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Overview of the Status and Global Strategy for Neonjcotinbids

机译:新斯科舍省的现状和全球战略概述

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In recent years, neonicotinoid insecticides have been the fastest growing class of insecticides in modern crop protection, with widespread use against a broad spectrum of sucking and certain chewing pests. As potent agonists, they act selectively on insect nicotinic acetylcholine receptors (nAChRs), their molecular target site. The discovery of neonicotinoids can be considered as a milestone in insecticide research and greatly facilitates the understanding of functional properties of the insect ttAChRs. In this context, the crystal structure of the acetylcholine-binding proteins provides the theoretical foundation for designing homology models of the corresponding receptor ligand binding domains within the nAChRs, a useful basis for virtual screening of chemical libraries and rational design of novel insecticides acting on these practically relevant channels. Because of the relatively low risk for nontarget organisms and the environment, the high target specificity of neonicotinoid insecticides, and their versatility in application methods, this important class has to be maintained globally for integrated pest management strategies and insect resistance management programs. Innovative concepts for life-cycle management, jointly with the introduction of generic products, have made neonicotinoids the most important chemical class for the insecticide market.
机译:近年来,新烟碱类杀虫剂已成为现代农作物保护中增长最快的杀虫剂类,已广泛用于抵抗各种吮吸和某些咀嚼害虫。作为有效的激动剂,它们选择性地作用于昆虫的烟碱型乙酰胆碱受体(nAChRs),即它们的分子靶点。新烟碱的发现可以被认为是杀虫剂研究的一个里程碑,并极大地促进了对昆虫ttAChRs功能特性的理解。在这种情况下,乙酰胆碱结合蛋白的晶体结构为设计nAChRs内相应受体配体结合域的同源性模型提供了理论基础,为虚拟​​筛选化学文库和合理设计作用于它们的新型杀虫剂提供了有用的基础实际相关的渠道。由于非靶标生物和环境的风险相对较低,新烟碱类杀虫剂的靶标特异性高,并且它们在施用方法中具有多功能性,因此必须在全球范围内保持这一重要类别,以进行有害生物综合治理策略和抗虫性管理计划。生命周期管理的创新概念以及通用产品的推出使新烟碱类成为杀虫剂市场上最重要的化学类别。

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