Patent classifications
A01P7/04
MIXTURES COMPRISING INDAZOLE PESTICIDES
Disclosed are compositions comprising compounds of Formula (I) and compounds of Formula (II). Also disclosed are N compositions containing compounds of Formula (I) or compounds of Formula (II), or combinations thereof and methods for controlling an invertebrate pest comprising contacting the invertebrate pest or its environment with a biologically effective amount of a compound or a composition of the disclosure.
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NOVEL HETEROARYL-TRIAZOLE COMPOUNDS AS PESTICIDES
The present invention relates to novel heteroaryl-triazole compounds of the general formula (I), in which the structural elements X, Y, R.sup.1, R.sup.2, R.sup.3, R.sup.4 and R.sup.5 have the meaning given in the description, to formulations and compositions comprising such compounds and for their use in the control of animal pests including arthropods and insects in plant protection and to their use for control of ectoparasites on animals.
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NOVEL HETEROARYL-TRIAZOLE COMPOUNDS AS PESTICIDES
The present invention relates to novel heteroaryl-triazole compounds of the general formula (I), in which the structural elements X, Y, R.sup.1, R.sup.2, R.sup.3, R.sup.4 and R.sup.5 have the meaning given in the description, to formulations and compositions comprising such compounds and for their use in the control of animal pests including arthropods and insects in plant protection and to their use for control of ectoparasites on animals.
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META-DIAMIDE INSECTICIDES
Disclosed are compounds of Formula 1, including all geometric and stereoisomers, N-oxides, and salts thereof, wherein Q, Y, R.sup.1a, R.sup.1b, Z, W, R.sup.2, R.sup.3, R.sup.4, m, R.sup.5a and R.sup.5b are as defined in the disclosure. Also disclosed are compositions containing the compounds of Formula 1 and methods for controlling an invertebrate pest comprising contacting the invertebrate pest or its environment with a biologically effective amount of a compound or a composition of the invention.
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META-DIAMIDE INSECTICIDES
Disclosed are compounds of Formula 1, including all geometric and stereoisomers, N-oxides, and salts thereof, wherein Q, Y, R.sup.1a, R.sup.1b, Z, W, R.sup.2, R.sup.3, R.sup.4, m, R.sup.5a and R.sup.5b are as defined in the disclosure. Also disclosed are compositions containing the compounds of Formula 1 and methods for controlling an invertebrate pest comprising contacting the invertebrate pest or its environment with a biologically effective amount of a compound or a composition of the invention.
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INSECTICIDAL MIXTURES OF BIFENTHRIN AND CHLORANTRANILIPROLE
Improved concentrate, premix and tank mix compositions comprising bifenthrin and chlorantraniliprole are provided.
INSECTICIDAL MIXTURES OF BIFENTHRIN AND CHLORANTRANILIPROLE
Improved concentrate, premix and tank mix compositions comprising bifenthrin and chlorantraniliprole are provided.
EFFECTS OF NF-kB SIGNALING INHIBITORS ON BED BUG RESISTANCE TO ORALLY PROVISIONED ENTOMOPATHOGENIC BACTERIA
Treatment compositions for controlling bed bugs and methods of use, including reducing bed bug resistance to a biological control agent are disclosed. The treatment compositions can include both a NF-kB signaling inhibitor and biological control agent, such as, an entomopathogenic bacteria, to improve the treatment composition efficacy against bed bugs. Provisioning of a small molecule inhibitor of NF-kB signaling can increase the rate of bed bug mortality during infection with a bacterial entomopathogen. Increased mortality can be independent of direct effects of the inhibitor on bacterial growth and can be instead the result of a reduced ability of bed bugs to clear the infection when treated with the inhibitor.
EFFECTS OF NF-kB SIGNALING INHIBITORS ON BED BUG RESISTANCE TO ORALLY PROVISIONED ENTOMOPATHOGENIC BACTERIA
Treatment compositions for controlling bed bugs and methods of use, including reducing bed bug resistance to a biological control agent are disclosed. The treatment compositions can include both a NF-kB signaling inhibitor and biological control agent, such as, an entomopathogenic bacteria, to improve the treatment composition efficacy against bed bugs. Provisioning of a small molecule inhibitor of NF-kB signaling can increase the rate of bed bug mortality during infection with a bacterial entomopathogen. Increased mortality can be independent of direct effects of the inhibitor on bacterial growth and can be instead the result of a reduced ability of bed bugs to clear the infection when treated with the inhibitor.
AN AGROCHEMICAL COMPOSITION
The present invention relates to an agrochemical composition comprising: a) a neonicotinoid or a 3-pyridine carboxamide insecticide; and b) a crystal growth inhibiting system wherein the crystal growth inhibiting system is a combination of a mineral oil and a surfactant mixture. The present invention further provides process, method, use and kit thereof.