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Ion channels: molecular targets of neuroactive insecticides
Authors:Valérie Raymond-Delpech  Kazuhiko Matsuda  Benedict M Sattelle  James J Rauh  David B Sattelle
Institution:(1) MRC Functional Genetics Unit, Department of Human Anatomy and Genetics, University of Oxford, South Parks Road, Oxford, OX1 3QX, UK;(2) Department of Applied Biological Chemistry, School of Agriculture, Kinki University, 3327-204 Nakamachi, Nara 631, Japan;(3) Stine Haskell Laboratory, Dupont Agricultural Products, Elkton Road, Newark, Delaware 19714, USA;(4) Present address: Centre de Recherches sur la Cognition Animale, CNRS UMR 5169, Université Paul Sabatier, (Toulouse 3), UFR SVT, 118 Route de Narbonne, 31062 Toulouse, Cedex, France
Abstract:Many of the insecticides in current use act on molecular targets in the insect nervous system. Recently, our understanding of these targets has improved as a result of the complete sequencing of an insect genome, i.e., Drosophila melanogaster. Here we examine the recent work, drawing on genetics, genomics and physiology, which has provided evidence that specific receptors and ion channels are targeted by distinct chemical classes of insect control agents. The examples discussed include, sodium channels (pyrethroids, p,p′-dichlorodiphenyl-trichloroethane (DDT), dihydropyrazoles and oxadiazines); nicotinic acetylcholine receptors (cartap, spinosad, imidacloprid and related nitromethylenes/nitroguanidines); γ-aminobutyric acid (GABA) receptors (cyclodienes, γ-BHC and fipronil) and L-glutamate receptors (avermectins). Finally, we have examined the molecular basis of resistance to these molecules, which in some cases involves mutations in the molecular target, and we also consider the future impact of molecular genetic technologies in our understanding of the actions of neuroactive insecticides.
Keywords:Molecular targets of insecticides  Sodium channels  Ionotropic receptors  Resistance genes
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