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机构地区:[1]浙江大学应用昆虫学研究所,浙江杭州310029 [2]中国科学院上海生命科学院上海植物生理生态研究所,上海200032
出 处:《农药学学报》2005年第1期1-6,共6页Chinese Journal of Pesticide Science
基 金:国家重点基础研究发展计划(973计划)项目(2003CB114403);国家自然科学基金重点项目(30230070).
摘 要:有机磷和氨基甲酸酯类杀虫剂的广泛使用导致许多害虫产生了明显的抗药性。害虫对这些杀虫剂产生抗性的一个重要原因是其乙酰胆碱酯酶 (AChE)基因发生突变,从而导致AChE敏感度下降。简要概述了AChE基因发生突变的昆虫种类,介绍了AChE基因突变对其结构与功能的影响、变构AChE的特性、AChE基因突变对适合度的影响以及AChE突变不同组合对抗性的影响。这些突变可为设计新颖的反抗性化合物开辟新的途径。Intensive use of organophosphate and carbamate insecticides has led to the development (of resistance) in many target species that are important in agriculture. (Acetylcholinesterase(AChE))(insensitive) to organophosphate and carbamate insecticides has been identified as a major resistance mechanism in numerous insect species. Acetylcholinesterase gene mutations conferring insecticide (resistance) in insect pests are summarized briefly. Furthermore, the effects of acetylcholinesterase gene mutations on (acetylcholinesterase) protein structures and functions, the characterization of (modified) (acetylcholinesterase) protein, the effects of acetylcholinesterase gene mutations on fitness, and the effects of the combination of various mutations on insecticide resistance were discussed. These gene mutations responsible for conferring insensitivity may open up the way for designing new (anti-)resistant compounds.
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