The novel pyridazine pyrazolecarboxamide insecticide dimpropyridaz inhibits chordotonal organ function upstream of TRPV channels

Author:

Spalthoff Christian1,Salgado Vincent L.2ORCID,Balu Narayanan2,David Michael D.2ORCID,Hehlert Philip1ORCID,Huang Huazhang2,Jones John E.2,Kandasamy Ramani2,Knudsen Gabriel A.2,Lelito Katherine R.2,Machamer James B.2,Nesterov Alexandre2,Tomalski Michael2,Wahl Gregory D.2,Wedel Barbara J.2,Göpfert Martin C.1ORCID

Affiliation:

1. Department of Cellular Neurobiology University of Göttingen Göttingen Germany

2. BASF Corp Research Triangle Park NC USA

Abstract

AbstractBACKGROUNDPyridazine pyrazolecarboxamides (PPCs) are a novel insecticide class discovered and optimized at BASF. Dimpropyridaz is the first PPC to be submitted for registration and controls many aphid species as well as whiteflies and other piercing–sucking insects.RESULTSDimpropyridaz and other tertiary amide PPCs are proinsecticides that are converted in vivo into secondary amide active forms by N‐dealkylation. Active secondary amide metabolites of PPCs potently inhibit the function of insect chordotonal neurons. Unlike Group 9 and 29 insecticides, which hyperactivate chordotonal neurons and increase Ca2+ levels, active metabolites of PPCs silence chordotonal neurons and decrease intracellular Ca2+ levels. Whereas the effects of Group 9 and 29 insecticides require TRPV (Transient Receptor Potential Vanilloid) channels, PPCs act in a TRPV‐independent fashion, without compromising cellular responses to Group 9 and 29 insecticides, placing the molecular PPC target upstream of TRPVs.CONCLUSIONSPPCs are a new class of chordotonal organ modulator insecticide for control of piercing–sucking pests. Dimpropyridaz is a PPC proinsecticide that is activated in target insects to secondary amide forms that inhibit the firing of chordotonal organs. The inhibition occurs at a site upstream of TRPVs and is TRPV‐independent, providing a novel mode of action for resistance management. © 2023 BASF Corporation. Pest Management Science published by John Wiley & Sons Ltd on behalf of Society of Chemical Industry.

Publisher

Wiley

Subject

Insect Science,Agronomy and Crop Science,General Medicine

Reference48 articles.

1. IRAC International MoA Working Group IRAC Mode of Action Classification Scheme ver. 10.4. Insecticide Resistance Action Committee (2022).

2. Status and outlook for acaricide and insecticide discovery

3. Insecticides, biologics and nematicides: Updates to IRAC’s mode of action classification - a tool for resistance management

4. Chordotonal Organs of Insects

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