by the general formula (1-1) of the present invention can be produced from the compound represented by the general formula (2) by the following step [a].
- step [a] By reacting the compound represented by general formula (2) with the compound represented by general formula (4) in the presence of a base and an inert solvent, the general formula (1 A compound represented by -1) can be produced.
- bases examples include hydroxides such as lithium hydroxide, sodium hydroxide, potassium hydroxide, and calcium hydroxide, sodium methoxide, sodium ethoxide, sodium tert-butoxide, and potassium tert-butoxide.
- alkoxides such as side, alkali metal hydrides such as sodium hydride, potassium hydride, lithium carbonate, lithium hydrogen carbonate, sodium carbonate, sodium hydrogen carbonate, potassium carbonate, potassium hydrogen carbonate, calcium carbonate, magnesium carbonate, cesium carbonate, etc.
- the amount to be used may be appropriately selected from the range of usually 1 to 10 times the mole of the compound represented by the general formula (2).
- Inert solvents that can be used in this reaction may be those that do not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Aromatic hydrocarbons such as chlorobenzene and dichlorobenzene
- inert solvents such as chain or cyclic ethers such as diethyl ether, methyl tert-butyl ether, dioxane, and tetrahydrofuran
- acetonitrile propionitrile Nitriles such as N,N-dimethylformamide, N,N-dimethylacetamide, dimethyl sulfoxide
- aprotic polar solvents such as 1,3-dimethyl-2-imidazolidinone, methanol, ethanol, propanol, butanol, 2
- examples include alcohols such as -propanol, and these inert solvents can be used alone or in combination of two or more.
- the amount used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (2).
- reaction temperature in this reaction is usually within the range of about 0°C to the boiling point of the solvent used, and the reaction time varies depending on the reaction scale, reaction temperature, etc., and is not constant, but is usually in the range of several minutes to 48 hours. You can choose as appropriate.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc.
- Manufacturing method 2 The compound represented by the general formula (1-2) of the present invention can be produced from the compound represented by the general formula (3) by the following step [b].
- R 1 , R 2 , R 3 and Y are the same as above.
- L represents, for example, a halogen atom such as chlorine or bromine, or a leaving group such as a (C 1 -C 6 )alkoxycarbonyloxy group.
- step [b] By reacting the compound represented by general formula (3) or its salt with the compound represented by general formula (5) in the presence of an inert solvent and a base, the general formula ( A compound represented by 1-2) can be produced.
- bases examples include hydroxides such as lithium hydroxide, sodium hydroxide, potassium hydroxide, and calcium hydroxide, sodium methoxide, sodium ethoxide, sodium tert-butoxide, and potassium tert-butoxide.
- alkoxides such as side, alkali metal hydrides such as sodium hydride, potassium hydride, lithium carbonate, lithium hydrogen carbonate, sodium carbonate, sodium hydrogen carbonate, potassium carbonate, potassium hydrogen carbonate, calcium carbonate, magnesium carbonate, cesium carbonate, etc.
- Examples include carbonates, acetates such as lithium acetate, sodium acetate, and potassium acetate, and organic bases such as pyridine, picoline, lutidine, triethylamine, tributylamine, N,N-diisopropylethylamine, and DBU. , may be appropriately selected from the range of usually 1 to 10 times the mole of the compound represented by the general formula (3).
- Inert solvents that can be used in this reaction may be those that do not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Aromatic hydrocarbons such as chlorobenzene and dichlorobenzene
- inert solvents such as chain or cyclic ethers such as diethyl ether, methyl tert-butyl ether, dioxane, and tetrahydrofuran
- acetonitrile propionitrile Nitriles such as N,N-dimethylformamide, N,N-dimethylacetamide, dimethyl sulfoxide
- aprotic polar solvents such as 1,3-dimethyl-2-imidazolidinone, methanol, ethanol, propanol, butanol, 2
- examples include alcohols such as -propanol, and these inert solvents can be used alone or in a mixture of two or more.
- the amount used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (3).
- reaction temperature in this reaction is usually within the range of about 0°C to the boiling point of the solvent used, and the reaction time varies depending on the reaction scale, reaction temperature, etc., and is not constant, but is usually in the range of several minutes to 48 hours. You can choose as appropriate.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc.
- Manufacturing method 3 The compound represented by the general formula (1-3) of the present invention can be produced from the compound represented by the general formula (3) by the following step [c].
- R 2 , R 3 and Y are the same as above.
- L' represents, for example, a halogen atom such as chlorine or bromine, or a leaving group such as a (C 1 -C 6 ) alkoxycarbonyloxy group or a (C 1 -C 6 ) alkylcarbonyloxy group.
- R 1a is a (C 1 -C 6 ) alkyl group, a halo ( C 1 -C 6 ) alkyl group, a substituted (C 1 -C 6 ) alkyl group having 1 to 3 substituents each independently selected from substituent group A; 6 ) A substituted phenyl group, a pyridyl group, and a substituted phenyl group having 1 to 5 substituents each independently selected from substituent group C on the ring, each independently selected from substituent group C.
- step [c] A compound represented by general formula (3) or a salt thereof and a compound represented by general formula (6) or (7) are condensed by an amidation method commonly used in organic synthesis. By doing so, a compound represented by general formula (1-3) can be produced.
- the compound (2-1) in which X is CH 2 can be produced by the following manufacturing method. That is, it can be produced from a compound represented by general formula (8) through the following steps [d], [e], [f], and [g].
- R 1 is the same as above.
- L represents, for example, a leaving group such as a halogen atom such as chlorine or bromine.
- R' represents, for example, a (C 1 -C 6 ) alkyl group such as a methyl group or an ethyl group.
- step [d] By reacting a compound represented by general formula (8) with ditertiary butyl dicarbonate in the presence or absence of a base and an inert solvent, a compound represented by general formula (9) is produced. Compounds can be produced.
- bases examples include hydroxides such as lithium hydroxide, sodium hydroxide, potassium hydroxide, and calcium hydroxide, sodium methoxide, sodium ethoxide, sodium tert-butoxide, and potassium tert-butoxide.
- alkoxides such as side, alkali metal hydrides such as sodium hydride, potassium hydride, lithium carbonate, lithium hydrogen carbonate, sodium carbonate, sodium hydrogen carbonate, potassium carbonate, potassium hydrogen carbonate, calcium carbonate, magnesium carbonate, cesium carbonate, etc.
- examples include organic bases such as triethylamine, tributylamine, and N,N-diisopropylethylamine, and the amount used is usually in the range of 1 to 10 times the mole of the compound represented by general formula (8).
- the base may be appropriately selected from the following, but the base can also be used as a solvent.
- Inert solvents that can be used in this reaction may be those that do not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Inert solvents such as cyclic or cyclic ethers, nitriles such as acetonitrile and propionitrile, esters such as methyl acetate, ketones such as acetone and methyl ethyl ketone, N,N-dimethylformamide, N,N-dimethylacetamide,
- Examples include aprotic polar solvents such as dimethyl sulfoxide and 1,3-dimethyl-2-imidazolidinone, and alcohols such as methanol, ethanol, propanol, butanol, and 2-propanol. They can be used alone or in combination of two or more.
- the amount used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (8). Further, when the base is used as a solvent, the solvent does not need to be used.
- reaction temperature in this reaction is usually in the range of -100°C to the boiling point of the solvent used, and the reaction time varies depending on the reaction scale, reaction temperature, etc., and is not constant, but is usually in the range of several minutes to 48 hours. You can choose as appropriate.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc. Alternatively, it can be used in the next step without isolation.
- step [e] By reacting a compound represented by general formula (9) with a compound represented by general formula (10) in the presence of a base and an inert solvent, a compound represented by general formula (11) is prepared. Compounds can be produced.
- bases examples include hydroxides such as lithium hydroxide, sodium hydroxide, potassium hydroxide, and calcium hydroxide, sodium methoxide, sodium ethoxide, sodium tert-butoxide, and potassium tert-butoxide.
- alkoxides such as side, alkali metal hydrides such as sodium hydride, potassium hydride, lithium carbonate, lithium hydrogen carbonate, sodium carbonate, sodium hydrogen carbonate, potassium carbonate, potassium hydrogen carbonate, calcium carbonate, magnesium carbonate, cesium carbonate, etc.
- Examples include carbonates, acetates such as lithium acetate, sodium acetate, and potassium acetate, and organic bases such as pyridine, picoline, lutidine, triethylamine, tributylamine, and N,N-diisopropylethylamine.
- the amount may be appropriately selected from the range of usually 1 to 10 times the mole of the compound represented by formula (9).
- the inert solvent used in this reaction may be one that does not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Aromatic hydrocarbons such as chlorobenzene and dichlorobenzene, inert solvents such as chain or cyclic ethers such as diethyl ether, methyl tert-butyl ether, dioxane, and tetrahydrofuran, acetonitrile, propionitrile and aprotic polar solvents such as N,N-dimethylformamide, N,N-dimethylacetamide, dimethylsulfoxide, and 1,3-dimethyl-2-imidazolidinone.
- the active solvents can be used alone or in combination of two or more.
- the amount to be used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (9).
- reaction temperature in this reaction is usually within the range of about 0°C to the boiling point of the solvent used, and the reaction time varies depending on the reaction scale, reaction temperature, etc., and is not constant, but is usually in the range of several minutes to 48 hours. You can choose as appropriate.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc. Alternatively, it can be used in the next step without isolation.
- a compound represented by general formula (12) is manufactured by hydrolyzing a compound represented by general formula (11) in the presence or absence of an acid and an inert solvent. be able to.
- acids that can be used in this reaction include inorganic acids such as hydrochloric acid, sulfuric acid, and nitric acid, organic acids such as formic acid, acetic acid, propionic acid, trifluoroacetic acid, and benzoic acid, methanesulfonic acid, trifluoromethanesulfonic acid, and paratoluene.
- inorganic acids such as hydrochloric acid, sulfuric acid, and nitric acid
- organic acids such as formic acid, acetic acid, propionic acid, trifluoroacetic acid, and benzoic acid, methanesulfonic acid, trifluoromethanesulfonic acid, and paratoluene.
- sulfonic acids such as sulfonic acid, phosphoric acid, etc.
- the amount used is appropriately selected from the range of 0.01 times mole to 10 times mole relative to the compound represented by general formula (11).
- the acid can also be used as a solvent.
- Inert solvents that can be used in this reaction may be those that do not significantly inhibit the progress of this reaction, such as aromatic hydrocarbons such as benzene, toluene, xylene, methylene chloride, chloroform, carbon tetrachloride, etc.
- Halogenated hydrocarbons such as chlorobenzene and dichlorobenzene
- chain or cyclic ethers such as diethyl ether, methyl tert-butyl ether, dioxane and tetrahydrofuran, esters such as ethyl acetate, N,N -Amides such as dimethylformamide and N,N-dimethylacetamide; ketones such as acetone and methyl ethyl ketone; and inert solvents such as polar solvents such as dimethyl sulfoxide and 1,3-dimethyl-2-imidazolidinone. These inert solvents can be used alone or in combination of two or more.
- the amount of the inert solvent to be used is not particularly limited as long as it dissolves the reaction reagent, but it may be appropriately selected from the range of 0.5 L to 100 L per mol of the compound represented by the general formula (11). Moreover, when the above-mentioned acid is used as a solvent, it is not necessary to use a solvent.
- the reaction temperature can be carried out in the range from room temperature to the boiling point of the inert solvent used, and the reaction time varies depending on the reaction scale and reaction temperature, but may be appropriately selected from the range of several minutes to 48 hours.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc. Alternatively, it can be used in the next step without isolation.
- the compound represented by general formula (14) can be produced from the compound represented by general formula (12) by step [e]. Note that the reaction conditions for [e] are the same as above.
- a compound represented by general formula (2-1) is manufactured by performing a cyclization reaction on a compound represented by general formula (14) in the presence of a base and an inert solvent. be able to.
- bases examples include hydroxides such as lithium hydroxide, sodium hydroxide, potassium hydroxide, and calcium hydroxide, sodium methoxide, sodium ethoxide, sodium tert-butoxide, and potassium tert-butoxide.
- alkoxides such as side, alkali metal hydrides such as sodium hydride, potassium hydride, lithium carbonate, lithium hydrogen carbonate, sodium carbonate, sodium hydrogen carbonate, potassium carbonate, potassium hydrogen carbonate, calcium carbonate, magnesium carbonate, cesium carbonate, etc.
- Examples include carbonates, acetates such as lithium acetate, sodium acetate, and potassium acetate, and organic bases such as pyridine, picoline, lutidine, triethylamine, tributylamine, and N,N-diisopropylethylamine.
- the amount may be appropriately selected from the range of usually 1 to 10 times the mole of the compound represented by formula (14).
- the inert solvent used in this reaction may be one that does not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Aromatic hydrocarbons such as chlorobenzene and dichlorobenzene, inert solvents such as chain or cyclic ethers such as diethyl ether, methyl tert-butyl ether, dioxane, and tetrahydrofuran, acetonitrile, propionitrile and aprotic polar solvents such as N,N-dimethylformamide, N,N-dimethylacetamide, dimethylsulfoxide, and 1,3-dimethyl-2-imidazolidinone.
- the active solvents can be used alone or in combination of two or more. The amount used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (14).
- the reaction temperature can be carried out in the range from 0°C to the boiling point of the inert solvent used, and the reaction time varies depending on the reaction scale and reaction temperature, but may be appropriately selected from the range of several minutes to 48 hours.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc. Alternatively, it can be used in the next step without isolation.
- the compound (2-2) in which X is an oxygen atom can be produced by the following manufacturing method. That is, it can be produced from the compound represented by general formula (15) by the following steps [h] and [i].
- R 1 is the same as above.
- L represents, for example, a leaving group such as a halogen atom such as chlorine or bromine.
- step [h] By reacting a compound represented by general formula (15) with a compound represented by general formula (16) in the presence of a base and an inert solvent, a compound represented by general formula (17) is prepared. Compounds can be produced.
- bases examples include hydroxides such as lithium hydroxide, sodium hydroxide, potassium hydroxide, and calcium hydroxide, sodium methoxide, sodium ethoxide, sodium tert-butoxide, and potassium tert-butoxide.
- alkoxides such as side, alkali metal hydrides such as sodium hydride, potassium hydride, lithium carbonate, lithium hydrogen carbonate, sodium carbonate, sodium hydrogen carbonate, potassium carbonate, potassium hydrogen carbonate, calcium carbonate, magnesium carbonate, cesium carbonate, etc.
- organic bases such as triethylamine, tributylamine, N,N-diisopropylethylamine, etc., and the amount used is usually in the range of 1 to 10 times the mole of the compound represented by general formula (15). You can select as appropriate.
- Inert solvents that can be used in this reaction may be those that do not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Inert solvents such as cyclic or cyclic ethers, nitriles such as acetonitrile and propionitrile, esters such as methyl acetate, ketones such as acetone and methyl ethyl ketone, N,N-dimethylformamide, N,N-dimethylacetamide,
- Examples include aprotic polar solvents such as dimethyl sulfoxide and 1,3-dimethyl-2-imidazolidinone, and alcohols such as methanol, ethanol, propanol, butanol, and 2-propanol. They can be used alone or in combination of two or more. The amount used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (15).
- reaction temperature in this reaction is usually within the range of 0°C to the boiling point of the solvent used, and the reaction time varies depending on the reaction scale, reaction temperature, etc., and is not constant, but is usually in the range of several minutes to 48 hours. All you have to do is choose.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc. Alternatively, it can be used in the next step without isolation.
- a compound represented by general formula (2-2) can be manufactured by performing a cyclization reaction on a compound represented by general formula (17) in the presence of an inert solvent. can.
- Inert solvents that can be used in this reaction may be those that do not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Aromatic hydrocarbons such as chlorobenzene and dichlorobenzene
- inert solvents such as chain or cyclic ethers such as diethyl ether, methyl tert-butyl ether, dioxane, and tetrahydrofuran
- acetonitrile propionitrile Nitriles such as N,N-dimethylformamide, N,N-dimethylacetamide, dimethyl sulfoxide
- aprotic polar solvents such as 1,3-dimethyl-2-imidazolidinone, methanol, ethanol, propanol, butanol, 2
- examples include alcohols such as -propanol, and these inert solvents can be used alone or in a mixture of two or more.
- the amount to be used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (17).
- the reaction temperature in this reaction is usually within the range of about room temperature to the boiling point of the solvent used, and the reaction time varies depending on the reaction scale, reaction temperature, etc., and is not constant, but is usually in the range of several minutes to 48 hours. All you have to do is choose.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc. Alternatively, it can be used in the next step without isolation.
- the compound (3-1) in which R 3 is a hydrogen atom can be prepared as follows. In other words, it can be produced from the compound represented by formula (18) through the following steps [a] and [f]. Note that the reaction conditions for [a] and [f] are the same as described above.
- the compound (3-2) in which Y is an oxygen atom can be produced by the following manufacturing method. That is, it can be produced from the compound represented by formula (18) through the following steps [j], [k], [l], and [f]. Note that the reaction conditions for [f] are the same as above.
- R 2 and R 3 are the same as above.
- L represents, for example, a leaving group such as a halogen atom such as chlorine or bromine.
- R' and R'' represent, for example, a (C 1 -C 6 ) alkyl group such as a methyl group or an ethyl group.
- step [j] A compound represented by general formula (18) is reacted with a compound represented by formula (19) in the presence of a base and an inert solvent, and in the presence or absence of a quaternary ammonium salt. Thereafter, by reacting with a compound represented by general formula (20), a compound represented by general formula (21) can be produced.
- bases examples include hydroxides such as lithium hydroxide, sodium hydroxide, potassium hydroxide, and calcium hydroxide, sodium methoxide, sodium ethoxide, sodium tert-butoxide, and potassium tert-butoxide.
- alkoxides such as side, alkali metal hydrides such as sodium hydride, potassium hydride, lithium carbonate, lithium hydrogen carbonate, sodium carbonate, sodium hydrogen carbonate, potassium carbonate, potassium hydrogen carbonate, calcium carbonate, magnesium carbonate, cesium carbonate, etc.
- acetates such as lithium acetate, sodium acetate, potassium acetate, pyridine, picoline, lutidine
- organic bases such as triethylamine, tributylamine, and N,N-diisopropylethylamine, and the amount used is usually in the range of 1 to 10 times the mole of the compound represented by general formula (18). You can select as appropriate.
- quaternary ammonium salts that can be used in this reaction include tetrabutylammonium chloride, tetrabutylammonium bromide, tetrabutylammonium iodide, tetramethylammonium hydroxide, tetraethylammonium hydroxide, benzyltrimethylammonium hydroxide, and the like.
- the amount used may be appropriately selected from the range of usually 0.001 times mole to 1 times mole based on the compound represented by general formula (18).
- Inert solvents that can be used in this reaction may be those that do not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Inert solvents such as cyclic or cyclic ethers, nitriles such as acetonitrile and propionitrile, esters such as methyl acetate, ketones such as acetone and methyl ethyl ketone, N,N-dimethylformamide, N,N-dimethylacetamide,
- Examples include aprotic polar solvents such as dimethyl sulfoxide and 1,3-dimethyl-2-imidazolidinone, and alcohols such as methanol, ethanol, propanol, butanol, and 2-propanol. They can be used alone or in combination of two or more. The amount used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (18).
- reaction temperature in this reaction is usually within the range of 0°C to the boiling point of the solvent used, and the reaction time varies depending on the reaction scale, reaction temperature, etc., and is not constant, but is usually in the range of several minutes to 48 hours. All you have to do is choose.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc. Alternatively, it can be used in the next step without isolation.
- step [k] By reacting a compound represented by general formula (21) with a compound represented by general formula (22) in the presence or absence of an inert solvent, a compound represented by general formula (23) is produced. A compound represented by can be produced.
- Inert solvents that can be used in this reaction may be those that do not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Inert solvents such as cyclic or cyclic ethers, nitriles such as acetonitrile and propionitrile, esters such as methyl acetate, ketones such as acetone and methyl ethyl ketone, N,N-dimethylformamide, N,N-dimethylacetamide, Examples include aprotic polar solvents such as dimethyl sulfoxide and 1,3-dimethyl-2-imidazolidinone, and these inert solvents can be used alone or in a mixture of two or more.
- Formula (22) can also be used as a solvent.
- the amount to be used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (21).
- reaction temperature in this reaction is usually within the range of room temperature to the boiling point of the solvent used, and the reaction time varies depending on the reaction scale, reaction temperature, etc., and is not constant, but is usually selected as appropriate in the range of several minutes to 48 hours. Just do it.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc. Alternatively, it can be used in the next step without isolation.
- step [l] By reacting the compound represented by general formula (23) with the compound represented by general formula (24) in the presence or absence of a base in the presence of an inert solvent, A compound represented by general formula (1-5) can be produced.
- bases examples include hydroxides such as lithium hydroxide, sodium hydroxide, potassium hydroxide, and calcium hydroxide, sodium methoxide, sodium ethoxide, sodium tert-butoxide, and potassium tert-butoxide.
- alkoxides such as side, alkali metal hydrides such as sodium hydride, potassium hydride, lithium carbonate, lithium hydrogen carbonate, sodium carbonate, sodium hydrogen carbonate, potassium carbonate, potassium hydrogen carbonate, calcium carbonate, magnesium carbonate, cesium carbonate, etc.
- the amount used may be appropriately selected from the range of usually 1 to 10 times the mole of the compound represented by the general formula (23).
- Inert solvents that can be used in this reaction may be those that do not significantly inhibit the progress of this reaction, such as linear or cyclic saturated hydrocarbons such as pentane, hexane, cyclohexane, benzene, toluene, xylene, etc.
- Aromatic hydrocarbons such as chlorobenzene and dichlorobenzene, inert solvents such as chain or cyclic ethers such as diethyl ether, methyl tert-butyl ether, dioxane, and tetrahydrofuran, acetonitrile, propionitrile Nitriles such as N,N-dimethylformamide, N,N-dimethylacetamide, dimethyl sulfoxide, aprotic polar solvents such as 1,3-dimethyl-2-imidazolidinone, methanol, ethanol, propanol, butanol, 2 Examples include alcohols such as -propanol, and these inert solvents can be used alone or in combination of two or more. The amount used may be appropriately selected from the range of usually 0.1 to 100 L per mol of the compound represented by the general formula (23).
- reaction temperature in this reaction is usually within the range of room temperature to the boiling point of the solvent used, and the reaction time varies depending on the reaction scale, reaction temperature, etc., and is not constant, but is usually selected as appropriate in the range of several minutes to 48 hours. Just do it.
- the target product may be isolated from the reaction system containing the target product by a conventional method, and if necessary, the target product can be produced by purification by recrystallization, column chromatography, etc.
- Pest control agents containing the compound represented by general formula (1) or its salts as an active ingredient of the present invention include agricultural and horticultural pest control agents, ectoparasite control agents for animals, and endoparasite control agents for animals. Can be applied as As an agricultural and horticultural pest control agent, it can be applied to control various agricultural and forestry, horticultural, grain storage pests, sanitary pests, nematodes, and other pests that damage paddy rice, fruit trees, vegetables, other crops, and flowers.
- agricultural and horticultural insecticides containing the compound represented by the general formula (1) or its salts as an active ingredient of the present invention have physical properties suitable for various labor-saving application methods, systemic transfer activity, and suitable soil compatibility. Excellent environmental safety such as persistence.
- agricultural and horticultural insecticides containing the compound represented by the general formula (1) or its salts as an active ingredient of the present invention have no effect on natural enemies, useful insects such as the European honey bee and bumblebee, and environmental organisms such as midges. Less is.
- Lepidoptera lepidoptera
- Lepidoptera include Parasa consocia, Anomis mesogona, Papilio xuthus, Matsumuraeses azukivora, Ostrinia scapulalis, Spodoptera exempta, and American white flycatcher.
- Adoxophyes orana) Caloptilia theivora, Homona magnanima, Ephestia elutella, Eumeta minuscula, Clostera anachoreta, Heliothis maritima, Sparganothis pilleriana, Busseola fusca, Euproctis subflava, Biston robustum, Heliothis zea, Aedia leucomelas, Narosoideus flavidorsalis, Viminia rumicis, Biston robustum Bucculatrix pyrivorella), Grapholita molesta, Spulerina astaurota, Ectomyelois pyrivorella, Chilo suppressalis, Acrolepiopsis sapporensis, Plodia interpunctella, Hellula undalis ), Sitotroga cerealella, Spodoptera litura, Eucosma aporema, Acleris comariana, Scopelodes contractus, Orgyia
- Hemipteran pests include Nezara antennata, Stenotus rubrovittatus, Graphosoma rubrolineatum, Trigonotylus coelestialium, etc.
- Aeschynteles maculatus Creontiades pallidifer, Dysdercus cingulatus, Chrysomphalus ficus, Aonidiella aurantii, Graptopsaltria nigrofuscata, Blissusleuc opterus), Iseria Icerya purchasi, Piezodorus hybneri, Lagynotomus elongatus, Thaia subrufa, Scotinophara lurida, Sitobion ibarae, Stariodes i wasakii) , Aspidiotus destructor, Taylorilygus pallidulus, Myzusmumecola, Pseudaulacaspis prunicola, Acyrthosiphon pisum, Anacan
- Kankitsu Kai Garamushi (Andaspis Kashicola), Coccus Pseudomagnoliarum, Kanesuko Cavelerius saccharivorus, Galeatus spinifrons, Macrosiphoniella sanborni, Aonidiella citrina, Halyomorpha mista, Stephanitis fasciicarina, Trioza camphor ae), spider Leptocorisa chinensis, Trioza quercicola, Uhlerites latius, Grapeleaf hopper (Erythroneura comes), Paromius exiguus, Duplaspidiotus claviger, Nephotettix nigropictus, Halticiellus insularis, Perkinsiella saccharicida, Psylla malivorella, Anomomeura mori, Pseudococcus longispinis, Pseudaula caspis pentagona ), Pulvinaria kuwacola, A
- apple oyster scale insect Lepidosaphes ulmi
- apple oyster louse Psylla mali
- apple black snail Heterocordylus flavipes
- apple knoll aphid Myzus malisuctus
- apple aphid Aphidonuguis mali
- apple leafhopper Orientus ishidai
- apple Examples include green aphid (Ovatus malicolens), apple boll beetle (Eriosoma lanigerum), ruby beetle (Ceroplastes rubens), and cotton aphid (Aphis gossypii).
- pests of the order Coleoptera include Xystrocera globosa, Paederus fuscipes, Eucetonia roelofsi, Callosobruchus chinensis, Cylas formicarius, and alfalfa weevil.
- Diptera pests include Culex pipiens pallens, Pegomya hyoscyami, Liriomyza huidobrensis, Musca domestica, Chlorops oryzae, and Chlorops oryzae.
- Hydrellia sasakii Agromyza oryzae
- Hydrellia griseola Ophiomyia phaseoli
- Dacus cucurbitae Drosophila suzukii
- Hydrellia griseola Fly Rhacochlaena japonica
- Muscina STABULANS no -nominated (Megaselia Spiracularis), noimi blades (Clogmia Albipunctata), Kirijuri Gambo (Tipula Aino), Crokin Bae (PH).
- Hymenoptera (Hymenoptera) pests include, for example, Pristomyrmex ponnes, wasps, Monomorium pharaohnis, Pheidole noda, Athalia rosae, Dryocosmus kuriphilus, and Formica fusca japonica. , wasps, Athalia infumata infumata, Arge pagana, Athalia japonica, Acromyrmex spp., Solenopsis spp., Arge mali, and Arge mali. (Ochetellus glaber) etc.
- Orthoptera pests include Homorocoryphus lineosus, Gryllotalpa sp., Oxya hyla intricata, Oxya yezoensis, Locusta migratoria, Oxya japonica, and Oxya japonica. (Homorocoryphus jezoensis), and Enma cricket (Teleogryllus emma).
- thrips pests include red-throated thrips (Selenothrips rubrocinctus), rice thrips (Stenchaetothrips biformis), rice thrips (Haplothrips aculeatus), Ponticulothrips diospyrosi, yellow thrips (Thrips flavus), Lower Thrips (Anaphothrips obscurus) , Cusukuda thrips (Liothrips floridensis), Gladiolus thrips (Thrips simplex), Black thrips (Thrips nigropilosus), Croton thrips (Heliothrips haemorrhoidalis), Swamp thrips (Pseudodendrothrips mori), Cosmos thrips (Microcephalothrips Abdomin) alis), Thrips Leeuwenia pasanii), Litotetothrips pasaniae, Scirtothrips
- Examples of insect pests in the order of Acari include Leptotrombidium akamushi, Tetranychus ludeni, Dermacentor variabilis, Tetranychus truncatus, Ornithonyssus bacoti, Demodex canis, and Demodex canis.
- Ticks such as Tetranychus viennensis, Tetranychus kanzawai, Rhipicephalus sanguineus, Cheyletus malaccensis, Tyrophagus putrescentiae, Dermatophagoides farinae, Latrodectus hasseltii), Formosan cactus Dermacentor taiwanicus, Acaphylla theavagrans, Polyphagotarsonemus latus, Aculops lycopersici, Ornithonyssus sylvairum, Tetranychus urticae, Eriophyes chibaensis , Sarcoptes scabiei), black-legged tick (Haemaphysalis longicornis), black-legged tick (Ixodes scapularis), spinach spider mite (Tyrophagus similis), white spider mite (Cheyletus eruditus), orange spider mite (Panonychus citri
- termite pests include Reticulitermes miyatakei, Incisitermes minor, Coptotermes formosanus, Hodotermopsis japonica, Reticulitermes sp., and Reticulitermes flaviceps amamianus. , Glyptotermes kushimensis, Coptotermes guangzhoensis, Neotermes koshunensis, Glyptotermes kodamai, Glyptotermes satsumensis, Cryptotermes domesticus, Formosan termite Odontotermes formosanus) , Glyptotermes nakajimai, Pericapritermes nitobei, and Reticulitermes speratus.
- Examples of pests of the order Cockroaches include the black cockroach (Periplaneta fuliginosa), the German cockroach (Blattella germanica), the Japanese cockroach (Blatta orientalis), the brown cockroach (Periplaneta brunnea), the Japanese cockroach (Blattella lituricollis), the Japanese cockroach (Periplaneta japonica), and the American cockroach. (Periplaneta americana) etc.
- nematodes examples include the strawberry nematode (Nothotylenchus acris), the rice nematode (Aphelenchoides besseyi), the northern nematode (Pratylenchus penetrans), the northern nematode (Meloidogyne hapla), the sweet potato nematode (Meloidogyne incognita), and the potato cyst nematode (Globodera).
- rostochiensis Javan cat nematode (Meloidogyne javanica), soybean cyst nematode (Heterodera glycines), southern coffeae (Pratylenchus coffeae), barley coffeae (Pratylenchus neglectus), and citrus nematode (Tylenchus semipenetrans).
- molluscs examples include Pomacea canaliculata, Achatina fulica, Meghimatium bilineatum, Lehmannina valentiana, Limax flavus, and Acusta despecta sieboldiana. can be mentioned.
- the agricultural and horticultural pest control agent of the present invention has a strong insecticidal effect against other pests such as tomato absolutea (Tuta absoluta).
- the agricultural and horticultural pest control agent containing the compound represented by the general formula (1) or its salts as an active ingredient of the present invention is suitable for use in agricultural and horticultural pest control agents that cause damage to paddy crops, field crops, fruit trees, vegetables, other crops, flowers, etc. Because it has a remarkable control effect against pests, it is necessary to remove seedlings, paddy fields, fields, fruit trees, vegetables, and other crops before the outbreak of pests or when the outbreak of pests is confirmed.
- the intended effects of the agricultural and horticultural pest control agent of the present invention can be achieved by treating it on cultivation carriers such as seeds of flowers, paddy water, stems and leaves, or soil.
- the compound of the present invention can be absorbed through the roots through or without the soil by treating the soil for raising seedlings of crops, flowers, etc., the soil for planting holes during transplanting, the roots of plants, irrigation water, cultivation water for hydroponic cultivation, etc.
- a preferred form of use is application that takes advantage of the so-called permeability and migration properties.
- Useful plants to which the agricultural and horticultural pest control agent of the present invention can be used are not particularly limited, but include, for example, cereals (e.g., rice, barley, wheat, rye, oats, corn, etc.), legumes (soybean, etc.) , adzuki beans, fava beans, peas, kidney beans, peanuts, etc.), fruit trees/fruits (apples, citrus fruits, pears, grapes, peaches, plums, cherry peaches, walnuts, chestnuts, almonds, bananas, etc.), leaves/fruit vegetables (cabbage) , tomatoes, spinach, broccoli, lettuce, onions, green onions (morning onions, spring onions), green peppers, eggplants, strawberries, peppers, okra, chives, etc.), root vegetables (carrots, potatoes, sweet potatoes, taro, radish, turnips, lotus root, etc.), processed crops (cotton, hemp, bee
- plants include HPPD inhibitors such as isoxaflutole, ALS inhibitors such as imazethapyr and thifensulfuron-methyl, EPSP synthase inhibitors such as glyphosate, glutamine synthetase inhibitors such as glufosinate, and setoxydim. Also included are plants that have been made resistant to herbicides such as acetyl-CoA carboxylase inhibitors, bromoxynil, dicamba, and 2,4-D by classical breeding methods or genetic recombination techniques.
- HPPD inhibitors such as isoxaflutole
- ALS inhibitors such as imazethapyr and thifensulfuron-methyl
- EPSP synthase inhibitors such as glyphosate
- glutamine synthetase inhibitors such as glufosinate
- setoxydim setoxydim.
- plants that have been made resistant to herbicides such as acetyl-CoA carboxylase inhibitors,
- plants that have been made resistant through classical breeding methods include rapeseed, wheat, sunflower, and rice, which are resistant to imidazolinone-based ALS-inhibiting herbicides such as imazethapyr, which is available under the trade name Clearfield (registered trademark). is already on sale.
- rapeseed, wheat, sunflower, and rice which are resistant to imidazolinone-based ALS-inhibiting herbicides such as imazethapyr, which is available under the trade name Clearfield (registered trademark). is already on sale.
- sulfonylurea-based ALS-inhibiting herbicides such as thifensulfuron-methyl produced by classical breeding methods, and it is already sold under the trade name STS soybean.
- SR corn is an example of a plant that has been made resistant to acetyl-CoA carboxylase inhibitors such as trione oxime herbicides and aryloxyphenoxypropionic acid herbicides through classical breeding methods.
- acetyl-CoA carboxylase inhibitors such as trione oxime herbicides and aryloxyphenoxypropionic acid herbicides through classical breeding methods.
- plants that have been conferred resistance to acetyl-CoA carboxylase inhibitors are listed in the Proceedings of the National Academy of Sciences of the United States of America (Proc. Natl. Acad. Sci. USA), Vol. 87, pp. 7175-7179 (1990).
- mutant acetyl-CoA carboxylase that is resistant to acetyl-CoA carboxylase inhibitors has been reported in Weed Science, Vol.
- Plants resistant to acetyl-CoA carboxylase inhibitors can be created by introducing them into plants or by introducing mutations related to conferring resistance into plant acetyl-CoA carboxylase inhibitors.Furthermore, chimeraplasty technology (Gura T. 1999. Repairing the Genome's Spelling Mistakes. Science 285: 316-318.) is introduced into plant cells to introduce site-specific amino acids into plant acetyl-CoA carboxylase genes, ALS genes, etc. By introducing substitution mutations, it is possible to create plants resistant to acetyl-CoA carboxylase inhibitors, ALS inhibitors, etc., and the agricultural and horticultural pest control agent of the present invention can also be used for these plants. can.
- insecticidal proteins derived from Bacillus cereus and Bacillus popilliae such as Cry1Ab, Cry1Ac, Cry1F, Cry1Fa2, Cry2Ab, Cry3A, Cry3Bb1 or Cry9C derived from Bacillus thuringiensis; Insecticidal proteins such as endotoxin, VIP1, VIP2, VIP3 or VIP3A; insecticidal proteins derived from nematodes; toxins produced by animals such as scorpion toxins, spider toxins, bee toxins or insect-specific neurotoxins; filamentous fungal toxins; plant lectins; Agglutinin; protease inhibitors such as trypsin inhibitors, serine protease inhibitors, patatin, cystatin, and papain inhibitors; ribosome inactivating proteins (RIPs) such as ricin, corn-RIP, abrin, ruffin, saporin, and
- RIPs ribosome inactivating proteins
- toxins expressed in such genetically modified plants include ⁇ -endotoxin proteins such as Cry1Ab, Cry1Ac, Cry1F, Cry1Fa2, Cry2Ab, Cry3A, Cry3Bb1, Cry9C, Cry34Ab, or Cry35Ab, VIP1, VIP2, VIP3, or VIP3A, etc.
- Hybrid toxins, partially deleted toxins, and modified toxins of insecticidal proteins are also included. Hybrid toxins are created by new combinations of different domains of these proteins using recombinant technology.
- Cry1Ab which has a partially deleted amino acid sequence, is known as a partially deleted toxin.
- a modified toxin has one or more amino acids substituted for the naturally occurring toxin.
- the toxins contained in these recombinant plants particularly confer resistance to Coleoptera, Hemiptera, Diptera, Lepidoptera, and nematodes.
- the agricultural and horticultural pest control agent of the present invention can be used in combination with or systematized with those techniques.
- the agricultural and horticultural pest control agent of the present invention can be used as it is, diluted with water, etc., or suspended in an effective amount to control the pests or nematodes. It can be used on plants where outbreaks are predicted. For example, for pests and nematodes that occur in fruit trees, grains, vegetables, etc., in addition to spraying on the stems and leaves, soaking seeds in chemicals, seed dressing, and cultivating methods can be used. Treatments such as seed treatment, soil full layer mixing, cropping application, bed soil mixing, cell seedling treatment, planting hole treatment, plant base treatment, top dressing, rice box treatment, water surface application, etc. It can also be absorbed and used.
- the agricultural and horticultural pest control agent of the present invention can be used as it is, or diluted or suspended with water etc. in an effective amount to control pests at a place where the pests are expected to occur.
- the agricultural and horticultural pest control agent of the present invention can be used as it is, or diluted or suspended with water etc. in an effective amount to control pests at a place where the pests are expected to occur.
- it in addition to being sprayed on grain storage pests, house pests, sanitary pests, forest pests, etc., it can also be used as a coating on house building materials, smoke, bait, etc.
- Seed treatment methods include, for example, diluting a liquid or solid preparation or immersing the seeds in an undiluted liquid state to infiltrate the seeds, mixing a solid or liquid preparation with the seeds, or coating the seeds with powder. Examples include a method of treating and adhering to the surface of seeds, a method of mixing with an adhesive carrier such as a resin or polymer and coating the seeds, and a method of spraying near the seeds at the same time as planting.
- seed used for the seed treatment refers to plants in the early stage of cultivation used for plant propagation, such as seeds, bulbs, tubers, seed potatoes, shoots, bulbs, scales, or cuttings for cultivation. Examples include plants for vegetative propagation.
- soil or “cultivation carrier” for plants when carrying out the method of use of the present invention refers to a support for cultivating crops, especially a support for growing roots, and the material is not particularly limited. However, any material that plants can grow on may be used, such as soil, seedling mats, water, etc. Specific materials include, for example, sand, pumice, vermiculite, diatomaceous earth, agar, gel-like substances, and high-quality materials. It may also be a molecular substance, rock wool, glass wool, wood chips, bark, etc.
- liquid preparations such as emulsions and flowables, or solid preparations such as wettable powders or granule wettable powders, are diluted with water as appropriate.
- a method of spraying a method of spraying a powder, a method of smoking, etc.
- Methods for applying to soil include, for example, applying liquid preparations to the base of plants or seedling beds without diluting them with water, or applying granules to the base of plants or seedling beds for raising seedlings.
- Methods of spraying on seedbeds, etc. methods of spraying powders, wettable powders, hydrated granules, granules, etc. before sowing or transplanting and mixing them with the entire soil, methods of spraying in planting holes, etc. before sowing or planting plants, etc. Examples include methods of dispersing powders, wettable powders, hydrated granules, granules, etc. in strips.
- the dosage form may vary depending on the time of application, such as application at sowing, application during greening, application at transplanting, etc. It can be applied in a mold. It can also be applied by mixing with the soil, such as by mixing the soil with a powder, a granular wettable powder, a granule, etc., for example, mixing with bed soil, mixing with soil covering, or mixing with the entire soil. You may simply apply the soil and various preparations in alternating layers.
- solid preparations such as jumbo preparations, pack preparations, granules, and wettable powders
- liquid preparations such as flowables and emulsions
- a suitable formulation can be sprayed or injected into the soil as it is or mixed with fertilizer.
- a chemical solution such as an emulsion or a flowable at the source of water flowing into the rice field, such as a water outlet or an irrigation system, it can be applied in a labor-saving manner as water is supplied.
- seeds or cultivation carriers close to the plants can be treated during the seeding to seedling-raising period.
- treatment to the roots of plants under cultivation is suitable.
- Spraying treatment can be performed using granules, or irrigation treatment can be carried out in liquid form by diluting or not diluting the agent with water. It is also a preferable treatment to mix the granules with the cultivation carrier before sowing and then sow the seeds.
- Treatments during the sowing and seedling-raising stages of cultivated plants to be transplanted include direct treatment of seeds, as well as irrigation treatment with liquid chemicals or spraying treatment with granules on seedling beds.
- the agricultural and horticultural pest control agent of the present invention is generally formulated into a form convenient for use according to conventional methods for pesticide formulations. That is, the compound represented by the general formula (1) of the present invention or its salts can be dissolved, separated, or suspended by blending them in an appropriate inert carrier or with an adjuvant as necessary in an appropriate ratio. It can be used by clouding, mixing, impregnating, adsorbing or adhering it into an appropriate dosage form, such as suspension, emulsion, liquid, wettable powder, wettable powder, granule, powder, tablet, pack, etc. Good.
- the agricultural and horticultural pest control agent of the present invention may contain additive components commonly used in agricultural chemical formulations, if necessary.
- additive components include carriers such as solid carriers and liquid carriers, surfactants, dispersants, wetting agents, binders, tackifiers, thickeners, colorants, spreading agents, spreading agents, and antifreeze agents. , anti-caking agents, disintegrants, anti-decomposition agents and the like.
- Other additives such as preservatives and plant pieces may be used as necessary.
- These additive components may be used alone or in combination of two or more.
- solid carriers examples include natural minerals such as quartz, clay, kaolinite, pyrophyllite, sericite, talc, bentonite, acid clay, attapulgite, zeolite, and diatomaceous earth, and inorganic salts such as calcium carbonate, ammonium sulfate, sodium sulfate, and potassium chloride. , synthetic silicic acid, synthetic silicates, starch, cellulose, organic solid carriers such as vegetable powders (e.g. sawdust, coconut shell, corncob, tobacco stalk, etc.), plastic carriers such as polyethylene, polypropylene, polyvinylidene chloride, urea, Examples include inorganic hollow bodies, plastic hollow bodies, fumed silica (white carbon), etc. These may be used alone or in combination of two or more.
- natural minerals such as quartz, clay, kaolinite, pyrophyllite, sericite, talc, bentonite, acid clay, attapulgite, zeolite, and diatomace
- liquid carriers examples include monohydric alcohols such as methanol, ethanol, propanol, isopropanol, and butanol, and polyhydric alcohols such as ethylene glycol, diethylene glycol, propylene glycol, hexylene glycol, polyethylene glycol, polypropylene glycol, and glycerin.
- alcohols, polyhydric alcohol compounds such as propylene glycol ether, ketones such as acetone, methyl ethyl ketone, methyl isobutyl ketone, diisobutyl ketone, cyclohexanone, ethyl ether, dioxane, ethylene glycol monoethyl ether, dipropyl ether, THF, etc.
- ethers normal paraffin, naphthene, isoparaffin, kerosene, aliphatic hydrocarbons such as mineral oil, aromatic hydrocarbons such as benzene, toluene, xylene, solvent naphtha, alkylnaphthalene, dichloromethane, chloroform, carbon tetrachloride, etc.
- Halogenated hydrocarbons esters such as ethyl acetate, diisopropyl phthalate, dibutyl phthalate, dioctyl phthalate, dimethyl adipate, lactones such as ⁇ -butyrolactone, amides such as dimethylformamide, diethylformamide, dimethylacetamide, N-alkylpyrrolidinone, etc.
- lactones such as ⁇ -butyrolactone
- amides such as dimethylformamide, diethylformamide, dimethylacetamide, N-alkylpyrrolidinone, etc.
- examples include nitriles such as acetonitrile, sulfur compounds such as dimethyl sulfoxide, vegetable oils such as soybean oil, rapeseed oil, cottonseed oil, and castor oil, and water. These may be used alone or in combination of two or more.
- surfactants used as dispersants and wetting agents include sorbitan fatty acid ester, polyoxyethylene sorbitan fatty acid ester, sucrose fatty acid ester, polyoxyethylene fatty acid ester, polyoxyethylene resin acid ester, polyoxyethylene fatty acid diester, Polyoxyethylene alkyl ether, polyoxyethylene alkylaryl ether, polyoxyethylene alkylphenyl ether, polyoxyethylene dialkylphenyl ether, polyoxyethylene alkylphenyl ether formalin condensate, polyoxyethylene polyoxypropylene block copolymer, polystyrene polyoxyethylene Block polymer, alkyl polyoxyethylene polypropylene block copolymer ether, polyoxyethylene alkylamine, polyoxyethylene fatty acid amide, polyoxyethylene fatty acid bisphenyl ether, polyalkylene benzylphenyl ether, polyoxyalkylene styryl phenyl ether, acetylene diol, polyoxy Alkylene-a
- binders and tackifiers include carboxymethylcellulose and its salts, dextrin, water-soluble starch, xanthan gum, guar gum, sucrose, polyvinylpyrrolidone, gum arabic, polyvinyl alcohol, polyvinyl acetate, sodium polyacrylate, and average molecular weight of 6,000 to 20,000.
- (meth)acrylic acid copolymers half esters of polyhydric alcohol polymers and dicarboxylic anhydrides, water-soluble salts of polystyrene sulfonic acid, paraffins, terpenes, polyamide resins, polyacrylates, polyoxy Examples include ethylene, wax, polyvinyl alkyl ether, alkylphenol formalin condensate, and synthetic resin emulsion.
- thickeners examples include water-soluble polymers such as xanthan gum, guar gum, diurtan gum, carboxymethylcellulose, polyvinylpyrrolidone, carboxyvinyl polymers, acrylic polymers, starch compounds, polysaccharides, high-purity bentonite, and fumed silica.
- Inorganic fine powders such as silica, white carbon, etc.
- coloring agent examples include inorganic pigments such as iron oxide, titanium oxide, and Prussian blue, and organic dyes such as alizarin dyes, azo dyes, and metal phthalocyanine dyes.
- antifreeze agents examples include polyhydric alcohols such as ethylene glycol, diethylene glycol, propylene glycol, and glycerin.
- adjuvants to prevent caking and promote disintegration include starch, alginic acid, polysaccharides such as mannose and galactose, polyvinylpyrrolidone, fumed silica (white carbon), ester gum, petroleum resin, sodium tripolyphosphate, Sodium hexametaphosphate, metal stearate, cellulose powder, dextrin, methacrylic acid ester copolymer, polyvinylpyrrolidone, polyaminocarboxylic acid chelate compound, sulfonated styrene/isobutylene/maleic anhydride copolymer, starch/polyacrylonitrile graft copolymer Examples include polymers.
- decomposition inhibitors include drying agents such as zeolite, quicklime, and magnesium oxide, antioxidants such as phenolic compounds, amine compounds, sulfur compounds, and phosphoric acid compounds, and ultraviolet absorbers such as salicylic acid compounds and benzophenone compounds. It will be done.
- preservatives examples include potassium sorbate and 1,2-benzothiazolin-3-one.
- other aids such as functional spreading agents, activity enhancers such as metabolic decomposition inhibitors such as piperonyl butoxide, antifreeze agents such as propylene glycol, antioxidants such as BHT, and ultraviolet absorbers, etc. Agents can also be used.
- the blending ratio of the active ingredient compound can be adjusted as necessary, and it may be used by appropriately selecting from the range of 0.01 to 90 parts by weight in 100 parts by weight of the agricultural and horticultural pest control agent of the present invention.
- the appropriate amount is 0.01 to 50 parts by weight (0.01 to 50% by weight based on the total weight of the agricultural and horticultural pest control agent).
- the amount of the agricultural and horticultural pest control agent of the present invention to be used depends on various factors, such as purpose, target pests, crop growth conditions, pest outbreak trends, weather, environmental conditions, dosage form, application method, application location, application timing, etc. Depending on the purpose, the amount of the active ingredient compound may be appropriately selected from the range of 0.001 g to 10 kg, preferably 0.01 g to 1 kg, per 10 ares.
- the agricultural and horticultural pest control agent of the present invention can be used in combination with other agricultural and horticultural insecticides, acaricides, nematicides, and fungicides for the purpose of expanding the pests to be controlled and the appropriate period for control, or reducing the amount of pesticides. , biological pesticides, etc., and can also be used in combination with herbicides, plant growth regulators, fertilizers, etc. depending on the usage situation.
- XMC 3,5-xylyl methylcarbamate
- BPMC fenobucarb
- Bt toxin insecticidal compounds CPCBS (chlorfenson), DCIP (dichlorodiisopropyl ether), DD (1,3-Dichloropropene), DDT, NAC, O-4-dimethylsulfamoylphenyl O, O-diethyl phosphorothioate (DSP), O-ethyl O -4-nitrophenyl phenylphosphonothioate (EPN), tripropylisocyanurate (TPIC), acrinathrin, azadirachtin, acynonapyr, azinphos-methyl, acequinocyl, acetamiprid, Acetoprole, acephate, abamectin,
- Examples of agricultural and horticultural fungicides used for similar purposes include aureofungin, azaconazole, azithiram, acypetacs, acibenzolar, and acibenzolar-S-methyl. ), azoxystrobin, anilazine, amisulbrom, ampropylfos, ametoctradin, allyl alcohol, aldimorph, amobam, isotianil isotianil, isovaledione, isopyrazam, isofetamid, isoflucypram, isoprothiolane, ipconazole, ipfentrifluconazole, ipflufenoquin ), iprodione, iprovalicarb, iprobenfos, imazalil, iminoctadine, metam, iminoctadine-albesilate, iminoctadine-triacetate ), imibenconazole, inpyrfluxam, uniconazole,
- Inorganic disinfectants sodium hypochlorote, cupric hydroxide, wettable sulfur, calcium polysulfide, potassium hydrogen carbonate
- Copper-based compounds such as sodium hydrogen carbonate, inorganic sulfur, copper sulfate anhydride, nickel dimethyldithiocarbamate, and oxine copper. , zinc sulfate, copper sulfate pentahydrate, and the like.
- herbicides such as 1-naphthylacetamide, 2,4-PA, 2,3,6-TBA, 2,4,5-T, 2,4,5-TB, 2,4-D, 2, 4-DB, 2,4-DEB, 2,4-DEP, 3,4-DA, 3,4-DB, 3,4-DP, 4-CPA, 4-CPB, 4-CPP, MCP, MCPA, MCPA thioethyl, MCPB, ioxynil, icafolin, icafolin-methyl, aclonifen, azafenidin, acifluorfen, aziprotrine, azimus azimsulfuron, asulam, acetochlor, atrazine, atraton, anisuron, anilofos, aviglycine, abscisic acid, amicarbazone ( amicarbazone), amidosulfuron, amitrole, aminocyclopyrachlor, aminopyralid, amibuzin, amiprophos-methyl, ametridi
- biopesticides include, for example, nuclear polyhedrosis virus (NPV), granulosis virus (GV), cytoplasmic polyhedrosis virus (CPV), and entomopoxi virus (EPV). ), insecticides or nematicides such as Monacrosporium phymatophagum, Steinernema carpocapsae, Steinernema kushidai, Pasteuria penetrans, etc.
- a microbial pesticide used as a fungicide for Trichoderma lignorum, Agrobacterium radiobacter, non-pathogenic Erwinia carotovora, Bacillus subtilis, etc.
- a similar effect can be expected by mixing the microbial pesticides used in this invention with biological pesticides used as herbicides such as Xanthomonas campestris.
- biopesticides such as Encarsia formosa, Aphidius colemani, Aphidoletes aphidimyza, Diglyphus isaea, Dacnusa sibirica, Phytoseiulus natural enemy organisms such as Amblyseius cucumeris, Orius sauteri, microbial pesticides such as Beauveria brongniartii, (Z)-10-tetradecenyl acetate, (E,Z )-4,10-tetradecadinyl acetate, (Z)-8-dodecenyl acetate, (Z)-11-tetradecenyl acetate, (Z)-13-icocen-10-one, 14-methyl-1 - It is also possible to use it in combination with a pheromone agent such as octadecene.
- a pheromone agent such as octadecene.
- the compound represented by general formula (1) or a salt thereof of the present invention is also suitable for controlling parasites in animals.
- Animal parasites live in or on the host animal's body and cause a disadvantage to the host animal.
- the compound represented by the general formula (1) of the present invention or a salt thereof can also be applied as an animal ectoparasiticide or an animal endoparasite controller.
- examples of applicable animals include pigs, horses, Livestock such as cows, sheep, goats, rabbits, camels, water buffalo, deer, mink, and chinchillas, pet animals such as dogs, cats, small birds, and monkeys, laboratory animals such as rats, mice, golden hamsters, and guinea pigs, chickens, ducks, Examples include, but are not limited to, poultry such as ducks, quail, ducks, geese, and turkeys, and humans. It can also be applied to farmed fish such as sea bream, flounder, tuna, yellowtail, and eel, as well as crustaceans and shellfish such as shrimp, crab, scallops, oysters, clams, and clams.
- farmed fish such as sea bream, flounder, tuna, yellowtail, and eel, as well as crustaceans and shellfish such as shrimp, crab, scallops, oysters, clams, and clams.
- Examples of the ectoparasites that can be controlled by the animal ectoparasiticide of the present invention include the genus Rhipicephalus (Rhipicaphalus (Boophilus) microplus, Rhipicephalus sanguineus, etc.), the genus Amblyomma, the genus Dermacentor, the genus Haemaphysalis, the genus Hyalomma, and the genus Ixodes.
- order Phthiraptera e.g. Bovicola Ovis, Bovicola Bovis
- the order Lepidoptera e.g. Bovicola Ovis, Bovicola Bovis
- the order Lepidoptera e.g. Bovicola Ovis, Bovicola Bovis
- the order Lepidoptera e.g. Bovicola Ovis, Bovicola Bovis
- the order Lepidoptera e.g. Bovicola Ovis, Bovicola Bovis
- mites include Boophilus microplus, Rhipicephalus sanguineus, Haemaphysalis longicornis, Haemaphysalis flava, Haemaphysalis campanulata, and Haemaphysalis concinna.
- fleas examples include Pulicidae and Ceratephyllus.
- fleas belonging to the human flea family include dog flea (Ctenocephalidescanis), cat flea (Ctenocephalides felis), human flea (Pulex irritans), chicken flea (Echidnophaga gallinacea), Cheops rat flea (Xenopsylla cheopis), and blind rat flea (Leptopsylla segnis), the European rat flea (Nosopsyllus fasciatus), and the mountain rat flea (Monopsyllus anisus).
- lice such as cow lice (Haematopinus eurysternus), horse lice (Haematopinus asini), sheep lice (Dalmalinia ovis), cow lice (Linognathus vituli), pig lice (Haematopinus suis), pubic lice (Phthirus pubis), and head lice (Pediculus capitis);
- lice such as Trichodectes canis, blood-sucking Diptera pests such as Tabanus trigonus, Culicoides schultzei, and Simulium ornatum can also be treated with the animal ectoparasit control method of the present invention. It is listed as an ectoparasite that can be controlled by drugs.
- the animal ectoparasiticide of the present invention can be prepared by using a suitable solid or liquid carrier in accordance with a commonly used pharmaceutical formulation, blending the agent in an appropriate proportion with an auxiliary agent as necessary, and dissolving, suspending, They may be mixed, impregnated, adsorbed or adhered, and prepared into a suitable dosage form, such as a liquid, emulsifier, cream, ointment, suspension, or aerosol, depending on the purpose of use.
- the amount of the active ingredient in these preparations can range from 0.01 to 80.0 parts by weight per 100 parts by weight of the preparation.
- the solid carrier or liquid carrier used carriers commonly used for veterinary drugs may be used, and liquid carriers are preferably used because they are easier to treat on target animals.
- liquid carrier examples include alcohols such as methyl alcohol, ethyl alcohol, isopropyl alcohol, tertiary butyl alcohol, and benzyl alcohol, propylene carbonate, N-methyl-2-pyrrolidone, and water.
- alcohols such as methyl alcohol, ethyl alcohol, isopropyl alcohol, tertiary butyl alcohol, and benzyl alcohol, propylene carbonate, N-methyl-2-pyrrolidone, and water.
- Auxiliary agents can be used as necessary, and surfactants, antioxidants, emulsifiers, etc.
- adjuvants such as polyoxyethylene alkylaryl ether, polyoxyethylene sorbitan monolaurate, Surfactants such as alkylaryl sorbitan monolaurate, alkylbenzene sulfonate, alkylnaphthalene sulfonic acid, lignosulfonate higher alcohol sulfate ester salt, glycol monoalkyl ether, glycols, sorbitan monooleate, sorbitan monolaurate, caprylic acid Examples include emulsifiers such as monoglyceride, capric acid monoglyceride, isostearic acid monoglyceride, and propylene glycol monocaprylate, and antioxidants such as BHA and BHT.
- surfactants such as alkylaryl sorbitan monolaurate, alkylbenzene sulfonate, alkylnaphthalene sulfonic acid, lignosulfonate higher alcohol sulfate ester salt, glycol
- the animal ectoparasiticide of the present invention may be administered to animals by a route that has the desired effect, such as locally, orally, parenterally, or subcutaneously, and is not particularly limited, but local administration is preferred.
- spot-on treatment involves dropping a liquid drug onto the skin of the dorsal region of the target animal, pour-on treatment, which involves applying a liquid drug along the back line of the target animal, and administering a liquid aerosol drug using a spray method. It can be administered by a treatment method using a spray-on, spray lace, medicinal bath (dip), ear tag or collar carrying a medicinal agent, or the like.
- the application amount may be appropriately selected from the range of usually about 0.1 to 500 mg of the active ingredient compound and usually about 0.01 to 20 ml of the pesticidal agent of the present invention per kg of body weight of the target animal.
- active ingredients can be used in combination as necessary, such as afoxolaner, fluralaner, lotilaner, surolaner, albendazole, cambendazole, fenbendazole, flubendazole, mebendazole, oxifendazole, parabendazole, thiabendazole, triclabendazole, amitraz, demiditraz, clorsulon, closantel, oxyclonazide, lafoxanide, cyphenothrin, flumethrin, permethrin, cyromazine (cyromazine), derquantel, diamphenetide, dicyclanil, dinotefuran, imidacloprid, nitenpyram, thiamethoxam, abamectin, doramectin, emamectin (emamectin), eprinomectin, ivermectin,
- the endoparasites that can be controlled by the animal endoparasite control agent of the present invention are broadly classified into protozoa and helminths.
- Protozoa that parasitic humans include, for example, amoeba (Rhizopoda) such as Entamoeba histolytica, flagellates (Mastigophora) such as Leishmania, trypanosoma, and trichomonas, sporozoa (Sporozoea) such as malaria parasites and Toxoplasma gondii, and large intestine.
- Ciliophora such as Balantidium are included, and helminths that parasitize humans include, for example, helminths, Anisakid, canis, hairy nematodes, pinworms, and hookworms (Zubini hookworm, American hookworm, Brazilian hookworm, etc.) , nematodes such as nematodes, gnathostomes, threadworms (filaria, Bancroft threadworms, Malayan threadworms, etc.), roundworms (Onchocerca), schizozoans, tricholates, strongyloids, etc.
- helminths that parasitize humans include, for example, helminths, Anisakid, canis, hairy nematodes, pinworms, and hookworms (Zubini hookworm, American hookworm, Brazilian hookworm, etc.) , nematodes such as nematodes, gnathostomes, threadworms (filaria, Bancroft threadworms, Malayan thread
- Acannthocephala (Acannthocephala), Gordiacea (Gordiacea), Hirudinea (Hirudinea), Schistosoma japonica, Schistosoma mansoni, Schistosoma bilharzia, Liver fluke, Trematodes (Trematoda) such as trematodes, leech-like trematodes, and lung flukes, tapeworms such as tapeworms, tapeworms mansoni, budworms, tapeworms great, tapeworms of the genus Taenia, tapeworms of the genus Taenia, (taenia taeniae, These include tapeworms (Cestoda) such as Taenia solium, hydatid (Echinococcus, etc.), patterned tapeworm, melid tapeworm, wire tapeworm, monkey bareheaded tapeworm, and tapeworm Nibellina. It is not limited.
- Protozoa that parasitize animals belonging to mammals or birds other than humans include coccidia (Eimeria), Isospora (Isospora), Toxoplasma (Toxoplasma), Neospora (Neospora), Sarcocystis (Sarcocystis), Coccidia such as Besnoitia, Hammondia, Cryptosporidium, and Caryospora; Haemosporina such as Leucocytozoon and Plasmodium; ), Piroplasma such as Theileria, Anaplasma, Eperythrozoon, Heamobartonella, Rhrlichia, and other apicomplexans such as Hepatozoon.
- coccidia Eimeria
- Isospora Isospora
- Toxoplasma Toxoplasma
- Neospora Neospora
- Sarcocystis Sarcocystis
- Coccidia such as Besnoitia, Hammondia, Cryptospori
- Haemogregarina Haemogregarina, Microspora, Encephalitozoon, Nosema, etc. Flagellates, Mastigophora, Trypanosoma, Leishmania, etc. Trichomonads such as Trypanosomatid, Chilomastix, Trichomonas, Monocercomonas, Histomonas, Vaccinonas such as Hexamita, Giardia, etc. Vaccinonadida, Sarcodina, amoebas such as Entamoeba, Ciliophora, Balantidium, Buxtonella, Entodinium. Such,
- helminths that parasitize animals belonging to mammals or birds other than humans include nematodes such as Ascaris, Toxocara, Toxascaris, and Parascaris. ), roundworms (Ascarida) such as Ascaridia, Heterakis and Anisakis, Oxyurida such as Oxyuris and Passalurus, strongyles ( strongylus), Haemonchus, bovine Ostertagia, Trichostrongylus, Cooperia, Nematodirus, red Hystrongylus, Oesophagostomum, Chabertia, Ancylostoma, Uncinaria, Necator, Bunostomum, Bovine Lungworm (Dictyocaulus), pig lungworm (Metastrongylus), dog lungworm (Filaroides), cat lungworm (Aelurostrongulus), Cantonese schistosome (Angiostrongylus), tracheostomy beak (Syngamus),
- Flukes include Fasciolata, such as Fasciola and Fasciolopsis, Paramphistomatidae, such as Homalogaster, Eurytrema, and lanceolates.
- Diplocoelata such as Dicrocoelium, Pharyngostomum, Diplostomata such as Alaria, Echinostoma, Echinochasmus, etc.
- Troglotrematoidea such as Echinostomata, Paragonimus, and Nanophyetus
- Opisthorchiida such as Clonorchis
- Heterophyes include Fasciolata, such as Fasciola and Fasciolopsis, Paramphistomatidae, such as Homalogaster, Eurytrema, and lanceolates.
- Diplocoelata such as Dicrocoelium, Pharyngostomum, Diplostomata such as Alaria, Echinostoma
- Heterophyida such as Metagonimus
- Plagiorchiida such as Prosthogonimus
- Schistosoma such as Schistoma
- Pseudophylidea such as Diphyllobothrium, Spirometra, Anoplocephara, Paranoplocephala, Moniezia, Dog tapeworms (Dipylidium), wired tapeworms (Mesocestoides), legume-like tapeworms, hydatid tapeworms (Tenia), cat tapeworms (Hydatigera), multicephalic tapeworms (Multiceps), monocystic tapeworms (Echinococcus), polycystic tapeworms Echinococcus, Taenia, Taeniarhynchus, Hymenolepis, Vampirolepis, Raillietina, Amoebotaenia, etc. Cyclophyllidea, etc., Macracanthorhynch
- helminths include, for example, the nematode genus Enoplida, Trichuris spp., Capillaria spp., Trichomosoides spp., Trichinella spp. spp.), examples of the genus Rhabditia include Micronema spp. and Strongyloides spp., and examples of the genus Strongylida include, for example, Stronylus. Species (Stronylus spp.), Triodontophorus spp., Oesophagodontus spp., Trichonema spp., Gyalocephalus spp., Cylindrophorahynchus spp.
- Cystocaulus spp. Pneumostrongylus spp., Spicocaulus spp., Elaphostrongylus spp., Parelaphostrongylus spp., Crenosoma spp., Paracrenosoma spp., Angiostrongylus spp., Aelurostrongylus spp., Filaroides spp., Paraphylloides spp.
- Oxyurida for example, Oxyuris spp., Enterobius spp., Passalurus spp., Syphacia spp., Aspiculuris spp. and Heterakis spp.
- Ascaridiae include, for example, Ascaris spp., Toxascaris spp., Toxocara spp., Parascaris spp. spp.), Anisakis spp., and Ascaridia spp.; examples of the Spiruride genus include Gnathosma spp., Physaloptera spp.
- Thelazia spp. Gongylonema spp., Habronema spp., Parabronema spp., Draschia spp., Dracunculus spp., etc.
- Examples of the genus Filariida include Stephanofilaria spp., Parafilaria spp., Setaria spp., Loa spp., and Deirofilaria. Dirofilaria spp., Litomosoides spp., Brugia spp., Wuchereria spp., Onchocerca spp., etc.
- Examples of Acanthocephala include Filicollis spp., Moniliformis spp., Macracanthorhynchus spp., Prosthenorchis spp.
- Subclasses of Monogenea of trematodes include, for example, Gyrodactylus spp., Dactylogyrusspp., and Polystoma spp.
- subclasses of Digenea include, for example. , Diplostomum spp., Posthodiplostomum spp., Schistosomaspp., Trichobilharzia spp., Ornithbilharzia spp.
- Austrobilharzia spp. Gigantobilharziaspp., Leucochloridium spp., Brachylaima spp., Echinostoma spp. spp.), Echinoparyphium spp., Echinochasmus spp., Hypoderaeum spp., Fasciola spp., Fasciolides spp., Hypertrophic fluke spp.
- tapeworms in the order Pseudophyllidea include Diphyllobothrium spp., Spirometra spp., Schistocephalus spp., and Ligula spp. spp.), Bothridium spp., and Diplogonoporus spp., and in the order Cyclophyllidea, for example, Mesocestoides spp., Barecephalic tapeworms.
- the animal endoparasite control agent of the present invention is effective in controlling not only parasites living in the bodies of intermediate hosts and definitive hosts, but also parasites in the host organisms. Furthermore, the compound represented by the general formula (1) of the present invention exhibits a controlling effect on parasites at all stages of development. For example, in protozoa, these include cysts, pretunicate types, trophozoites, meristems in the asexual stage, amoeboid bodies, gametocytes, gametes, fusion bodies, and sporophytes in the sexual stage. In nematodes, they are eggs, larvae, and adults.
- the compound according to the present invention not only exterminates parasites within a living body, but also prevents parasite infection by applying it to the environment, which is a route of infection.
- soil-transmitted infection from soil in fields and parks percutaneous infection from water systems such as rivers, lakes, wetlands, and rice fields, oral infection from feces of animals such as dogs and cats, saltwater fish, freshwater fish, and crustaceans.
- feces of animals such as dogs and cats
- saltwater fish freshwater fish
- crustaceans It is possible to prevent oral infections from shellfish, raw livestock meat, etc., and infections from mosquitoes, horseflies, flies, cockroaches, ticks, fleas, lice, assassin bugs, chiggers, etc.
- the animal endoparasite control agent of the present invention can be administered to humans, non-human mammals, or birds as a pharmaceutical for the purpose of treating or preventing parasitic diseases.
- the administration method can be either oral administration or parenteral administration.
- oral administration by incorporating into capsules, tablets, pills, powders, granules, fine granules, powders, syrups, enteric-coated agents, suspensions, pastes, or liquid drinks or feed for animals. It is possible to administer.
- injections, drops, suppositories, emulsions, suspensions, drops, ointments, creams, liquids, lotions, sprays, aerosols, poultices, and tapes can be administered to mucous membranes or It is administered in a dosage form that maintains percutaneous absorption.
- the optimal amount (effective amount) of the active ingredient should be determined depending on the type of infecting parasite, whether for treatment or prevention.
- the dosage varies depending on the type and degree of infection, the dosage form, etc., but in general, in the case of oral administration, the dosage ranges from about 0.0001 to 10,000 mg/kg body weight per day.
- the dose ranges from about 0.0001 to 10,000 mg/kg body weight per day, administered in a single dose or in divided doses.
- the concentration of the active ingredient in the animal endoparasite control agent of the present invention is generally about 0.001 to 100% by mass, preferably about 0.001 to 99%, and more preferably about 0.005 to 20% by mass.
- the animal endoparasite control agent of the present invention may be a composition to be administered as it is, or may be a highly concentrated composition that is diluted to an appropriate concentration before use.
- the other active ingredients described above can be used in combination as necessary for the purpose of reinforcing or supplementing the effects of the animal endoparasite control agent of the present invention.
- two or more active ingredients may be mixed together before administration, or two or more different formulations may be administered separately.
- N-(4-fluorophenyl)-5-hydroxy-3-oxo-1,2,3,6-tetrahydropyridine-4-carboxamide hydrochloride (0.15 g, 0.52 mmol), potassium carbonate (0.36 g, 2.6 mmol), 5-bromo-2-chloropyrimidine (0.12 g, 0.62 mmol), and N,N-dimethylacetamide (5.0 mL) were added in this order, and the mixture was stirred at 100°C for 3 hours. After the reaction was completed, 10% hydrochloric acid, ethyl acetate, and water were added to separate the layers, and the organic layer was washed with saturated brine.
- Reference example 1 Production reference example 1-1 of 1-(1-methyl-5-(trifluoromethyl)-1H-pyrazol-3-yl)piperidine-3,5-dione (compound number 5-1) Production of tert-butyl (1-methyl-5-(trifluoromethyl)-1H-pyrazol-3-yl)carbamate
- Formulation example 1 Compound of the present invention: 10 parts Xylene: 70 parts N-methylpyrrolidone: 10 parts Mixture of polyoxyethylene nonylphenyl ether and calcium alkylbenzenesulfonate: 10 parts The above ingredients are uniformly mixed and dissolved to form an emulsion.
- Formulation example 2 Compound of the present invention: 3 parts Clay powder: 82 parts Diatomaceous earth powder: 15 parts The above ingredients are uniformly mixed and pulverized to obtain a powder.
- Formulation example 3 Compound of the present invention: 5 parts Mixed powder of bentonite and clay: 90 parts Calcium ligninsulfonate: 5 parts The above ingredients are mixed uniformly, an appropriate amount of water is added, kneaded, granulated, and dried to obtain granules.
- Formulation example 4 Compound of the present invention 20 parts Kaolin and synthetic highly dispersed silicic acid 75 parts Mixture of polyoxyethylene nonylphenyl ether and calcium alkylbenzenesulfonate 5 parts The above are uniformly mixed and pulverized to prepare a wettable powder.
- Test example 1 Insecticidal test against diamondback moth (Plutella xylostella) Adult diamondback moths were released on Chinese cabbage seedlings to lay eggs, and two days after the release, the Chinese cabbage seedlings with eggs were treated with the compound represented by the general formula (1) of the present invention. The sample was immersed for about 30 seconds in a drug solution containing a drug as an active ingredient diluted to 500 ppm, air-dried, and then left in a constant temperature room at 25°C. After 6 days of immersion in the chemical solution, the number of surviving insects was investigated, and the corrected mortality rate was calculated using the following formula, and judgment was made according to the following criteria. 1 ward 10 horses 3 consecutive races.
- the compounds represented by the general formula (1) of the present invention exhibited significant insecticidal activity, particularly for compound numbers 1-5, 1-11, 1-12, 1-16, 1-18, and 1-20. , 1-22, 1-26, 1-28, 1-29, 1-31, 1-32, 1-33, 1-35, 1-36, 1-38, 1-39, 1-40, 1 -44, 1-45, 1-48, 1-49, 1-51, 1-52, 1-53, 1-54, 1-56, 1-57, 1-59, 1-60, 1-61 , 1-62, 1-63, 1-65, 1-68, 1-71, 1-72, 1-73, 1-74, 1-77, 1-79, 1-80, 1-85, 1 Compounds ⁇ 88, 1 ⁇ 89, 1 ⁇ 153, 1 ⁇ 160, 2 ⁇ 13, 2 ⁇ 31, 2 ⁇ 32, 2 ⁇ 36, and 3 ⁇ 1 exhibited excellent activity rated A against diamondback moths. Indicated.
- Test example 2 Insecticidal test against Laodelphax striatellus
- the compound represented by the general formula (1) of the present invention or its salts is dispersed in water and diluted to a 500 ppm chemical solution, and rice seedlings (variety: Nipponbare) are injected into the chemical solution for 30 seconds. After soaking and air-drying, the test tubes were placed in glass test tubes, and 10 instars of the 3rd instar Japanese brown planthopper were inoculated in each tube, followed by cotton plugs. 8 days after inoculation, the number of live and dead insects was investigated, and the corrected mortality rate was calculated using the formula below. The determination was made according to the criteria of Test Example 1.
- Test example 3 Insecticidal test against occidental thrips (Frankliniella occidentalis) Female adult occidental thrips were inoculated onto green bean leaf pieces, and after laying eggs for one day, the female adults were removed. After a further 3 days, hatched larvae on the leaf pieces were counted, and then a chemical solution containing the compounds listed in Tables 1 to 3 as active ingredients diluted to 500 ppm was sprayed. Four days after the treatment, the number of surviving larvae of this species was investigated, and the corrected mortality rate was calculated using the following formula, and judgment was made according to the criteria of Test Example 1. Two in a row.
- the compounds represented by the general formula (1) of the present invention exhibited significant insecticidal activity, especially compound numbers 1-36, 1-52, 1-53, 1-56, 1-57, 1-61. , 1-62, 1-63, 1-65, 1-72, 1-88, 2-10, 2-31, and 2-38 exhibited excellent activity against Occidental thrips, graded A. Indicated.
- Test example 4 Effect evaluation test on larval movement of Dirofilaria immitis 500 L-1 stage larvae of Dirofilaria immitis diluted in a prescribed preparation solution were inoculated into each hole of a 96-well plate, and the compound of the present invention was diluted with DMSO. The solution was added to give a final concentration of 50 ppm. Thereafter, the animals were allowed to stand for 3 days, and their motor abilities were investigated. The motility inhibition rate of each treatment group was corrected and calculated based on the inhibition power by DMSO solution alone.
- Test example 5 Effect evaluation test on the growth of dog heartworm (Dirofilaria immitis) A prescribed adjustment solution, 8 to 20 L-3 stage larvae of dog heartworm, and a DMSO diluted solution of the compound of the present invention were added to each hole of a 24-well plate. The final concentration was 10 ⁇ M. Seven days later, the larvae that had developed to the L-4 stage were counted, and the rate of growth inhibition from the L3-stage larva to the L4-stage larva was calculated.
- dog heartworm Dirofilaria immitis
- compound numbers 1-1, 1-6, 1-13, 1-23, 1-24, 1-25, 1-26, 1 -27, 1-32, 1-47, 1-48, 1-52, 1-55, 1-56, 1-58, 1-71, 1-77, 1-80, 1-84, 1-154 , 1-155, 1-156, 1-157 and 1-158 showed a growth inhibition rate of 50% or more.
- the compounds of the present invention and their salts have excellent effects as pest control agents.
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Abstract
Description
[1]一般式(1)
R1は、
(a1) (C1-C6)アルキル基;(a2) (C2-C6)アルケニル基;(a3) (C2-C6)アルキニル基;(a4) (C3-C6)シクロアルキル基;(a5) ハロ(C1-C6)アルキル基;(a6) ハロ(C2-C6)アルケニル基;(a7) ハロ(C2-C6)アルキニル基;(a8) ハロ(C3-C6)シクロアルキル基;(a9) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(a10) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C3-C6)シクロアルキル基;(a11) フェニル(C1-C6)アルキル基(但しフェニルメチル基を除く);(a12) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(a13) ピリジル(C1-C6)アルキル基;(a14) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル(C1-C6)アルキル基;(a15) (C1-C6)アルキルカルボニル基;(a16) ハロ(C1-C6)アルキルカルボニル基;(a17) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルカルボニル基;(a18) フェニルカルボニル基;(a19) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(a20) ピリジルカルボニル基;(a21) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジルカルボニル基;(a22) フラニルカルボニル基;(a23) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニルカルボニル基;(a24) チエニルカルボニル基;(a25) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニルカルボニル基;(a26) ピラゾリルカルボニル基;(a27) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルカルボニル基;(a28) トリアゾリルカルボニル基;(a29) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアゾリルカルボニル基;(a30) ジオキソジヒドロベンゾフラニルカルボニル基;(a31) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ジオキソジヒドロベンゾフラニルカルボニル基;(a32) ジヒドロベンゾジオキシニルカルボニル基;(a33) 置換基群Cからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ジヒドロベンゾジオキシニルカルボニル基;(a34) (C1-C6)アルコキシカルボニル基;(a35) ハロ(C1-C6)アルコキシカルボニル基;(a36) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルコキシカルボニル基;(a37) フェニル(C1-C6)アルコキシカルボニル基;(a38) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルコキシカルボニル基;(a39) (C1-C6)アルキルスルホニル基;(a40) (C3-C6)シクロアルキルスルホニル基;(a41) ハロ(C1-C6)アルキルスルホニル基;(a42) ハロ(C3-C6)シクロアルキルスルホニル基;(a43) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルスルホニル基;(a44) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C3-C6)シクロアルキルスルホニル基;(a45) ハロ(C1-C6)アルコキシハロ(C1-C6)アルキルスルホニル基;(a46) フェニルスルホニル基;(a47) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニルスルホニル基;(a48) チエニルスルホニル基;(a49) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニルスルホニル基;(a50) ピラゾリルスルホニル基;(a51) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルスルホニル基;(a52) チアゾリルスルホニル基;(a53) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリルスルホニル基;(a54) イソキサゾリルスルホニル基;(a55) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルスルホニル基;(a56) キノリニルスルホニル基;(a57) 置換基群Cからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニルスルホニル基;(a58) フェニル(C1-C6)アルキルスルホニル基;(a59) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルキルスルホニル基;(a60) アリール基;(a61) 置換基群Dからそれぞれ独立に選択される1個以上の置換基を環上に有する置換アリール基;(a62) 5乃至10員環複素環基;(a63) 置換基群Dからそれぞれ独立に選択される1個以上の置換基を環上に有する置換5乃至10員環複素環基;(a64) (C3-C6)シクロアルキルカルボニル基;(a65) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C3-C6)シクロアルキルカルボニル基;(a66) イソキサゾリルカルボニル基;(a67) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルカルボニル基;(a68) フェニルアミノカルボニル基;(a69) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルアミノカルボニル基;(a70) ピリミジニルカルボニル基;(a71) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニルカルボニル基;(a72) ピラジニルカルボニル基;(a73) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニルカルボニル基;(a74) ピリダジニルカルボニル基;(a75) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニルカルボニル基;(a76) ナフチルカルボニル基;(a77) 置換基群Cからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ナフチルカルボニル基;(a78) キノリニルカルボニル基;又は(a79) 置換基群Cからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニルカルボニル基を示す。
R2は、
(b1) アミノ基;(b2) (C1-C6)アルキル基;(b3) (C2-C6)アルケニル基;(b4) (C2-C6)アルキニル基;(b5) (C3-C6)シクロアルキル基;(b6) ハロ(C1-C6)アルキル基;(b7) ハロ(C2-C6)アルケニル基;(b8) ハロ(C2-C6)アルキニル基;(b9) ハロ(C3-C6)シクロアルキル基;(b10) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(b11) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換(C3-C6)シクロアルキル基;(b12) N‐(C1-C6)アルキルアミノ基;(b13) N,N‐ジ(C1-C6)アルキルアミノ基;(b14) N‐(C1-C6)アルキル‐N‐フェニルアミノ基;(b15) (C1-C6)アルキルスルホニル基;(b16) N‐(C1-C6)アルキルアミノスルホニル基;(b17) N,N‐ジ(C1-C6)アルキルアミノスルホニル基;(b18) ピペリジニル基;(b19) モルホリニル基;(b20) フェニル基;(b21) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(b22) ピリジル基;(b23) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(b24) ピリダジニル基;(b25) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(b26) ピリミジニル基;(b27) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(b28) ピラジニル基;(b29) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(b30) トリアジニル基;(b31) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアジニル基;(b32) フラニル基;(b33) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル基;(b34) オキサゾリル基;(b35) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(b36) イソキサゾリル基;(b37) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリル基;(b38) チエニル基;(b39) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基;(b40) チアゾリル基;(b41) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(b42) イソチアゾリル基;(b43) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソチアゾリル基;(b44) チアジアゾリル基;(b45) 置換基群Eからそれぞれ独立に選択される1個の置換基を環上に有する置換チアジアゾリル基;(b46) ピラゾリル基;(b47) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(b48) トリアゾリル基;(b49) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアゾリル基;(b50) テトラゾリル基;(b51) 置換基群Eからそれぞれ独立に選択される1個の置換基を環上に有する置換テトラゾリル基;(b52) ベンゾオキサゾリル基;(b53) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾオキサゾリル基;(b54) ベンゾチアゾリル基;(b55) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾチアゾリル基;(b56) キノリニル基;(b57) 置換基群Eからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニル基;(b58) ナフチル基;(b59) 置換基群Eからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ナフチル基;(b60) テトラヒドロナフチル基;(b61) 置換基群Eからそれぞれ独立に選択される1乃至10個の置換基を環上に有する置換テトラヒドロナフチル基;(b62) フェニル(C1-C6)アルキル基;(b63) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(b64) ピリジル(C1-C6)アルキル基;(b65) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル(C1-C6)アルキル基;(b66) ピラジニル(C1-C6)アルキル基;(b67) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル(C1-C6)アルキル基;(b68) ピリミジニル(C1-C6)アルキル基;(b69) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル(C1-C6)アルキル基;(b70) フラニル(C1-C6)アルキル基;(b71) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル(C1-C6)アルキル基;(b72) チエニル(C1-C6)アルキル基;(b73) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル(C1-C6)アルキル基;(b74) テトラヒドロフラニル(C1-C6)アルキル基;(b75) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換テトラヒドロフラニル(C1-C6)アルキル基;(b76) ベンゾイミダゾリル基;又は(b77) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換ベンゾイミダゾリル基を示す。
R3は、
(c1) 水素原子;(c2) (C1-C6)アルキル基;(c3) (C3-C6)シクロアルキル基;(c4) (C1-C6)アルコキシ基;又は(c5) (C1-C6)アルキルカルボニル基を示す。
R2及びR3は、お互いに結合して環を形成してもよい。
Xは、CH2又は酸素原子を示す。
Yは、酸素原子又は硫黄原子を示す。
置換基群Aは、
(d1) シアノ基;(d2) (C1-C6)アルキル基;(d3) (C2-C6)アルケニル基;(d4) (C2-C6)アルキニル基;(d5) (C3-C6)シクロアルキル基;(d6) (C1-C6)アルコキシ基;(d7) (C1-C6)アルキルスルファニル基;(d8) (C1-C6)アルキルスルフィニル基;(d9) (C1-C6)アルキルスルホニル基;(d10) ハロ(C1-C6)アルキル基;(d11) ハロ(C3-C6)シクロアルキル基;(d12) ハロ(C1-C6)アルコキシ基;(d13) ハロ(C1-C6)アルキルスルファニル基;(d14) ハロ(C1-C6)アルキルスルフィニル基;(d15) ハロ(C1-C6)アルキルスルホニル基;(d16) フェニルスルファニル基;(d17) アミノカルボニル基;(d18) モルホリニル基;(d19) フェニルカルボニル基;(d20) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(d21) ピラゾリル基;(d22) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(d23) チエニル基;及び(d24) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基からなる。
置換基群Bは、
(e1) シアノ基;(e2) (C1-C6)アルキル基;(e3) (C2-C6)アルケニル基;(e4) (C2-C6)アルキニル基;(e5) (C3-C6)シクロアルキル基;(e6) (C1-C6)アルコキシ基;(e7) (C1-C6)アルキルスルファニル基;(e8) (C1-C6)アルキルスルフィニル基;(e9) (C1-C6)アルキルスルホニル基;(e10) ハロ(C1-C6)アルキル基;(e11) ハロ(C3-C6)シクロアルキル基;(e12) ハロ(C1-C6)アルコキシ基;(e13) ハロ(C1-C6)アルキルスルファニル基;(e14) ハロ(C1-C6)アルキルスルフィニル基;(e15) ハロ(C1-C6)アルキルスルホニル基;(e16) アミノカルボニル基;及び(e17) フェニル基からなる。
置換基群Cは、
(f1) ハロゲン原子;(f2) シアノ基;(f3) ニトロ基;(f4) ヒドロキシル基;(f5) カルボキシル基;(f6) (C1-C6)アルキル基;(f7) (C2-C6)アルケニル基;(f8) (C2-C6)アルキニル基;(f9) (C1-C6)アルコキシ基;(f10) (C3-C6)シクロアルキル基;(f11) (C1-C6)アルキルスルファニル基;(f12) (C1-C6)アルキルスルフィニル基;(f13) (C1-C6)アルキルスルホニル基;(f14) ハロ(C1-C6)アルキル基;(f15) ハロ(C2-C6)アルケニル基;(f16) ハロ(C2-C6)アルキニル基;(f17) ハロ(C1-C6)アルコキシ基;(f18) ハロ(C3-C6)シクロアルキル基;(f19) ハロ(C1-C6)アルキルスルファニル基;(f20) ハロ(C1-C6)アルキルスルフィニル基;(f21) ハロ(C1-C6)アルキルスルホニル基;(f22) (C1-C6)アルキルカルボニル基;(f23) (C1-C6)アルコキシカルボニル基;(f24) フェニル基;(f25) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(f26) フェノキシ基;(f27) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;(f28) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子、フェニル基及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(f29) (C1-C6)アルキルカルボニルアミノ基;(f30) ハロ(C1-C6)アルキルカルボニルアミノ基;及び(f31) (C1-C6)アルキルスルファニル(C1-C6)アルキルアミノカルボニル基からなる。
置換基群Dは、
(g1) ハロゲン原子;(g2) シアノ基;(g3) ニトロ基;(g4) ヒドロキシル基;(g5) カルボキシル基;(g6) (C1-C6)アルキル基;(g7) (C2-C6)アルケニル基;(g8) (C2-C6)アルキニル基;(g9) (C1-C6)アルコキシ基;(g10) (C3-C6)シクロアルキル基;(g11) (C1-C6)アルキルスルファニル基;(g12) (C1-C6)アルキルスルフィニル基;(g13) (C1-C6)アルキルスルホニル基;(g14) ハロ(C1-C6)アルキル基;(g15) ハロ(C2-C6)アルケニル基;(g16) ハロ(C2-C6)アルキニル基;(g17) ハロ(C1-C6)アルコキシ基;(g18) ハロ(C3-C6)シクロアルキル基;(g19) ハロ(C1-C6)アルキルスルファニル基;(g20) ハロ(C1-C6)アルキルスルフィニル基;(g21) ハロ(C1-C6)アルキルスルホニル基;(g22) シアノ基、(C1-C6)アルキル基、ハロ(C1-C6)アルキル基、(C1-C6)アルコキシ基及び(C1-C6)アルキルカルボニル基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換(C3-C6)シクロアルキル基;(g23) (C1-C6)アルコキシ(C1-C6)アルキル基;(g24) (C1-C6)アルコキシ(C1-C6)アルコキシ基;(g25) (C1-C6)アルキルカルボニルアミノ基;(g26) ハロ(C1-C6)アルキルカルボニルアミノ基;(g27) (C1-C6)アルキルスルホニルアミノ基;(g28) ハロ(C1-C6)アルキルスルホニルアミノ基;(g29) (C1-C6)アルコキシカルボニル基;(g30) N‐(C1-C6)アルキルアミノカルボニル基;(g31) N,N‐ジ(C1-C6)アルキルアミノカルボニル基;(g32) N‐ハロ(C1-C6)アルキルアミノカルボニル基;(g33) N‐(C1-C6)アルキルアミノスルホニル基;(g34) N,N‐ジ(C1-C6)アルキルアミノスルホニル基;(g35) フラニル基;(g36) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル基;(g37) オキサゾリル基;(g38) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(g39) イソオキサゾリル基;(g40) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソオキサゾリル基;(g41) オキサジアゾリル基;(g42) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1個の置換基を環上に有する置換オキサジアゾリル基;(g43) チエニル基;(g44) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基;(g45) チアゾリル基;(g46) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(g47) イソチアゾリル基;(g48) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソチアゾリル基;(g49) チアジアゾリル基;(g50) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1個の置換基を環上に有する置換チアジアゾリル基;(g51) ピロリル基;(g52) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピロリル基;(g53) ピラゾリル基;(g54) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換ピラゾリル基;(g55) イミダゾリル基;(g56) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イミダゾリル基;(g57) トリアゾリル基;(g58) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1個の置換基を環上に有する置換トリアゾリル基;(g59) テトラゾリル基;(g60) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1個の置換基を環上に有する置換テトラゾリル基;(g61) オキサゾリニル基;(g62) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換オキサゾリニル基;(g63) チアゾリニル基;(g64) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換チアゾリニル基;(g65) イソオキサゾリニル基;(g66) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換イソオキサゾリニル基;(g67) イソチアゾリニル基;(g68) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換イソチアゾリニル基;(g69) ピロリジニル基;(g70) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピロリジニル基;(g71) イミダゾリニル基;(g72) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換イミダゾリニル基;(g73) フェニル基;(g74) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(g75) ピリジル基;(g76) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(g77) ピリダジニル基;(g78) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(g79) ピリミジニル基;(g80) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(g81) ピラジニル基;(g82) ハロゲ
ン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(g83) トリアジニル基;(g84) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアジニル基;(g85) ジヒドロフラニル基;(g86) ジヒドロピラニル基;(g87) フェニルオキシ基;(g88) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルオキシ基;(g89) フェニル(C1-C6)アルコキシ基;(g90) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルコキシ基;(g91) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子、フェニル基及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;及び(g92) R4-(R5-N=)O=S基(式中、R4は、(C1-C6)アルキル基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基、又は(C1-C6)アルコキシ(C1-C6)アルキル基を示し、R5は、水素原子、シアノ基、(C1-C6)アルキル基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基、(C1-C6)アルキルカルボニル基、又はハロ(C1-C6)アルキルカルボニル基を示す。)からなる。
置換基群Eは、
(h1) ハロゲン原子;(h2) シアノ基;(h3) ニトロ基;(h4) アミノ基;(h5) ヒドロキシル基;(h6) カルボキシル基;(h7) (C1-C6)アルキル基;(h8) (C1-C6)アルコキシ基;(h9) (C3-C6)シクロアルキル基;(h10) (C1-C6)アルキルスルファニル基;(h11) (C1-C6)アルキルスルフィニル基;(h12) (C1-C6)アルキルスルホニル基;(h13) ハロ(C1-C6)アルキル基;(h14) ハロ(C1-C6)アルコキシ基;(h15) ハロ(C3-C6)シクロアルキル基;(h16) ハロ(C1-C6)アルキルスルファニル基;(h17) ハロ(C1-C6)アルキルスルフィニル基;(h18) ハロ(C1-C6)アルキルスルホニル基;(h19) (C1-C6)アルコキシカルボニル基;(h20) フェニル(C1-C6)アルコキシカルボニル基;(h21) (C1-C6)アルキルアミノカルボニル基;(h22) N‐ハロ(C1-C6)アルキルアミノカルボニル基;(h23) フェニル基;(h24) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(h25) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(h26) (C1-C6)アルキルスルホニルアミノ基;(h27) (C1-C6)アルキルアミノスルホニル基;(h28) (C1-C6)アルキルカルボニルアミノ基;(h29) フェノキシ基;(h30) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;及び(h31) SF5基からなる。
但し、R1の(a61)置換アリール基及び(a63)置換5乃至10員環複素環基は、ピペリジン環との結合原子の隣接原子に(C1-C6)アルキルスルホニル基、ハロ(C1-C6)アルキルスルホニル基、N‐(C1-C6)アルキルアミノスルホニル基、N,N‐ジ(C1-C6)アルキルアミノスルホニル基、及びR4‐(R5‐N=)O=S基(式中、R4は、(C1-C6)アルキル基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基、又は(C1-C6)アルコキシ(C1-C6)アルキル基を示し、R5は、水素原子、シアノ基、(C1-C6)アルキル基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基、(C1-C6)アルキルカルボニル基、又はハロ(C1-C6)アルキルカルボニル基を示す。)は置換しない。
}で表される化合物(但し、以下の構造式で表される化合物を除く。
(a3) (C2-C6)アルキニル基;(a9) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(a11) フェニル(C1-C6)アルキル基(但しフェニルメチル基を除く);(a12) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(a13) ピリジル(C1-C6)アルキル基;(a14) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル(C1-C6)アルキル基;(a15) (C1-C6)アルキルカルボニル基;(a16) ハロ(C1-C6)アルキルカルボニル基;(a17) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルカルボニル基;(a18) フェニルカルボニル基;(a19) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(a20) ピリジルカルボニル基;(a21) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジルカルボニル基;(a22) フラニルカルボニル基;(a23) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニルカルボニル基;(a24) チエニルカルボニル基;(a25) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニルカルボニル基;(a26) ピラゾリルカルボニル基;(a27) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルカルボニル基;(a28) トリアゾリルカルボニル基;(a29) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアゾリルカルボニル基;(a30) ジオキソジヒドロベンゾフラニルカルボニル基;(a31) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ジオキソジヒドロベンゾフラニルカルボニル基;(a32) ジヒドロベンゾジオキシニルカルボニル基;(a33) 置換基群Cからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ジヒドロベンゾジオキシニルカルボニル基;(a34) (C1-C6)アルコキシカルボニル基;(a37) フェニル(C1-C6)アルコキシカルボニル基;(a38) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルコキシカルボニル基;(a39) (C1-C6)アルキルスルホニル基;(a40) (C3-C6)シクロアルキルスルホニル基;(a41) ハロ(C1-C6)アルキルスルホニル基;(a43) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルスルホニル基;(a45) ハロ(C1-C6)アルコキシハロ(C1-C6)アルキルスルホニル基;(a46) フェニルスルホニル基;(a47) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニルスルホニル基;(a48) チエニルスルホニル基;(a49) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニルスルホニル基;(a50) ピラゾリルスルホニル基;(a51) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルスルホニル基;(a52) チアゾリルスルホニル基;(a53) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリルスルホニル基;(a54) イソキサゾリルスルホニル基;(a55) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルスルホニル基;(a56) キノリニルスルホニル基;(a57) 置換基群Cからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニルスルホニル基;(a58) フェニル(C1-C6)アルキルスルホニル基;(a59) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルキルスルホニル基;(a64) (C3-C6)シクロアルキルカルボニル基;(a65) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C3-C6)シクロアルキルカルボニル基;(a66) イソキサゾリルカルボニル基;(a67) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルカルボニル基;(a68) フェニルアミノカルボニル基;(a69) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルアミノカルボニル基;(a70) ピリミジニルカルボニル基;(a71) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニルカルボニル基;(a72) ピラジニルカルボニル基;(a73) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニルカルボニル基;(a74) ピリダジニルカルボニル基;(a75) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニルカルボニル基;(a76) ナフチルカルボニル基;(a77) 置換基群Cからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ナフチルカルボニル基;(a78) キノリニルカルボニル基;(a79) 置換基群Cからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニルカルボニル基;(a80) フェニル基;(a81) 置換基群Dからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(a82) ピリジル基;(a83) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(a84) ピリダジニル基;(a85) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(a86) ピリミジニル基;(a87) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(a88) ピラジニル基;(a89) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(a90) フラニル基;(a91) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル基;(a92) オキサゾリル基;(a93) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(a94) オキサジアゾリル基;(a95) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換オキサジアゾリル基;(a96) チエニル基;(a97) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基;(a98) チアゾリル基;(a99) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(a100) チアジアゾリル基;(a101) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換チアジアゾリル基;(a102) ピラゾリル基;(a103) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(a104) イミダゾリル基;(a105) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換イミダゾリル基;(a106) トリアゾリル基;(a107) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアゾリル基;(a108) テトラゾリル基;(a109) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換テトラゾリル基;(a110) ベンゾオキサゾリル基;(a111) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾオキサゾリル基;(a112) ベンゾチアゾリル基;(a113) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾチアゾリル基;(a114) チアゾロピリジル基;(a115) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換チアゾロピリジル基;(a116) キノキサリニル基;又は(a117) 置換基群Dからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換キノキサリニル基であり、
R2が、
(b2) (C1-C6)アルキル基;(b5) (C3-C6)シクロアルキル基;(b10) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(b20) フェニル基;(b21) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(b22) ピリジル基;(b23) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(b24) ピリダジニル基;(b25) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(b26) ピリミジニル基;(b27) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(b28) ピラジニル基;(b29) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(b34) オキサゾリル基;(b35) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(b36) イソキサゾリル基;(b37) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリル基;(b40) チアゾリル基;(b41) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(b46) ピラゾリル基;(b47) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(b56) キノリニル基;(b57) 置換基群Eからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニル基;(b62) フェニル(C1-C6)アルキル基;(b63) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(b70) フラニル(C1-C6)アルキル基;(b71) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル(C1-C6)アルキル基;(b72) チエニル(C1-C6)アルキル基;(b73) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル(C1-C6)アルキル基;(b74) テトラヒドロフラニル(C1-C6)アルキル基;(b75) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換テトラヒドロフラニル(C1-C6)アルキル基;(b76) ベンゾイミダゾリル基;又は(b77) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換ベンゾイミダゾリル基であり、
R3が、
(c1) 水素原子;(c2) (C1-C6)アルキル基;又は(c3) (C3-C6)シクロアルキル基であり、
R2及びR3は、お互いに結合して環を形成してもよく、
Xが、CH2又は酸素原子であり、
Yが、酸素原子又は硫黄原子であり、
置換基群Aが、
(d1) シアノ基;(d5) (C3-C6)シクロアルキル基;(d6) (C1-C6)アルコキシ基;(d7) (C1-C6)アルキルスルファニル基;(d16) フェニルスルファニル基;(d18) モルホリニル基;(d19) フェニルカルボニル基;(d20) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(d21) ピラゾリル基;(d22) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(d23) チエニル基;及び(d24) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基からなり、
置換基群Bが、
(e1) シアノ基;(e2) (C1-C6)アルキル基;及び(e10) ハロ(C1-C6)アルキル基からなり、
置換基群Cが、
(f1) ハロゲン原子;(f2) シアノ基;(f3) ニトロ基;(f6) (C1-C6)アルキル基;(f9) (C1-C6)アルコキシ基;(f10) (C3-C6)シクロアルキル基;(f11) (C1-C6)アルキルスルファニル基;(f12) (C1-C6)アルキルスルフィニル基;(f13) (C1-C6)アルキルスルホニル基;(f14) ハロ(C1-C6)アルキル基;(f17) ハロ(C1-C6)アルコキシ基;(f19) ハロ(C1-C6)アルキルスルファニル基;(f23) (C1-C6)アルコキシカルボニル基;(f24) フェニル基;(f25) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(f26) フェノキシ基;(f27) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;(f28) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子、フェニル基及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(f29) (C1-C6)アルキルカルボニルアミノ基;(f30) ハロ(C1-C6)アルキルカルボニルアミノ基;及び(f31) (C1-C6)アルキルスルファニル(C1-C6)アルキルアミノカルボニル基からなり、
置換基群Dが、
(g1) ハロゲン原子;(g2) シアノ基;(g6) (C1-C6)アルキル基;(g9) (C1-C6)アルコキシ基;(g11) (C1-C6)アルキルスルファニル基;(g14) ハロ(C1-C6)アルキル基;(g17) ハロ(C1-C6)アルコキシ基;(g19) ハロ(C1-C6)アルキルスルファニル基;(g29) (C1-C6)アルコキシカルボニル基;(g73) フェニル基;及び(g74) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基からなり、
置換基群Eが、
(h1) ハロゲン原子;(h2) シアノ基;(h3) ニトロ基;(h7) (C1-C6)アルキル基;(h8) (C1-C6)アルコキシ基;(h9) (C3-C6)シクロアルキル基;(h10) (C1-C6)アルキルスルファニル基;(h12) (C1-C6)アルキルスルホニル基;(h13) ハロ(C1-C6)アルキル基;(h14) ハロ(C1-C6)アルコキシ基;(h16) ハロ(C1-C6)アルキルスルファニル基;(h17) ハロ(C1-C6)アルキルスルフィニル基;(h19) (C1-C6)アルコキシカルボニル基;(h21) (C1-C6)アルキルアミノカルボニル基;(h22) N‐ハロ(C1-C6)アルキルアミノカルボニル基;(h23) フェニル基;(h24) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(h25) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(h26) (C1-C6)アルキルスルホニルアミノ基;(h27) (C1-C6)アルキルアミノスルホニル基;(h28) (C1-C6)アルキルカルボニルアミノ基;(h29) フェノキシ基;(h30) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;及び(h31) SF5基からなる、[1]に記載の化合物及びその塩類、
(a3) (C2-C6)アルキニル基;(a9) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(a11) フェニル(C1-C6)アルキル基(但しフェニルメチル基を除く);(a12) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(a13) ピリジル(C1-C6)アルキル基;(a14) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル(C1-C6)アルキル基;(a16) ハロ(C1-C6)アルキルカルボニル基;(a17) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルカルボニル基;(a18) フェニルカルボニル基;(a19) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(a21) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジルカルボニル基;(a22) フラニルカルボニル基;(a24) チエニルカルボニル基;(a34) (C1-C6)アルコキシカルボニル基;(a37) フェニル(C1-C6)アルコキシカルボニル基;(a39) (C1-C6)アルキルスルホニル基;(a40) (C3-C6)シクロアルキルスルホニル基;(a41) ハロ(C1-C6)アルキルスルホニル基;(a43) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルスルホニル基;(a46) フェニルスルホニル基;(a47) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニルスルホニル基;(a51) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルスルホニル基;(a56) キノリニルスルホニル基;(a58) フェニル(C1-C6)アルキルスルホニル基;(a59) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルキルスルホニル基;(a64) (C3-C6)シクロアルキルカルボニル基;(a67) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルカルボニル基;(a69) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルアミノカルボニル基;(a71) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニルカルボニル基;(a73) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニルカルボニル基;(a75) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニルカルボニル基;(a76) ナフチルカルボニル基;(a78) キノリニルカルボニル基;(a80) フェニル基;(a81) 置換基群Dからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(a82) ピリジル基;(a83) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(a84) ピリダジニル基;(a85) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(a86) ピリミジニル基;(a87) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(a88) ピラジニル基;(a89) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(a92) オキサゾリル基;(a93) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(a96) チエニル基;(a97) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基;(a98) チアゾリル基;(a99) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(a100) チアジアゾリル基;(a101) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換チアジアゾリル基;(a102) ピラゾリル基;(a103) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(a108) テトラゾリル基;(a109) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換テトラゾリル基;(a110) ベンゾオキサゾリル基;(a111) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾオキサゾリル基;(a112) ベンゾチアゾリル基;(a113) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾチアゾリル基;(a114) チアゾロピリジル基;(a115) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換チアゾロピリジル基;(a116) キノキサリニル基;又は(a117) 置換基群Dからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換キノキサリニル基であり、
R2が、
(b2) (C1-C6)アルキル基;(b5) (C3-C6)シクロアルキル基;(b20) フェニル基;(b21) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(b22) ピリジル基;(b23) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(b24) ピリダジニル基;(b25) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(b26) ピリミジニル基;(b27) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(b28) ピラジニル基;(b29) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(b34) オキサゾリル基;(b37) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリル基;(b40) チアゾリル基;(b41) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(b46) ピラゾリル基;(b47) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(b56) キノリニル基;(b57) 置換基群Eからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニル基;(b62) フェニル(C1-C6)アルキル基;(b63) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(b70) フラニル(C1-C6)アルキル基;(b71) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル(C1-C6)アルキル基;(b72) チエニル(C1-C6)アルキル基;(b73) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル(C1-C6)アルキル基;(b74) テトラヒドロフラニル(C1-C6)アルキル基;(b75) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換テトラヒドロフラニル(C1-C6)アルキル基;(b76) ベンゾイミダゾリル基;又は(b77) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換ベンゾイミダゾリル基であり、
R3が、(c1) 水素原子であり、
Xが、CH2又は酸素原子であり、
Yが、酸素原子又は硫黄原子であり、
置換基群Aが、
(d1) シアノ基;(d6) (C1-C6)アルコキシ基;(d7) (C1-C6)アルキルスルファニル基;(d16) フェニルスルファニル基;(d18) モルホリニル基;(d20) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(d21) ピラゾリル基;(d22) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;及び(d23) チエニル基からなり、
置換基群Cが、
(f1) ハロゲン原子;(f2) シアノ基;(f3) ニトロ基;(f6) (C1-C6)アルキル基;(f9) (C1-C6)アルコキシ基;(f10) (C3-C6)シクロアルキル基;(f11) (C1-C6)アルキルスルファニル基;(f12) (C1-C6)アルキルスルフィニル基;(f13) (C1-C6)アルキルスルホニル基;(f14) ハロ(C1-C6)アルキル基;(f17) ハロ(C1-C6)アルコキシ基;(f19) ハロ(C1-C6)アルキルスルファニル基;(f23) (C1-C6)アルコキシカルボニル基;(f24) フェニル基;(f25) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(f26) フェノキシ基;(f27) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;(f28) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子、フェニル基及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(f29) (C1-C6)アルキルカルボニルアミノ基;及び(f31) (C1-C6)アルキルスルファニル(C1-C6)アルキルアミノカルボニル基からなり、
置換基群Dが、
(g1) ハロゲン原子;(g2) シアノ基;(g6) (C1-C6)アルキル基;(g9) (C1-C6)アルコキシ基;(g14) ハロ(C1-C6)アルキル基;(g19) ハロ(C1-C6)アルキルスルファニル基;(g29) (C1-C6)アルコキシカルボニル基;(g73) フェニル基;及び(g74) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基からなり、
置換基群Eが、
(h1) ハロゲン原子;(h2) シアノ基;(h3) ニトロ基;(h7) (C1-C6)アルキル基;(h8) (C1-C6)アルコキシ基;(h9) (C3-C6)シクロアルキル基;(h10) (C1-C6)アルキルスルファニル基;(h12) (C1-C6)アルキルスルホニル基;(h13) ハロ(C1-C6)アルキル基;(h14) ハロ(C1-C6)アルコキシ基;(h16) ハロ(C1-C6)アルキルスルファニル基;(h17) ハロ(C1-C6)アルキルスルフィニル基;(h19) (C1-C6)アルコキシカルボニル基;(h22) N‐ハロ(C1-C6)アルキルアミノカルボニル基;(h23) フェニル基;(h25) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(h26) (C1-C6)アルキルスルホニルアミノ基;(h27) (C1-C6)アルキルアミノスルホニル基;(h28) (C1-C6)アルキルカルボニルアミノ基;(h29) フェノキシ基;及び(h31) SF5基からなる、[1]又は[2]に記載の化合物及びその塩類、
[5][1]乃至[3]の何れか一つに記載の化合物又はその塩類を有効成分として含有することを特徴とする農園芸用害虫防除剤、
[6][1]乃至[3]の何れか一つに記載の化合物又はその塩類を有効成分として含有することを特徴とする動物用外部寄生虫防除剤、
[7][1]乃至[3]の何れか一つに記載の化合物又はその塩類を有効成分として含有することを特徴とする動物用内部寄生虫防除剤、
[8][5]に記載の農園芸用害虫防除剤の有効量を植物又は土壌に処理することを特徴とする農園芸用害虫の防除方法、
[9][6]に記載の動物用外部寄生虫防除剤の有効量を対象動物に、経口又は非経口投与することを特徴とする動物の外部寄生虫の防除方法、
[10][7]に記載の動物用内部寄生虫防除剤有効量を対象動物に、経口又は非経口投与することを特徴とする動物の内部寄生虫の防除方法、
[11][1]乃至[3]の何れか一つに記載の化合物又はその塩類の有害生物防除剤としての使用、
に関する。
一般式(1)において、R1としては、上記の(a3)、(a9)、(a11)、(a12)、(a13)、(a14)、(a15)、(a16)、(a17)、(a18)、(a19)、(a20)、(a21)、(a22)、(a23)、(a24)、(a25)、(a26)、(a27)、(a28)、(a29)、(a30)、(a31)、(a32)、(a33)、(a34)、(a37)、(a38)、(a39)、(a40)、(a41)、(a43)、(a45)、(a46)、(a47)、(a48)、(a49)、(a50)、(a51)、(a52)、(a53)、(a54)、(a55)、(a56)、(a57)、(a58)、(a59)、(a64)、(a65)、(a66)、(a67)、(a68)、(a69)、(a70)、(a71)、(a72)、(a73)、(a74)、(a75)、(a76)、(a77)、(a78)、(a79)、(a80)、(a81)、(a82)、(a83)、(a84)、(a85)、(a86)、(a87)、(a88)、(a89)、(a90)、(a91)、(a92)、(a93)、(a94)、(a95)、(a96)、(a97)、(a98)、(a99)、(a100)、(a101)、(a102)、(a103)、(a104)、(a105)、(a106)、(a107)、(a108)、(a109)、(a110)、(a111)、(a112)、(a113)、(a114)、(a115)、(a116)、又は(a117)の基が好ましく、上記の(a3)、(a9)、(a11)、(a12)、(a13)、(a14)、(a16)、(a17)、(a18)、(a19)、(a21)、(a22)、(a24)、(a34)、(a37)、(a39)、(a40)、(a41)、(a43)、(a46)、(a47)、(a51)、(a56)、(a58)、(a59)、 (a64)、(a67)、 (a69)、(a71)、(a73)、(a75)、(a76)、(a78)、(a80)、(a81)、(a82)、(a83)、(a84)、(a85)、(a86)、(a87)、(a88)、(a89)、(a92)、(a93)、 (a96)、(a97)、(a98)、(a99)、(a100)、(a101)、(a102)、(a103)、(a108)、(a109)、(a110)、(a111)、(a112)、(a113)、(a114)、(a115)、(a116)、及び(a117)の基がより好ましい。
(g1)、(g2)、(g6)、(g9)、(g14)、(g19)、(g29)、(g73)、及び(g74)の基からなることがより好ましい。
上記の(h1)、(h2)、(h3)、(h7)、(h8)、(h9)、(h10)、(h12)、(h13)、(h14)、(h16)、(h17)、(h19)、(h22)、(h23)、(h25)、(h26)、(h27)、(h28)、(h29)、及び(h31)の基からなることがより好ましい。
一般式(2)で表される化合物を、塩基及び不活性溶媒存在下、一般式(4)で表される化合物と反応させることにより、本発明の一般式(1‐1)で表される化合物を製造することができる。
一般式(3)で表される化合物又はその塩を、不活性溶媒及び塩基の存在下、一般式(5)で表される化合物と反応させることにより、一般式(1‐2)で表される化合物を製造することができる。
一般式(3)で表される化合物又はその塩と、一般式(6)又は(7)で表される化合物とを、有機合成で一般に用いられるアミド化法により縮合させることにより、一般式(1‐3)で表される化合物を製造することができる。
本発明の一般式(1‐1)で表される化合物の出発原料である一般式(2)で表される化合物のうち、XがCH2である化合物(2‐1)は、下記製造方法、即ち一般式(8)で表される化合物から、下記工程[d]、[e]、[f]、及び[g]により製造することができる。
一般式(8)で表される化合物を、塩基及び不活性溶媒の存在又は非存在下、二炭酸ジターシャリーブチルと反応させることにより、一般式(9)で表される化合物を製造することができる。
トリエチルアミン、トリブチルアミン、N,N‐ジイソプロピルエチルアミン等の有機塩基等を挙げることができ、その使用量は、一般式(8)で表される化合物に対して通常1倍モル~10倍モルの範囲から適宜選択すればよいが、当該塩基を溶媒として使用することもできる。
一般式(9)で表される化合物を、塩基及び不活性溶媒存在下、一般式(10)で表される化合物と反応させることにより、一般式(11)で表される化合物を製造することができる。
一般式(11)で表される化合物を、酸及び不活性溶媒の存在又は非存在下、加水分解させることにより、一般式(12)で表される化合物を製造することができる。
一般式(14)で表される化合物を、塩基及び不活性溶媒存在下で環化反応を行うことにより、一般式(2‐1)で表される化合物を製造することができる。
本発明の一般式(1‐1)で表される化合物の出発原料である一般式(2)で表される化合物のうち、Xが酸素原子である化合物(2‐2)は、下記製造方法、即ち一般式(15)で表される化合物から、下記工程[h]及び[i]により製造することができる。
一般式(15)で表される化合物を、塩基及び不活性溶媒存在下、一般式(16)で表される化合物と反応させることにより、一般式(17)で表される化合物を製造することができる。
トリエチルアミン、トリブチルアミン、N,N‐ジイソプロピルエチルアミン等の有機塩基等を挙げることができ、その使用量は、一般式(15)で表される化合物に対して通常1倍モル~10倍モルの範囲から適宜選択すればよい。
一般式(17)で表される化合物を、不活性溶媒存在下で環化反応を行うことにより、一般式(2‐2)で表される化合物を製造することができる。
本発明の一般式(1‐2)で表される化合物の出発原料である一般式(3)で表される化合物のうち、R3が水素原子である化合物(3‐1)は、下記製造方法、即ち式(18)で表される化合物から、下記工程[a]及び[f]により製造することができる。なお、[a]及び[f]の反応条件は前記に同じである。
本発明の一般式(1‐2)で表される化合物の出発原料である一般式(3)で表される化合物のうち、Yが酸素原子である化合物(3‐2)は、下記製造方法、即ち式(18)で表される化合物から、下記工程[j]、[k]、[l]及び[f]により製造することができる。なお、[f]の反応条件は前記に同じである。
一般式(18)で表される化合物を、塩基及び不活性溶媒存在下、4級アンモニウム塩の存在又は非存在下、式(19)で表される化合物と反応させた後、一般式(20)で表される化合物と反応させることにより、一般式(21)で表される化合物を製造することができる。
トリエチルアミン、トリブチルアミン、N,N‐ジイソプロピルエチルアミン等の有機塩基等を挙げることができ、その使用量は、一般式(18)で表される化合物に対して通常1倍モル~10倍モルの範囲から適宜選択すればよい。
一般式(21)で表される化合物を、不活性溶媒の存在又は非存在下、一般式(22)で表される化合物と反応させることにより、一般式(23)で表される化合物を製造することができる。
一般式(23)で表される化合物を、不活性溶媒の存在下、塩基の存在又は非存在下、一般式(24)で表される化合物と反応させることにより、一般式(1-5)で表される化合物を製造することができる。
が、本発明は、これらに限定されるものではない。また、本発明の一般式(1)で表される化合物の出発原料である一般式(2)及び(3)で表される化合物の具体例を第5表及び第6表に例示する。下記の表において、「Me」はメチル基、「Et」はエチル基、「i‐Pr」はイソプロピル基、「c‐Pr」はシクロプロピル基、「t‐Bu」はターシャリーブチル基、「n‐Hex」はノルマルヘキシル基、「c‐Hex」はシクロヘキシル基、「Ph」はフェニル基、「Bn」はベンジル基、「Ac」はアセチル基を示す。物性は融点(℃)又はH1‐NMRを示す。H1‐NMRデータは、第7表に示す。
また、本発明の一般式(1)で表される化合物又はその塩類を有効成分として含有する農園芸用殺虫剤は、各種の省力的な施用方法に適した物性、浸透移行活性、適切な土壌残留性など環境安全性に優れる。
さらに、本発明の一般式(1)で表される化合物又はその塩類を有効成分として含有する農園芸用殺虫剤は、天敵・セイヨウミツバチ、マルハナバチなどの有用昆虫・ユスリカなどの環境生物への影響が少ない。
鱗翅目(チョウ目)害虫として例えば、アオイラガ(Parasa consocia)、アカキリバ(Anomis mesogona)、アゲハ(Papilio xuthus)、アズキサヤムシガ(Matsumuraeses azukivora)、アズキノメイガ(Ostrinia scapulalis)、アフリカヨトウ(Spodoptera exempta)、アメリカシロヒトリ(Hyphantria cunea)、アワノメイガ(Ostrinia furnacalis)、アワヨトウ(Pseudaletia separata)、イガ(Tinea translucens)、イグサシンムシガ(Bactra furfuryla)、イチモンジセセリ又はイネツトムシ(Parnara guttata)、イネタテハマキ(Marasmia exigua)、イネヨトウ(Sesamia inferens)、イモキバガ(Brachmia triannulella)、イラガ(Monema flavescens)、イラクサギンウワバ(Trichoplusia ni)、ウコンノメイガ(Pleuroptya ruralis)、ウメエダシャク(Cystidia couaggaria)、ウラナミシジミ(Lampides boeticus)、オオスカシバ(Cephonodes hylas)、オオタバコガ(Helicoverpa armigera)、オオトビモンシャチホコ(Phalerodonta manleyi)、オオミノガ(Eumeta japonica)、オオモンシロチョウ(Pieris brassicae)、オビカレハ(Malacosoma neustria testacea)、カキノヘタムシガ(Stathmopoda masinissa)、カキホソガ(Cuphodes diospyrosella)、カクモンハマキ(Archips xylosteanus)、カブラヤガ(Agrotis segetum)、カンショシンクイハマキ(Tetramoera schistaceana)、キアゲハ(Papilio machaon hippocrates)、キマダラコウモリ(Endoclyta sinensis)、ギンモンハモグリガ(Lyonetia prunifoliella)、キンモンホソガ(Phyllonorycter ringoneella)、クリミガ(Cydia kurokoi)、クリミドリシンクイガ(Eucoenogenes aestuosa)、グレープベリーモス(Lobesia botrana)、クロシタアオイラガ(Latoia sinica)、クロフタモンマダラメイガ(Euzophera batangensis)、クワイホソハマキ(Phalonidia mesotypa)、クワゴマダラヒトリ(Spilosoma imparilis)、クワノメイガ(Glyphodes pyloalis)、クワヒメハマキ(Olethreutes mori)、コイガ(Tineola bisselliella)、コウモリガ(Endoclyta excrescens)、コクガ(Nemapogon granellus)、コスカシバ(Synanthedon hector)、コドリンガ(Cydia pomonella)、コナガ(Plutella xylostella)、コブノメイガ(Cnaphalocrocis medinalis)、サザンピンクボーラー(Sesamia calamistis)、サンカメイガ(Scirpophaga incertulas)、シバツトガ(Pediasia teterrellus)、ジャガイモガ(Phthorimaea operculella)、シャチホコガ(Stauropus fagi persimilis)、シロイチモジマダラメイガ(Etiella zinckenella)、シロイチモジヨトウ(Spodoptera exigua)、シロテンコウモリ(Palpifer sexnotata)、シロナヨトウ(Spodoptera mauritia)、イネシロオオメイガ(Scirpophaga innotata)、シロモンヤガ(Xestia c-nigrum)、スジキリヨトウ(Spodoptera depravata)、スジコナマダラメイガ(Ephestia kuehniella)、スモモエダシャク(Angerona prunaria)、セグロシャチホコ(Clostera anastomosis)、ソイビーンルーパー(Pseudoplusia includens)、ダイズサヤムシガ(Matsumuraeses falcana)、タバコガ(Helicoverpa assulta)、タマナギンウワバ(Autographa nigrisigna)、タマナヤガ(Agrotis ipsilon)、チャドクガ(Euproctis pseudoconspersa)、チャノコカクモンハマキ(Adoxophyes orana)、チャノホソガ(Caloptilia theivora)、チャハマキ(Homona magnanima)、チャマダラメイガ(Ephestia elutella)、チャミノガ(Eumeta minuscula)、ツマアカシャチホコ(Clostera anachoreta)、ツメクサガ(Heliothis maritima)、テングハマキ(Sparganothis pilleriana)、トウモロコシメイガ(Busseola fusca)、ドクガ(Euproctis subflava)、トビモンオオエダシャク(Biston robustum)、トマトフルーツワーム(Heliothis zea)、ナカジロシタバ(Aedia leucomelas)、ナシイラガ(Narosoideus flavidorsalis)、ナシケンモン(Viminia rumicis)、ナシチビガ(Bucculatrix pyrivorella)、ナシヒメシンクイ(Grapholita molesta)、ナシホソガ(Spulerina astaurota)、ナシマダラメイガ(Ectomyelois pyrivorella)、ニカメイガ(Chilo suppressalis)、ネギコガ(Acrolepiopsis sapporensis)、ノシメマダラメイガ(Plodia interpunctella)、ハイマダラノメイガ(Hellula undalis)、バクガ(Sitotroga cerealella)、ハスモンヨトウ(Spodoptera litura)、ハマキガの一種(Eucosma aporema)、バラハマキ(Acleris comariana)、ヒメクロイラガ(Scopelodes contractus)、ヒメシロモンドクガ(Orgyia thyellina)、フォールアーミーワーム(Spodoptera frugiperda)、フキノメイガ(Ostrinia zaguliaevi)、フタオビコヤガ(Naranga aenescens)、フタテンカギバモドキ(Andraca bipunctata)、ブドウスカシバ(Paranthrene regalis)、ブドウスズメ(Acosmeryx castanea)、ブドウハモグリガ(Phyllocnistis toparcha)、ブドウヒメハマキ(Endopiza viteana)、ブドウホソハマキ(Eupoecillia ambiguella)、ベルベットビーンキャタピラー(Anticarsia gemmatalis)、ホソバハイイロハマキ(Cnephasia cinereipalpana)、マイマイガ(Lymantria dispar)、マツカレハ(Dendrolimus spectabilis)、マメシンクイガ(Leguminivora glycinivorella)、マメノメイガ(Maruca testulalis)、マメヒメサヤムシガ(Matsumuraeses phaseoli)、マメホソガ(Caloptilia soyella)、ミカンハモグリガ(Phyllocnistis citrella)、マエウスキノメイガ(Omiodes indicate)、ミダレカクモンハマキ(Archips fuscocupreanus)、ミツモンキンウワバ(Acanthoplusia agnata)、ミノガ(Bambalina sp.)、モモシンクイガ(Carposina niponensis)、モモノゴマダラノメイガ(Conogethes punctiferalis)、モモスカシバ類(Synanthedon sp.)、モモハモグリガ(Lyonetia clerkella)、モンキアゲハ(Papilio helenus)、モンキチョウ(Colias erate poliographus)、モンクロシャチホコ(Phalera flavescens)、モンシロチョウ(Pieris rapae crucivora)、モンシロチョウ(Pieris rapae)等のシロチョウ類、モンシロドクガ(Euproctis similis)、ヤマノイモコガ(Acrolepiopsis suzukiella)、ヨーロピアンコーンボーラー(Ostrinia nubilalis)、ヨトウガ(Mamestra brassicae)、ヨモギエダシャク(Ascotis selenaria)、ヨモギオオホソハマキ(Phtheochroides clandestina)、リンゴオオハマキ(Hoshinoa adumbratana)、リンゴカレハ(Odonestis pruni japonensis)、リンゴケンモン(Triaena intermedia)、リンゴコカクモンハマキ(Adoxophyes orana fasciata)、リンゴコシンクイ(Grapholita inopinata)、リンゴシロヒメハマキ(Spilonota ocellana)、リンゴハイイロハマキ(Spilonota lechriaspis)、リンゴハマキクロバ(Illiberis pruni)、リンゴヒメシンクイ(Argyresthia conjugella)、リンゴホソガ(Caloptilia zachrysa)、リンゴモンハマキ(Archips breviplicanus)、ワタアカキリバ(Anomis flava)、ワタアカミムシ(Pectinophora gossypiella)、ワタノメイガ(Notarcha derogata)、ワタヘリクロノメイガ(Diaphania indica)、ニセアメリカタバコガ(Heliothis virescens)、及びワタリンガ(Earias cupreoviridis)等が挙げられる。
またアセチルCoAカルボキシラーゼ阻害剤に耐性が付与された植物はプロシーディングズ・オブ・ザ・ナショナル・アカデミー・オブ・サイエンシーズ・オブ・ザ・ユナイテッド・ステーツ・オブ・アメリカ(Proc.Natl.Acad.Sci.USA)87巻、7175~7179頁(1990年)等に記載されている。またアセチルCoAカルボキシラーゼ阻害剤に耐性の変異アセチルCoAカルボキシラーゼがウィード・サイエンス(Weed Science)53巻、728~746頁(2005年)等に報告されており、こうした変異アセチルCoAカルボキシラーゼ遺伝子を遺伝子組換え技術により植物に導入するかもしくは抵抗性付与に関わる変異を植物アセチルCoAカルボキシラーゼに導入する事により、アセチルCoAカルボキシラーゼ阻害剤に耐性の植物を作出することができ、さらに、キメラプラスティ技術(Gura T. 1999. Repairing the Genome's Spelling Mistakes. Science 285: 316-318.)に代表される塩基置換変異導入核酸を植物細胞内に導入して植物のアセチルCoAカルボキシラーゼ遺伝子やALS遺伝子等に部位特異的アミノ酸置換変異を導入することにより、アセチルCoAカルボキシラーゼ阻害剤やALS阻害剤等に耐性の植物を作出することができ、これらの植物に対しても本発明の農園芸用害虫防除剤を使用することができる。
これら毒素の例及びこれら毒素を合成する事ができる組換え植物は、EP‐A‐0 374 753、WO 93/07278、WO 95/34656、EP‐A‐0 427 529、EP‐A‐451 878、WO 03/052073等に記載されている。
更に、本発明の農園芸用害虫防除剤は、そのまま、又は水等で適宜希釈し、若しくは懸濁させた形で害虫防除に有効な量を当該害虫の発生が予測される場所に使用すればよく、例えば貯穀害虫、家屋害虫、衛生害虫、森林害虫等に散布する他に、家屋建材への塗布、くん煙、ベイト等として使用することもできる。
当該種子処理を行う「種子」とは、植物の繁殖に用いられる栽培初期の植物体を意味し、例えば、種子の他、球根、塊茎、種芋、株芽、むかご、鱗茎、あるいは挿し木栽培用の栄養繁殖用の植物体を挙げることができる。
本発明の使用方法を実施する場合の植物の「土壌」又は「栽培担体」とは、作物を栽培するための支持体、特に根を生えさせる支持体を示すものであり、材質は特に制限されないが、植物が生育しうる材質であれば良く、いわゆる土壌、育苗マット、水等であっても良く、具体的な素材としては例えば、砂、軽石、バーミキュライト、珪藻土、寒天、ゲル状物質、高分子物質、ロックウール、グラスウール、木材チップ、バーク等であっても良い。
土壌への施用方法としては、例えば、液体製剤を水に希釈又は希釈せずして植物体の株元又は育苗用苗床等に施用する方法、粒剤を植物体の株元又は育苗のための苗床等に散布する方法、播種前又は移植前に粉剤、水和剤、顆粒水和剤、粒剤等を散布し土壌全体と混和する方法、播種前又は植物体を植える前に植え穴、作条等に粉剤、水和剤、顆粒水和剤、粒剤等を散布する方法等が挙げられる。
水田への施用方法としては、ジャンボ剤、パック剤、粒剤、顆粒水和剤等の固形製剤、フロアブル、乳剤等の液体状製剤を、通常は、湛水状態の水田に散布する。その他、田植え時には、適当な製剤をそのまま、あるいは、肥料に混和して土壌に散布、注入することもできる。また、水口や灌漑装置等の水田への水の流入元に乳剤、フロアブル等の薬液を利用することにより、水の供給に伴い省力的に施用することもできる。
移植を行う栽培植物の播種、育苗期の処理としては、種子への直接処理の他、育苗用苗床への、液状とした薬剤の潅注処理又は粒剤の散布処理が好ましい。また、定植時に粒剤を植え穴に処理をしたり、移植場所近辺の栽培担体に混和することも好ましい処理である。
本発明の農園芸用害虫防除剤は、農薬製剤上の常法に従い使用上都合の良い形状に製剤して使用するのが一般的である。
即ち、本発明の一般式(1)で表される化合物又はその塩類はこれらを適当な不活性担体に、又は必要に応じて補助剤と一緒に適当な割合に配合して溶解、分離、懸濁、混合、含浸、吸着若しくは付着させて適宜の剤型、例えば懸濁剤、乳剤、液剤、水和剤、顆粒水和剤、粒剤、粉剤、錠剤、パック剤等に製剤して使用すれば良い。
更に必要に応じて機能性展着剤、ピペロニルブトキサイド等の代謝分解阻害剤等の活性増強剤、プロピレングリコール等の凍結防止剤、BHT等の酸化防止剤、紫外線吸収剤等その他の補助剤も使用することができる。
本発明の農園芸用害虫防除剤は、防除対象病害虫、防除適期の拡大のため、或いは薬量の低減をはかる目的で他の農園芸用殺虫剤、殺ダニ剤、殺線虫剤、殺菌剤、生物農薬等と混合して使用することも可能であり、また、使用場面に応じて除草剤、植物成長調節剤、肥料等と混合して使用することも可能である。
ジアゾン(metoxadiazone)、メトキシクロル(methoxychlor)、メトキシフェノジド(methoxyfenozide)、メトフルトリン(metofluthrin)、メトプレン(methoprene)、メトルカルブ(metolcarb)、メペルフルスリン(meperfluthrin)、メビンホス(mevinphos)、モノクロトホス(monocrotophos)、モノスルタップ(monosultap)、モムフルオロスリン(momfluorothrin)、ラムダ-シハロトリン(lambda-cyhalothrin)、リアノジン(ryanodine)、ルフェヌロン(lufenuron)、レスカルール(rescalure)、レスメトリン(resmethrin)、レピメクチン(lepimectin)、ロテノン(rotenone)、塩酸レバミゾール(levamisol hydrochloride)、酸化フェンブタスズ(fenbutatin oxide)、酒石酸モランテル(morantel tartarate)、臭化メチル(methyl bromide)、水酸化トリシクロヘキシルスズ(cyhexatin)、石灰窒素(calcium cyanamide)、石灰硫黄合剤(calcium polysulfide)、硫黄(sulfur)、及び硫酸ニコチン(nicotine-sulfate)等を例示することができる。
enzovindiflupyr)、ベンタルロン(bentaluron)、ベンチアゾール(benthiazole)、ベンチアバリカルブ(benthiavalicarb)、ベンチアバリカルブ-イソプロピル(benthiavalicarb-isopropyl)、ペンチオピラド(penthiopyrad)、ペンフルフェン(penflufen)、ボスカリド(boscalid)、ホスジフェン(phosdiphen)、ホセチル(fosetyl)、ホセチル-アルミニウム(fosetyl-Al)、ポリオキシン(polyoxins)、ポリオキソリン(polyoxorim)、ポリカーバメート(polycarbamate)、ホルペット(folpet)、ホルムアルデヒド(formaldehyde)、マシン油(machine oil)、マネブ(maneb)、マンコゼブ(mancozeb)、マンジプロパミド(mandipropamid)、マンデストロビン(mandestrobin)、ミクロゾリン(myclozolin)、ミクロブタニル(myclobutanil)、ミルディオマイシン(mildiomycin)、ミルネブ(milneb)、メカルビンジド(mecarbinzid)、メタスルホカルブ(methasulfocarb)、メタゾキソロン(metazoxolon)、メタム(metam)、メタムナトリウム塩(metam-sodium)、メタラキシル(metalaxyl)、メタラキシル-M(metalaxyl-M)、メタリルピコキサミド(metarylpicoxamid)、メチラム(metiram)、メチルイソチオシアナート(methyl isothiocyanate)、メチルジノカップ(mepthyldinocap)、メチルテトラプロール(Metyltetraprole)、メトコナゾール(metconazole)、メトスルホバックス(metsulfovax)、メトフロキサム(methfuroxam)、メトミノストロビン(metominostrobin)、メトラフェノン(metrafenone)、メパニピリム(mepanipyrim)、メフェノキサム(mefenoxam)、メフェントリフルコナゾール(mefentrifluconazole)、メプチルジノカップ(meptyldinocap)、メプロニル(mepronil)、メベニル(mebenil)、ヨウ化メチル(iodomethane)、ラベンザゾール(rabenzazole)、臭化メチル(methyl bromide)、塩化ベンザルコニウム(benzalkonium chloride)、塩基性塩化銅(basic copper chloride)、塩基性硫酸銅(basic copper sulfate)、金属銀(silver)などの無機殺菌剤、次亜塩素酸ナトリウム(sodium hypochlorote)、水酸化第二銅(cupric hydroxide)、水和硫黄剤(wettable sulfur)、石灰硫黄合剤(calcium polysulfide)、炭酸水素カリウム(potassium hydrogen carbonate)、炭酸水素ナトリウム(sodium hydrogen carbonate)、無機硫黄(sulfur)、無水硫酸銅(copper sulfate anhydride)、ジメチルジチオカルバミド酸ニッケル(nickel dimethyldithiocarbamate)、8-ヒドロキシキノリン銅(oxine copper)のような銅系化合物、硫酸亜鉛(zinc sulfate)、硫酸銅五水塩(copper sulfate pentahydrate)等を例示することができる。
ート(pyrazolate)、ビラナホス(bilanafos)、ピラフルフェン(pyraflufen)、ピラフルフェン-エチル(pyraflufen-ethyl)、ピリクロール(pyriclor)、ピリダホール(pyridafol)、ピリチオバック(pyrithiobac)、ピリチオバック-ナトリウム(pyrithiobac-sodium)、ピリデート(pyridate)、ピリフタリド(pyriftalid)、ピリブチカルブ(pyributicarb)、ピリフルベンゾキシム(pyriflubenzoxim)、ピリベンゾキシム(pyribenzoxim)、ピリミスルファン(pyrimisulfan)、ピリミスルフロン(primisulfuron)、ピリミノバックメチル(pyriminobac-methyl)、ピロキサスルホン(pyroxasulfone)、ピロクスラム(pyroxsulam)、フェナスラム(fenasulam)、フェニソファム(phenisopham)、フェヌロン(fenuron)、フェノキサスルホン(fenoxasulfone)、フェノキサプロップ(fenoxaprop)、フェノキサプロップ-P(fenoxaprop-P)、フェノキサプロップ-エチル(fenoxaprop-ethyl)、フェノチオール(phenothio1)、フェノプロップ(fenoprop)、フェノベンズロン(phenobenzuron)、フェンキノトリオン(fenquinotrione)、フェンチアプロップ(fenthiaprop)、フェンテラコール(fenteracol)、フェントラザミド(fentrazamide)、フェンピラゾン(fenpyrazone)、フェンメディファム(phenmedipham)、フェンメディファム-エチル(phenmedipham-ethyl)、ブタクロール(butachlor)、ブタフェナシル(butafenacil)、ブタミホス(butamifos)、ブチウロン(buthiuron)、ブチダゾール(buthidazole)、ブチレート(butylate)、ブツロン(buturon)、ブテナクロール(butenachlor)、ブトキシジム(butroxydim)、ブトラリン(butralin)、ブトロキシジム(butroxydim)、フラザスルフロン(flazasulfuron)、フラムプロップ(flamprop)、フリロオキシフェン(furyloxyfen)、プリナクロール(prynachlor)、プリミスルフロンメチル(primisulfuron-methyl)、フルアジホップ(fluazifop)、フルアジホップ-P(fluazifop-P)、フルアジホップ-ブチル(fluazifop-butyl)、フルアゾレート(fluazolate)、フルロキシピル(fluroxypyr)、フルオチウロン(fluothiuron)、フルオメツロン(fluometuron)、フルオログリコフェン(fluoroglycofen)、フルロクロリドン(flurochloridone)、フルオロジフェン(fluorodifen)、フルオロニトロフェン(fluoronitrofen)、フルオロミジン(fluoromidine)、フルカルバゾン(flucarbazone)、フルカルバゾン-ナトリウム(flucarbazone-sodium)、フルクロラミノピル(fluchloraminopyr)、フルクロラミノピル-テフリル(fluchloraminopyr-tefuryl)、フルクロラリン(fluchloralin)、フルセトスルフロン(flucetosulfuron)、フルチアセット(fluthiacet)、フルチアセット-メチル(fluthiacet-methyl)、フルスルフィナム(flusulfinam)、フルピルスルフロン(flupyrsulfuron)、フルフェナセット(flufenacet)、フルフェニカン(flufenican)、フルフェノキシマシル(flufenoximacil)、フルフェンピル(flufenpyr)、フルプロパシル(flupropacil)、フルプロパナート(flupropanate)、フルポキサム(flupoxam)、フルミオキサジン(flumioxazin)、フルミクロラック(flumiclorac)、フルミクロラック-ペンチル(flumiclorac-pentyl)、フルミプロピン(flumipropyn)、フルメジン(flumezin)、フルオメツロン(fluometuron)、フルメトスラム(flumetsulam)、フルリドン(fluridone)、フルルタモン(flurtamone)、フルロキシピル(fluroxypyr)、プレチラクロール(pretilachlor)、プロキサン(proxan)、プログリナジン(proglinazine)、ブロクロゾン(broclozone)、プロシアジン(procyazine)、プロジアミン(prodiamine)、プロスルファリン(prosulfalin)、プロスルフロン(prosulfuron)、プロスルホカルブ(prosulfocarb)、プロパキザホップ(propaquizafop)、プロパクロール(propachlor)、プロパジン(propazine)、プロパニル(propanil)、プロピザミド(propyzamide)、プロピソクロール(propisochlor)、プロヒドロジャスモン(prohydrojasmon)、プロピリスルフロン(propyrisulfuron)、プロファム(propham)、プロフルアゾール(profluazol)、プロフルラリン(profluralin)、プロヘキサジオン-カルシウム(prohexadione-calcium)、プロポキシカルバゾン(propoxycarbazone)、プロポキシカルバゾン-ナトリウム(propoxycarbazone-sodium)、プロホキシジム(profoxydim)、ブロマシル(bromacil)、ブロムピラゾン(brompyrazon)、プロメトリン(prometryn)、プロメトン(prometon)、ブロモキシニル(bromoxynil)、ブロモフェノキシム(bromofenoxim)、ブロモブチド(bromobutide)、ブロモボニル(bromobonil)、フロラスラム(florasulam)、フロルピラウキシフェン(florpyrauxifen)、ヘキサクロロアセトン(hexachloroacetone)、ヘキサジノン(hexazinone)、ペトキサミド(pethoxamid)、ベナゾリン(benazolin)、ペノクスラム(penoxsulam)、ペブレート(pebulate)、ベフルブタミド(beflubutamid)、ベフルブタミド-M(beflubutamid-M)、ベルノレート(vernolate)、ペルフルイドン(perfluidone)、ベンカルバゾン(bencarbazone)、ベンクワイトリオン(benquitrione)、ベンザドックス(benzadox)、ベンジプラム(benzipram)、ベンジルアミノプリン(benzylaminopurine)、ベンズチアズロン(benzthiazuron)、ベンズフェンジゾン(benzfendizone)、ベンスリド(bensulide)、ベンスルフロンメチル(bensulfuron-methyl)、ベンゾイルプロップ(benzoylprop)、ベンゾビシクロン(benzobicyclon)、ベンゾフェナップ(benzofenap)、ベンゾフルオール(benzofluor)、ベンタゾン(bentazone)、ペンタノクロール(pentanochlor)、ベンチオカーブ(benthiocarb)、ペンディメタリン(pendimethalin)、ペントキサゾン(pentoxazone)、ベンフラリン(benfluralin)、ベンフレセート(benfuresate)、ホサミン(fosamine)、ホメサフェン(fomesafen)、ホラムスルフロン(foramsulfuron)、ホルクロルフェニュロン(forchlorfenuron)、マレイン酸ヒドラジド(maleic hydrazide)、メコプロップ(mecoprop)、メコプロップ-P(mecoprop-P)、メジノテルブ(medinoterb)、メソスルフロン(mesosulfuron)、メソスルフロン-メチル(mesosulfuron-methyl)、メソトリオン(mesotrione)、メソプラジン(mesoprazine)、メソプロトリン(methoprotryne)、メタザクロール(metazachlor)、メタゾール(methazole)、メタゾスルフロン(metazosulfuron)、メタベンズチアズロン(methabenzthiazuron)、メタミトロン(metamitron)、メタミホップ(metamifop)、メタム(metam)、メタルプロパリン(methalpropalin)、メチウロン(methiuron)、メチオゾリン(methiozolin)、メチオベンカルブ(methiobencarb)、メチルダイムロン(methyldymron)、メトクスロン(metoxuron)、メトスラム(metosulam)、メトスルフロン(metsulfuron)、メトスルフロン-メチル(metsu1furon-methy1)、メトフルラゾン(metflurazon)、メトブロムロン(metobromuron)、メトベンズロン(metobenzuron)、メトメトン(methometon)、メトラクロール(metolachlor)、メトリブジン(metribuzin)、メピコートクロリド(mepiquat-chloride)、メフェナセット(mefenacet)、メフルイジド(mefluidide)、モナリド(monalide)、モニソウロン(monisouron)、モニュヌロン(monuron)、モノクロル酢酸(monochloroacetic acid)、モノリニュヌロン(monolinuron)、モリネート(molinate)、モルファムコート(morfamquat)、ヨードスルフロン(iodosulfuron)、ヨードスルフロンメチルナトリウム(iodosulfuron-methyl-sodium)、ヨードボニル(iodobonil)、ヨードメタン(iodomethane)、ラクトフェン(lactofen)、ランコトリオン(lancotrione)、リヌロン(linuron)、リミソキサフェン(rimisoxafen)、リムスルフロン(rimsulfuron)、レナシル(lenacil)、ローデタニル(rhodethanil)、過酸化カルシウム(calcium peroxide)、臭化メチル(methyl bromide)等を例示することができる。
収率:45%
物性:融点135-136℃
収率:86%
物性:融点101-103℃
収率:58%
物性:融点159-160℃
収率:43%
物性:融点186-188℃
ターシャリーブチル 3-ヒドロキシ-4-((4-(メチルスルホンアミド)フェニル)カルバモイル)-5-オキソ-5,6-ジヒドロピリジン-1(2H)-カルボキシレート(化合物番号1‐208)の製造
収率:45%
物性:融点221-222℃
1-(ベンゾ[d][1,3]ジオキソール-5-カルボニル)-5-ヒドロキシ-N-(4-(メチルスルホンアミド)フェニル)-3-オキソ-1,2,3,6-テトラヒドロピリジン-4-カルボキサミド(化合物番号1‐217)の製造
収率:63%
物性:融点203-207℃
1‐(1‐メチル‐5‐(トリフルオロメチル)‐1H‐ピラゾール‐3‐イル)ピペリジン‐3,5‐ジオン(化合物番号5‐1)の製造
参考実施例1‐1
ターシャリーブチル (1‐メチル‐5‐(トリフルオロメチル)‐1H‐ピラゾール‐3‐イル)カルバメートの製造
収率:54%(2工程)
物性:1H‐NMR(CDCl3):δ 7.04-6.61(m,1H),4.54(s,2H),4.21(q,2H),3.84-3.83(m,3H),1.54-1.47(m,9H),1.32-1.24(m,3H)
収率:91%
物性:1H‐NMR(CDCl3):δ 5.91(s,1H),4.22(q,2H),3.94(s,2H),3.78(s,3H),1.26(t,3H)
収率:64%
物性:1H‐NMR(CDCl3):δ 5.80(s,1H),4.19(q,2H),4.13(s,2H),4.05(s,2H),3.75(s,3H),2.19(s,3H),1.27(t,3H)
収率:11%
物性:融点155-157℃
4‐(4,6‐ジオキソ‐1,2‐オキサジナン‐2‐イル)ベンゾニトリル(化合物番号5‐2)の製造
参考実施例2‐1
4‐(((2,2‐ジメチル‐4‐オキソ‐4H‐1,3‐ジオキシン‐6‐イル)メチル)(ヒドロキシ)アミノ)ベンゾニトリルの製造
収率:2%
物性:1H‐NMR(CDCl3):δ 7.60-7.56(m,2H),7.49(s,1H),7.01-6.95(m,2H),5.55(s,1H),4.47(d,2H),1.70(s,6H)
収率:quant.
物性:1H‐NMR(CDCl3):δ 7.91-7.87(m,2H),7.73-7.68(m,2H),4.58(s,2H),3.83(s,2H)
収率:99%
物性:融点244-245℃
1-ターシャリーブチル 4-エチル 3-ヒドロキシ-5-オキソ-5,6-ジヒドロピリジン-1,4(2H)-ジカルボキシレートの製造
参考実施例4-1
ターシャリーブチル 4-(ビス(メチルチオ)メチレン)-3,5-ジオキソピぺリジン-1-カルボキシレートの製造
収率:77%
物性:融点95-97℃
収率:97%
物性:1H-NMR(CDCl3,400MHz):δ 14.5-16.1(m,1H),4.40(q,2H)3.9-4.1(m,4H),1.47(s,9H),1.40(t,3H)
本発明化合物 10部
キシレン 70部
N‐メチルピロリドン 10部
ポリオキシエチレンノニルフェニルエーテルと
アルキルベンゼンスルホン酸カルシウムとの混合物 10部
以上を均一に混合溶解して乳剤とする。
本発明化合物 3部
クレー粉末 82部
珪藻土粉末 15部
以上を均一に混合粉砕して粉剤とする。
本発明化合物 5部
ベントナイトとクレーの混合粉末 90部
リグニンスルホン酸カルシウム 5部
以上を均一に混合し、適量の水を加えて混練し、造粒、乾燥して粒剤とする。
本発明化合物 20部
カオリンと合成高分散珪酸 75部
ポリオキシエチレンノニルフェニルエーテルと
アルキルベンゼンスルホン酸カルシウムとの混合物 5部
以上を均一に混合粉砕して水和剤とする。
ハクサイ実生にコナガの成虫を放飼して産卵させ、放飼2日後に産下卵の付いたハクサイ実生を本発明の一般式(1)で表される化合物を有効成分とする薬剤を500ppmに希釈した薬液に約30秒間浸漬し、風乾後に25℃の恒温室に静置した。薬液浸漬6日後に生存虫数を調査し、下記の式により補正死虫率を算出し、下記の判定基準に従って判定を行った。1区10頭3連制。
B・・・死虫率99%~90%
C・・・死虫率89%~80%
D・・・死虫率79%~50%
E・・・死虫率49%~0%
本発明の一般式(1)で表される化合物又はその塩類を水に分散させて500ppmの薬液に希釈し、該薬液にイネ実生(品種:日本晴)を30秒間浸漬し、風乾した後にガラス試験管に入れ、ヒメトビウンカ3令を各10頭ずつ接種した後に綿栓をし、接種8日後に生死虫数を調査し、補正死虫率を下記の式より算出し、試験例1の判定基準に従って判定を行った。
インゲン葉片にミカンキイロアザミウマ雌成虫を接種し、1日産卵させた後、雌成虫を除去した。さらに3日後、葉片上の孵化幼虫を計数した後、第1表~第3表に記載の化合物を有効成分とする薬剤を500ppmに希釈した薬液を散布した。処理4日後に生存している本種幼虫数を調査し、下記の式により補正死虫率を算出し、試験例1の判定基準に従って判定を行った。2連制。
所定の調整液に希釈した犬糸状虫のL-1ステージ幼虫500頭を96穴プレート1穴毎に接種し、本発明の化合物のDMSO希釈溶液を加えて最終濃度を50ppmとした。その後3日間静置し、その運動能力を調査した。DMSO溶液のみによる阻害力を基準に各処理区の運動阻害率を補正、算出した。
24穴プレート1穴毎に所定の調整液、犬糸状虫のL‐3ステージ幼虫8-20頭及び本発明の化合物のDMSO希釈溶液を加えて最終濃度を10μMとした。その7日後にL‐4ステージに発育した幼虫を計数し、L3ステージ幼虫からL4‐ステージ幼虫への発育阻害率を算出した。
Claims (11)
- 一般式(1)
R1は、
(a1) (C1-C6)アルキル基;(a2) (C2-C6)アルケニル基;(a3) (C2-C6)アルキニル基;(a4) (C3-C6)シクロアルキル基;(a5) ハロ(C1-C6)アルキル基;(a6) ハロ(C2-C6)アルケニル基;(a7) ハロ(C2-C6)アルキニル基;(a8) ハロ(C3-C6)シクロアルキル基;(a9) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(a10) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C3-C6)シクロアルキル基;(a11) フェニル(C1-C6)アルキル基(但しフェニルメチル基を除く);(a12) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(a13) ピリジル(C1-C6)アルキル基;(a14) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル(C1-C6)アルキル基;(a15) (C1-C6)アルキルカルボニル基;(a16) ハロ(C1-C6)アルキルカルボニル基;(a17) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルカルボニル基;(a18) フェニルカルボニル基;(a19) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(a20) ピリジルカルボニル基;(a21) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジルカルボニル基;(a22) フラニルカルボニル基;(a23) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニルカルボニル基;(a24) チエニルカルボニル基;(a25) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニルカルボニル基;(a26) ピラゾリルカルボニル基;(a27) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルカルボニル基;(a28) トリアゾリルカルボニル基;(a29) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアゾリルカルボニル基;(a30) ジオキソジヒドロベンゾフラニルカルボニル基;(a31) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ジオキソジヒドロベンゾフラニルカルボニル基;(a32) ジヒドロベンゾジオキシニルカルボニル基;(a33) 置換基群Cからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ジヒドロベンゾジオキシニルカルボニル基;(a34) (C1-C6)アルコキシカルボニル基;(a35) ハロ(C1-C6)アルコキシカルボニル基;(a36) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルコキシカルボニル基;(a37) フェニル(C1-C6)アルコキシカルボニル基;(a38) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルコキシカルボニル基;(a39) (C1-C6)アルキルスルホニル基;(a40) (C3-C6)シクロアルキルスルホニル基;(a41) ハロ(C1-C6)アルキルスルホニル基;(a42) ハロ(C3-C6)シクロアルキルスルホニル基;(a43) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルスルホニル基;(a44) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C3-C6)シクロアルキルスルホニル基;(a45) ハロ(C1-C6)アルコキシハロ(C1-C6)アルキルスルホニル基;(a46) フェニルスルホニル基;(a47) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニルスルホニル基;(a48) チエニルスルホニル基;(a49) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニルスルホニル基;(a50) ピラゾリルスルホニル基;(a51) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルスルホニル基;(a52) チアゾリルスルホニル基;(a53) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリルスルホニル基;(a54) イソキサゾリルスルホニル基;(a55) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルスルホニル基;(a56) キノリニルスルホニル基;(a57) 置換基群Cからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニルスルホニル基;(a58) フェニル(C1-C6)アルキルスルホニル基;(a59) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルキルスルホニル基;(a60) アリール基;(a61) 置換基群Dからそれぞれ独立に選択される1個以上の置換基を環上に有する置換アリール基;(a62) 5乃至10員環複素環基;(a63) 置換基群Dからそれぞれ独立に選択される1個以上の置換基を環上に有する置換5乃至10員環複素環基;(a64) (C3-C6)シクロアルキルカルボニル基;(a65) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C3-C6)シクロアルキルカルボニル基;(a66) イソキサゾリルカルボニル基;(a67) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルカルボニル基;(a68) フェニルアミノカルボニル基;(a69) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルアミノカルボニル基;(a70) ピリミジニルカルボニル基;(a71) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニルカルボニル基;(a72) ピラジニルカルボニル基;(a73) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニルカルボニル基;(a74) ピリダジニルカルボニル基;(a75) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニルカルボニル基;(a76) ナフチルカルボニル基;(a77) 置換基群Cからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ナフチルカルボニル基;(a78) キノリニルカルボニル基;又は(a79) 置換基群Cからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニルカルボニル基を示す。
R2は、
(b1) アミノ基;(b2) (C1-C6)アルキル基;(b3) (C2-C6)アルケニル基;(b4) (C2-C6)アルキニル基;(b5) (C3-C6)シクロアルキル基;(b6) ハロ(C1-C6)アルキル基;(b7) ハロ(C2-C6)アルケニル基;(b8) ハロ(C2-C6)アルキニル基;(b9) ハロ(C3-C6)シクロアルキル基;(b10) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(b11) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換(C3-C6)シクロアルキル基;(b12) N‐(C1-C6)アルキルアミノ基;(b13) N,N‐ジ(C1-C6)アルキルアミノ基;(b14) N‐(C1-C6)アルキル‐N‐フェニルアミノ基;(b15) (C1-C6)アルキルスルホニル基;(b16) N‐(C1-C6)アルキルアミノスルホニル基;(b17) N,N‐ジ(C1-C6)アルキルアミノスルホニル基;(b18) ピペリジニル基;(b19) モルホリニル基;(b20) フェニル基;(b21) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(b22) ピリジル基;(b23) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(b24) ピリダジニル基;(b25) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(b26) ピリミジニル基;(b27) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(b28) ピラジニル基;(b29) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(b30) トリアジニル基;(b31) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアジニル基;(b32) フラニル基;(b33) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル基;(b34) オキサゾリル基;(b35) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(b36) イソキサゾリル基;(b37) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリル基;(b38) チエニル基;(b39) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基;(b40) チアゾリル基;(b41) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(b42) イソチアゾリル基;(b43) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソチアゾリル基;(b44) チアジアゾリル基;(b45) 置換基群Eからそれぞれ独立に選択される1個の置換基を環上に有する置換チアジアゾリル基;(b46) ピラゾリル基;(b47) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(b48) トリアゾリル基;(b49) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアゾリル基;(b50) テトラゾリル基;(b51) 置換基群Eからそれぞれ独立に選択される1個の置換基を環上に有する置換テトラゾリル基;(b52) ベンゾオキサゾリル基;(b53) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾオキサゾリル基;(b54) ベンゾチアゾリル基;(b55) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾチアゾリル基;(b56) キノリニル基;(b57) 置換基群Eからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニル基;(b58) ナフチル基;(b59) 置換基群Eからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ナフチル基;(b60) テトラヒドロナフチル基;(b61) 置換基群Eからそれぞれ独立に選択される1乃至10個の置換基を環上に有する置換テトラヒドロナフチル基;(b62) フェニル(C1-C6)アルキル基;(b63) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(b64) ピリジル(C1-C6)アルキル基;(b65) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル(C1-C6)アルキル基;(b66) ピラジニル(C1-C6)アルキル基;(b67) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル(C1-C6)アルキル基;(b68) ピリミジニル(C1-C6)アルキル基;(b69) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル(C1-C6)アルキル基;(b70) フラニル(C1-C6)アルキル基;(b71) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル(C1-C6)アルキル基;(b72) チエニル(C1-C6)アルキル基;(b73) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル(C1-C6)アルキル基;(b74) テトラヒドロフラニル(C1-C6)アルキル基;(b75) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換テトラヒドロフラニル(C1-C6)アルキル基;(b76) ベンゾイミダゾリル基;又は(b77) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換ベンゾイミダゾリル基を示す。
R3は、
(c1) 水素原子;(c2) (C1-C6)アルキル基;(c3) (C3-C6)シクロアルキル基;(c4) (C1-C6)アルコキシ基;又は(c5) (C1-C6)アルキルカルボニル基を示す。
R2及びR3は、お互いに結合して環を形成してもよい。
Xは、CH2又は酸素原子を示す。
Yは、酸素原子又は硫黄原子を示す。
置換基群Aは、
(d1) シアノ基;(d2) (C1-C6)アルキル基;(d3) (C2-C6)アルケニル基;(d4) (C2-C6)アルキニル基;(d5) (C3-C6)シクロアルキル基;(d6) (C1-C6)アルコキシ基;(d7) (C1-C6)アルキルスルファニル基;(d8) (C1-C6)アルキルスルフィニル基;(d9) (C1-C6)アルキルスルホニル基;(d10) ハロ(C1-C6)アルキル基;(d11) ハロ(C3-C6)シクロアルキル基;(d12) ハロ(C1-C6)アルコキシ基;(d13) ハロ(C1-C6)アルキルスルファニル基;(d14) ハロ(C1-C6)アルキルスルフィニル基;(d15) ハロ(C1-C6)アルキルスルホニル基;(d16) フェニルスルファニル基;(d17) アミノカルボニル基;(d18) モルホリニル基;(d19) フェニルカルボニル基;(d20) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(d21) ピラゾリル基;(d22) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(d23) チエニル基;及び(d24) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基からなる。
置換基群Bは、
(e1) シアノ基;(e2) (C1-C6)アルキル基;(e3) (C2-C6)アルケニル基;(e4) (C2-C6)アルキニル基;(e5) (C3-C6)シクロアルキル基;(e6) (C1-C6)アルコキシ基;(e7) (C1-C6)アルキルスルファニル基;(e8) (C1-C6)アルキルスルフィニル基;(e9) (C1-C6)アルキルスルホニル基;(e10) ハロ(C1-C6)アルキル基;(e11) ハロ(C3-C6)シクロアルキル基;(e12) ハロ(C1-C6)アルコキシ基;(e13) ハロ(C1-C6)アルキルスルファニル基;(e14) ハロ(C1-C6)アルキルスルフィニル基;(e15) ハロ(C1-C6)アルキルスルホニル基;(e16) アミノカルボニル基;及び(e17) フェニル基からなる。
置換基群Cは、
(f1) ハロゲン原子;(f2) シアノ基;(f3) ニトロ基;(f4) ヒドロキシル基;(f5) カルボキシル基;(f6) (C1-C6)アルキル基;(f7) (C2-C6)アルケニル基;(f8) (C2-C6)アルキニル基;(f9) (C1-C6)アルコキシ基;(f10) (C3-C6)シクロアルキル基;(f11) (C1-C6)アルキルスルファニル基;(f12) (C1-C6)アルキルスルフィニル基;(f13) (C1-C6)アルキルスルホニル基;(f14) ハロ(C1-C6)アルキル基;(f15) ハロ(C2-C6)アルケニル基;(f16) ハロ(C2-C6)アルキニル基;(f17) ハロ(C1-C6)アルコキシ基;(f18) ハロ(C3-C6)シクロアルキル基;(f19) ハロ(C1-C6)アルキルスルファニル基;(f20) ハロ(C1-C6)アルキルスルフィニル基;(f21) ハロ(C1-C6)アルキルスルホニル基;(f22) (C1-C6)アルキルカルボニル基;(f23) (C1-C6)アルコキシカルボニル基;(f24) フェニル基;(f25) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(f26) フェノキシ基;(f27) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;(f28) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子、フェニル基及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(f29) (C1-C6)アルキルカルボニルアミノ基;(f30) ハロ(C1-C6)アルキルカルボニルアミノ基;及び(f31) (C1-C6)アルキルスルファニル(C1-C6)アルキルアミノカルボニル基からなる。
置換基群Dは、
(g1) ハロゲン原子;(g2) シアノ基;(g3) ニトロ基;(g4) ヒドロキシル基;(g5) カルボキシル基;(g6) (C1-C6)アルキル基;(g7) (C2-C6)アルケニル基;(g8) (C2-C6)アルキニル基;(g9) (C1-C6)アルコキシ基;(g10) (C3-C6)シクロアルキル基;(g11) (C1-C6)アルキルスルファニル基;(g12) (C1-C6)アルキルスルフィニル基;(g13) (C1-C6)アルキルスルホニル基;(g14) ハロ(C1-C6)アルキル基;(g15) ハロ(C2-C6)アルケニル基;(g16) ハロ(C2-C6)アルキニル基;(g17) ハロ(C1-C6)アルコキシ基;(g18) ハロ(C3-C6)シクロアルキル基;(g19) ハロ(C1-C6)アルキルスルファニル基;(g20) ハロ(C1-C6)アルキルスルフィニル基;(g21) ハロ(C1-C6)アルキルスルホニル基;(g22) シアノ基、(C1-C6)アルキル基、ハロ(C1-C6)アルキル基、(C1-C6)アルコキシ基及び(C1-C6)アルキルカルボニル基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換(C3-C6)シクロアルキル基;(g23) (C1-C6)アルコキシ(C1-C6)アルキル基;(g24) (C1-C6)アルコキシ(C1-C6)アルコキシ基;(g25) (C1-C6)アルキルカルボニルアミノ基;(g26) ハロ(C1-C6)アルキルカルボニルアミノ基;(g27) (C1-C6)アルキルスルホニルアミノ基;(g28) ハロ(C1-C6)アルキルスルホニルアミノ基;(g29) (C1-C6)アルコキシカルボニル基;(g30) N‐(C1-C6)アルキルアミノカルボニル基;(g31) N,N‐ジ(C1-C6)アルキルアミノカルボニル基;(g32) N‐ハロ(C1-C6)アルキルアミノカルボニル基;(g33) N‐(C1-C6)アルキルアミノスルホニル基;(g34) N,N‐ジ(C1-C6)アルキルアミノスルホニル基;(g35) フラニル基;(g36) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル基;(g37) オキサゾリル基;(g38) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(g39) イソオキサゾリル基;(g40) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソオキサゾリル基;(g41) オキサジアゾリル基;(g42) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1個の置換基を環上に有する置換オキサジアゾリル基;(g43) チエニル基;(g44) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基;(g45) チアゾリル基;(g46) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(g47) イソチアゾリル基;(g48) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソチアゾリル基;(g49) チアジアゾリル基;(g50) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1個の置換基を環上に有する置換チアジアゾリル基;(g51) ピロリル基;(g52) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピロリル基;(g53) ピラゾリル基;(g54) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換ピラゾリル基;(g55) イミダゾリル基;(g56) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イミダゾリル基;(g57) トリアゾリル基;(g58) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1個の置換基を環上に有する置換トリアゾリル基;(g59) テトラゾリル基;(g60) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1個の置換基を環上に有する置換テトラゾリル基;(g61) オキサゾリニル基;(g62) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換オキサゾリニル基;(g63) チアゾリニル基;(g64) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換チアゾリニル基;(g65) イソオキサゾリニル基;(g66) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換イソオキサゾリニル基;(g67) イソチアゾリニル基;(g68) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換イソチアゾリニル基;(g69) ピロリジニル基;(g70) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピロリジニル基;(g71) イミダゾリニル基;(g72) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換イミダゾリニル基;(g73) フェニル基;(g74) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(g75) ピリジル基;(g76) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(g77) ピリダジニル基;(g78) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(g79) ピリミジニル基;(g80) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(g81) ピラジニル基;(g82) ハロゲ
ン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(g83) トリアジニル基;(g84) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアジニル基;(g85) ジヒドロフラニル基;(g86) ジヒドロピラニル基;(g87) フェニルオキシ基;(g88) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルオキシ基;(g89) フェニル(C1-C6)アルコキシ基;(g90) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルコキシ基;(g91) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子、フェニル基及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;及び(g92) R4-(R5-N=)O=S基(式中、R4は、(C1-C6)アルキル基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基、又は(C1-C6)アルコキシ(C1-C6)アルキル基を示し、R5は、水素原子、シアノ基、(C1-C6)アルキル基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基、(C1-C6)アルキルカルボニル基、又はハロ(C1-C6)アルキルカルボニル基を示す。)からなる。
置換基群Eは、
(h1) ハロゲン原子;(h2) シアノ基;(h3) ニトロ基;(h4) アミノ基;(h5) ヒドロキシル基;(h6) カルボキシル基;(h7) (C1-C6)アルキル基;(h8) (C1-C6)アルコキシ基;(h9) (C3-C6)シクロアルキル基;(h10) (C1-C6)アルキルスルファニル基;(h11) (C1-C6)アルキルスルフィニル基;(h12) (C1-C6)アルキルスルホニル基;(h13) ハロ(C1-C6)アルキル基;(h14) ハロ(C1-C6)アルコキシ基;(h15) ハロ(C3-C6)シクロアルキル基;(h16) ハロ(C1-C6)アルキルスルファニル基;(h17) ハロ(C1-C6)アルキルスルフィニル基;(h18) ハロ(C1-C6)アルキルスルホニル基;(h19) (C1-C6)アルコキシカルボニル基;(h20) フェニル(C1-C6)アルコキシカルボニル基;(h21) (C1-C6)アルキルアミノカルボニル基;(h22) N‐ハロ(C1-C6)アルキルアミノカルボニル基;(h23) フェニル基;(h24) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(h25) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(h26) (C1-C6)アルキルスルホニルアミノ基;(h27) (C1-C6)アルキルアミノスルホニル基;(h28) (C1-C6)アルキルカルボニルアミノ基;(h29) フェノキシ基;(h30) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;及び(h31) SF5基からなる。
但し、R1の(a61)置換アリール基及び(a63)置換5乃至10員環複素環基は、ピペリジン環との結合原子の隣接原子に(C1-C6)アルキルスルホニル基、ハロ(C1-C6)アルキルスルホニル基、N‐(C1-C6)アルキルアミノスルホニル基、N,N‐ジ(C1-C6)アルキルアミノスルホニル基、及びR4‐(R5‐N=)O=S基(式中、R4は、(C1-C6)アルキル基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基、又は(C1-C6)アルコキシ(C1-C6)アルキル基を示し、R5は、水素原子、シアノ基、(C1-C6)アルキル基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基、(C1-C6)アルキルカルボニル基、又はハロ(C1-C6)アルキルカルボニル基を示す。)は置換しない。
}で表される化合物(但し、以下の構造式で表される化合物を除く。
- R1が、
(a3) (C2-C6)アルキニル基;(a9) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(a11) フェニル(C1-C6)アルキル基(但しフェニルメチル基を除く);(a12) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(a13) ピリジル(C1-C6)アルキル基;(a14) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル(C1-C6)アルキル基;(a15) (C1-C6)アルキルカルボニル基;(a16) ハロ(C1-C6)アルキルカルボニル基;(a17) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルカルボニル基;(a18) フェニルカルボニル基;(a19) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(a20) ピリジルカルボニル基;(a21) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジルカルボニル基;(a22) フラニルカルボニル基;(a23) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニルカルボニル基;(a24) チエニルカルボニル基;(a25) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニルカルボニル基;(a26) ピラゾリルカルボニル基;(a27) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルカルボニル基;(a28) トリアゾリルカルボニル基;(a29) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアゾリルカルボニル基;(a30) ジオキソジヒドロベンゾフラニルカルボニル基;(a31) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ジオキソジヒドロベンゾフラニルカルボニル基;(a32) ジヒドロベンゾジオキシニルカルボニル基;(a33) 置換基群Cからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ジヒドロベンゾジオキシニルカルボニル基;(a34) (C1-C6)アルコキシカルボニル基;(a37) フェニル(C1-C6)アルコキシカルボニル基;(a38) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルコキシカルボニル基;(a39) (C1-C6)アルキルスルホニル基;(a40) (C3-C6)シクロアルキルスルホニル基;(a41) ハロ(C1-C6)アルキルスルホニル基;(a43) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルスルホニル基;(a45) ハロ(C1-C6)アルコキシハロ(C1-C6)アルキルスルホニル基;(a46) フェニルスルホニル基;(a47) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニルスルホニル基;(a48) チエニルスルホニル基;(a49) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニルスルホニル基;(a50) ピラゾリルスルホニル基;(a51) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルスルホニル基;(a52) チアゾリルスルホニル基;(a53) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリルスルホニル基;(a54) イソキサゾリルスルホニル基;(a55) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルスルホニル基;(a56) キノリニルスルホニル基;(a57) 置換基群Cからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニルスルホニル基;(a58) フェニル(C1-C6)アルキルスルホニル基;(a59) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルキルスルホニル基;(a64) (C3-C6)シクロアルキルカルボニル基;(a65) 置換基群Bからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C3-C6)シクロアルキルカルボニル基;(a66) イソキサゾリルカルボニル基;(a67) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルカルボニル基;(a68) フェニルアミノカルボニル基;(a69) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルアミノカルボニル基;(a70) ピリミジニルカルボニル基;(a71) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニルカルボニル基;(a72) ピラジニルカルボニル基;(a73) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニルカルボニル基;(a74) ピリダジニルカルボニル基;(a75) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニルカルボニル基;(a76) ナフチルカルボニル基;(a77) 置換基群Cからそれぞれ独立に選択される1乃至7個の置換基を環上に有する置換ナフチルカルボニル基;(a78) キノリニルカルボニル基;(a79) 置換基群Cからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニルカルボニル基;(a80) フェニル基;(a81) 置換基群Dからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(a82) ピリジル基;(a83) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(a84) ピリダジニル基;(a85) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(a86) ピリミジニル基;(a87) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(a88) ピラジニル基;(a89) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(a90) フラニル基;(a91) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル基;(a92) オキサゾリル基;(a93) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(a94) オキサジアゾリル基;(a95) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換オキサジアゾリル基;(a96) チエニル基;(a97) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基;(a98) チアゾリル基;(a99) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(a100) チアジアゾリル基;(a101) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換チアジアゾリル基;(a102) ピラゾリル基;(a103) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(a104) イミダゾリル基;(a105) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換イミダゾリル基;(a106) トリアゾリル基;(a107) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換トリアゾリル基;(a108) テトラゾリル基;(a109) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換テトラゾリル基;(a110) ベンゾオキサゾリル基;(a111) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾオキサゾリル基;(a112) ベンゾチアゾリル基;(a113) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾチアゾリル基;(a114) チアゾロピリジル基;(a115) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換チアゾロピリジル基;(a116) キノキサリニル基;又は(a117) 置換基群Dからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換キノキサリニル基であり、
R2が、
(b2) (C1-C6)アルキル基;(b5) (C3-C6)シクロアルキル基;(b10) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(b20) フェニル基;(b21) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(b22) ピリジル基;(b23) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(b24) ピリダジニル基;(b25) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(b26) ピリミジニル基;(b27) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(b28) ピラジニル基;(b29) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(b34) オキサゾリル基;(b35) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(b36) イソキサゾリル基;(b37) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリル基;(b40) チアゾリル基;(b41) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(b46) ピラゾリル基;(b47) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(b56) キノリニル基;(b57) 置換基群Eからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニル基;(b62) フェニル(C1-C6)アルキル基;(b63) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(b70) フラニル(C1-C6)アルキル基;(b71) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル(C1-C6)アルキル基;(b72) チエニル(C1-C6)アルキル基;(b73) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル(C1-C6)アルキル基;(b74) テトラヒドロフラニル(C1-C6)アルキル基;(b75) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換テトラヒドロフラニル(C1-C6)アルキル基;(b76) ベンゾイミダゾリル基;又は(b77) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換ベンゾイミダゾリル基であり、
R3が、
(c1) 水素原子;(c2) (C1-C6)アルキル基;又は(c3) (C3-C6)シクロアルキル基であり、
R2及びR3は、お互いに結合して環を形成してもよく、
Xが、CH2又は酸素原子であり、
Yが、酸素原子又は硫黄原子であり、
置換基群Aが、
(d1) シアノ基;(d5) (C3-C6)シクロアルキル基;(d6) (C1-C6)アルコキシ基;(d7) (C1-C6)アルキルスルファニル基;(d16) フェニルスルファニル基;(d18) モルホリニル基;(d19) フェニルカルボニル基;(d20) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(d21) ピラゾリル基;(d22) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(d23) チエニル基;及び(d24) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基からなり、
置換基群Bが、
(e1) シアノ基;(e2) (C1-C6)アルキル基;及び(e10) ハロ(C1-C6)アルキル基からなり、
置換基群Cが、
(f1) ハロゲン原子;(f2) シアノ基;(f3) ニトロ基;(f6) (C1-C6)アルキル基;(f9) (C1-C6)アルコキシ基;(f10) (C3-C6)シクロアルキル基;(f11) (C1-C6)アルキルスルファニル基;(f12) (C1-C6)アルキルスルフィニル基;(f13) (C1-C6)アルキルスルホニル基;(f14) ハロ(C1-C6)アルキル基;(f17) ハロ(C1-C6)アルコキシ基;(f19) ハロ(C1-C6)アルキルスルファニル基;(f23) (C1-C6)アルコキシカルボニル基;(f24) フェニル基;(f25) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(f26) フェノキシ基;(f27) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;(f28) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子、フェニル基及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(f29) (C1-C6)アルキルカルボニルアミノ基;(f30) ハロ(C1-C6)アルキルカルボニルアミノ基;及び(f31) (C1-C6)アルキルスルファニル(C1-C6)アルキルアミノカルボニル基からなり、
置換基群Dが、
(g1) ハロゲン原子;(g2) シアノ基;(g6) (C1-C6)アルキル基;(g9) (C1-C6)アルコキシ基;(g11) (C1-C6)アルキルスルファニル基;(g14) ハロ(C1-C6)アルキル基;(g17) ハロ(C1-C6)アルコキシ基;(g19) ハロ(C1-C6)アルキルスルファニル基;(g29) (C1-C6)アルコキシカルボニル基;(g73) フェニル基;及び(g74) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基からなり、
置換基群Eが、
(h1) ハロゲン原子;(h2) シアノ基;(h3) ニトロ基;(h7) (C1-C6)アルキル基;(h8) (C1-C6)アルコキシ基;(h9) (C3-C6)シクロアルキル基;(h10) (C1-C6)アルキルスルファニル基;(h12) (C1-C6)アルキルスルホニル基;(h13) ハロ(C1-C6)アルキル基;(h14) ハロ(C1-C6)アルコキシ基;(h16) ハロ(C1-C6)アルキルスルファニル基;(h17) ハロ(C1-C6)アルキルスルフィニル基;(h19) (C1-C6)アルコキシカルボニル基;(h21) (C1-C6)アルキルアミノカルボニル基;(h22) N‐ハロ(C1-C6)アルキルアミノカルボニル基;(h23) フェニル基;(h24) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(h25) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(h26) (C1-C6)アルキルスルホニルアミノ基;(h27) (C1-C6)アルキルアミノスルホニル基;(h28) (C1-C6)アルキルカルボニルアミノ基;(h29) フェノキシ基;(h30) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;及び(h31) SF5基からなる、請求項1に記載の化合物及びその塩類。 - R1が、
(a3) (C2-C6)アルキニル基;(a9) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキル基;(a11) フェニル(C1-C6)アルキル基(但しフェニルメチル基を除く);(a12) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(a13) ピリジル(C1-C6)アルキル基;(a14) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル(C1-C6)アルキル基;(a16) ハロ(C1-C6)アルキルカルボニル基;(a17) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルカルボニル基;(a18) フェニルカルボニル基;(a19) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(a21) 置換基群Cからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジルカルボニル基;(a22) フラニルカルボニル基;(a24) チエニルカルボニル基;(a34) (C1-C6)アルコキシカルボニル基;(a37) フェニル(C1-C6)アルコキシカルボニル基;(a39) (C1-C6)アルキルスルホニル基;(a40) (C3-C6)シクロアルキルスルホニル基;(a41) ハロ(C1-C6)アルキルスルホニル基;(a43) 置換基群Aからそれぞれ独立に選択される1乃至3個の置換基を有する置換(C1-C6)アルキルスルホニル基;(a46) フェニルスルホニル基;(a47) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニルスルホニル基;(a51) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリルスルホニル基;(a56) キノリニルスルホニル基;(a58) フェニル(C1-C6)アルキルスルホニル基;(a59) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を有する置換フェニル(C1-C6)アルキルスルホニル基;(a64) (C3-C6)シクロアルキルカルボニル基;(a67) 置換基群Cからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリルカルボニル基;(a69) 置換基群Cからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルアミノカルボニル基;(a71) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニルカルボニル基;(a73) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニルカルボニル基;(a75) 置換基群Cからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニルカルボニル基;(a76) ナフチルカルボニル基;(a78) キノリニルカルボニル基;(a80) フェニル基;(a81) 置換基群Dからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(a82) ピリジル基;(a83) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(a84) ピリダジニル基;(a85) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(a86) ピリミジニル基;(a87) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(a88) ピラジニル基;(a89) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(a92) オキサゾリル基;(a93) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換オキサゾリル基;(a96) チエニル基;(a97) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル基;(a98) チアゾリル基;(a99) 置換基群Dからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(a100) チアジアゾリル基;(a101) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換チアジアゾリル基;(a102) ピラゾリル基;(a103) 置換基群Dからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(a108) テトラゾリル基;(a109) 置換基群Dからそれぞれ独立に選択される1個の置換基を環上に有する置換テトラゾリル基;(a110) ベンゾオキサゾリル基;(a111) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾオキサゾリル基;(a112) ベンゾチアゾリル基;(a113) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ベンゾチアゾリル基;(a114) チアゾロピリジル基;(a115) 置換基群Dからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換チアゾロピリジル基;(a116) キノキサリニル基;又は(a117) 置換基群Dからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換キノキサリニル基であり、
R2が、
(b2) (C1-C6)アルキル基;(b5) (C3-C6)シクロアルキル基;(b20) フェニル基;(b21) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(b22) ピリジル基;(b23) 置換基群Eからそれぞれ独立に選択される1乃至4個の置換基を環上に有する置換ピリジル基;(b24) ピリダジニル基;(b25) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリダジニル基;(b26) ピリミジニル基;(b27) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピリミジニル基;(b28) ピラジニル基;(b29) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラジニル基;(b34) オキサゾリル基;(b37) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換イソキサゾリル基;(b40) チアゾリル基;(b41) 置換基群Eからそれぞれ独立に選択される1乃至2個の置換基を環上に有する置換チアゾリル基;(b46) ピラゾリル基;(b47) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;(b56) キノリニル基;(b57) 置換基群Eからそれぞれ独立に選択される1乃至6個の置換基を環上に有する置換キノリニル基;(b62) フェニル(C1-C6)アルキル基;(b63) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル(C1-C6)アルキル基;(b70) フラニル(C1-C6)アルキル基;(b71) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換フラニル(C1-C6)アルキル基;(b72) チエニル(C1-C6)アルキル基;(b73) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換チエニル(C1-C6)アルキル基;(b74) テトラヒドロフラニル(C1-C6)アルキル基;(b75) 置換基群Eからそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換テトラヒドロフラニル(C1-C6)アルキル基;(b76) ベンゾイミダゾリル基;又は(b77) 置換基群Eからそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換ベンゾイミダゾリル基であり、
R3が、(c1) 水素原子であり、
Xが、CH2又は酸素原子であり、
Yが、酸素原子又は硫黄原子であり、
置換基群Aが、
(d1) シアノ基;(d6) (C1-C6)アルコキシ基;(d7) (C1-C6)アルキルスルファニル基;(d16) フェニルスルファニル基;(d18) モルホリニル基;(d20) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニルカルボニル基;(d21) ピラゾリル基;(d22) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至3個の置換基を環上に有する置換ピラゾリル基;及び(d23) チエニル基からなり、
置換基群Cが、
(f1) ハロゲン原子;(f2) シアノ基;(f3) ニトロ基;(f6) (C1-C6)アルキル基;(f9) (C1-C6)アルコキシ基;(f10) (C3-C6)シクロアルキル基;(f11) (C1-C6)アルキルスルファニル基;(f12) (C1-C6)アルキルスルフィニル基;(f13) (C1-C6)アルキルスルホニル基;(f14) ハロ(C1-C6)アルキル基;(f17) ハロ(C1-C6)アルコキシ基;(f19) ハロ(C1-C6)アルキルスルファニル基;(f23) (C1-C6)アルコキシカルボニル基;(f24) フェニル基;(f25) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基;(f26) フェノキシ基;(f27) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェノキシ基;(f28) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子、フェニル基及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(f29) (C1-C6)アルキルカルボニルアミノ基;及び(f31) (C1-C6)アルキルスルファニル(C1-C6)アルキルアミノカルボニル基からなり、
置換基群Dが、
(g1) ハロゲン原子;(g2) シアノ基;(g6) (C1-C6)アルキル基;(g9) (C1-C6)アルコキシ基;(g14) ハロ(C1-C6)アルキル基;(g19) ハロ(C1-C6)アルキルスルファニル基;(g29) (C1-C6)アルコキシカルボニル基;(g73) フェニル基;及び(g74) ハロゲン原子、シアノ基、(C1-C6)アルキル基、(C1-C6)アルコキシ基、(C3-C6)シクロアルキル基、ハロ(C1-C6)アルキル基及びハロ(C1-C6)アルコキシ基からなる群からそれぞれ独立に選択される1乃至5個の置換基を環上に有する置換フェニル基からなり、
置換基群Eが、
(h1) ハロゲン原子;(h2) シアノ基;(h3) ニトロ基;(h7) (C1-C6)アルキル基;(h8) (C1-C6)アルコキシ基;(h9) (C3-C6)シクロアルキル基;(h10) (C1-C6)アルキルスルファニル基;(h12) (C1-C6)アルキルスルホニル基;(h13) ハロ(C1-C6)アルキル基;(h14) ハロ(C1-C6)アルコキシ基;(h16) ハロ(C1-C6)アルキルスルファニル基;(h17) ハロ(C1-C6)アルキルスルフィニル基;(h19) (C1-C6)アルコキシカルボニル基;(h22) N‐ハロ(C1-C6)アルキルアミノカルボニル基;(h23) フェニル基;(h25) 隣り合った2個の置換基が一緒になって形成した、ハロゲン原子及び(C1-C6)アルキル基からなる群から選択される1乃至2個の置換基で置換されてもよいメチレンジオキシ基;(h26) (C1-C6)アルキルスルホニルアミノ基;(h27) (C1-C6)アルキルアミノスルホニル基;(h28) (C1-C6)アルキルカルボニルアミノ基;(h29) フェノキシ基;及び(h31) SF5基からなる、請求項1又は2に記載の化合物及びその塩類。 - 請求項1乃至3の何れか一項に記載の化合物又はその塩類を有効成分として含有することを特徴とする有害生物防除剤。
- 請求項1乃至3の何れか一項に記載の化合物又はその塩類を有効成分として含有することを特徴とする農園芸用害虫防除剤。
- 請求項1乃至3の何れか一項に記載の化合物又はその塩類を有効成分として含有することを特徴とする動物用外部寄生虫防除剤。
- 請求項1乃至3の何れか一項に記載の化合物又はその塩類を有効成分として含有することを特徴とする動物用内部寄生虫防除剤。
- 請求項5に記載の農園芸用害虫防除剤の有効量を植物又は土壌に処理することを特徴とする農園芸用害虫の防除方法。
- 請求項6に記載の動物用外部寄生虫防除剤の有効量を対象動物に、経口又は非経口投与することを特徴とする動物の外部寄生虫の防除方法。
- 請求項7に記載の動物用内部寄生虫防除剤有効量を対象動物に、経口又は非経口投与することを特徴とする動物の内部寄生虫の防除方法。
- 請求項1乃至3の何れか一項に記載の化合物又はその塩類の有害生物防除剤としての使用。
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WO2021261563A1 (ja) * | 2020-06-26 | 2021-12-30 | 日本農薬株式会社 | アリールテトラヒドロピリダジン誘導体又はその塩類及び該化合物を含有する殺虫剤並びにその使用方法 |
WO2021261562A1 (ja) * | 2020-06-26 | 2021-12-30 | 日本農薬株式会社 | アリールテトラヒドロピリジン誘導体又はその塩類及び該化合物を含有する殺虫剤並びにその使用方法 |
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