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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Role of cytochrome P450s in insecticide resistance: impact on the control of mosquito-borne diseases and use of insecticides on Earth
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Role of cytochrome P450s in insecticide resistance: impact on the control of mosquito-borne diseases and use of insecticides on Earth

机译:细胞色素P450在杀虫剂抗药性中的作用:对控制蚊媒疾病和在地球上使用杀虫剂的影响

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摘要

The fight against diseases spread by mosquitoes and other insects has enormous environmental, economic and social consequences. Chemical insecticides remain the first line of defence but the control of diseases, especially malaria and dengue fever, is being increasingly undermined by insecticide resistance. Mosquitoes have a large repertoire of P450s (over 100 genes). By pinpointing the key enzymes associated with insecticide resistance we can begin to develop new tools to aid the implementation of control interventions and reduce their environmental impact on Earth. Recent technological advances are helping us to build a functional profile of the P450 determinants of insecticide metabolic resistance in mosquitoes. Alongside, the cross-responses of mosquito P450s to insecticides and pollutants are also being investigated. Such research will provide the means to produce diagnostic tools for early detection of P450s linked to resistance. It will also enable the design of new insecticides with optimized efficacy in different environments.
机译:与蚊子和其他昆虫传播的疾病作斗争具有巨大的环境,经济和社会后果。化学杀虫剂仍然是第一道防线,但对杀虫剂的抗性越来越削弱了对疾病(尤其是疟疾和登革热)的控制。蚊子拥有大量的P450(超过100个基因)。通过确定与杀虫剂抗性相关的关键酶,我们可以开始开发新工具,以帮助实施控制干预措施并减少其对地球的环境影响。最近的技术进步正在帮助我们建立蚊子对杀虫剂抗药性的P450决定因素的功能概况。同时,也正在研究蚊子P450对杀虫剂和污染物的交叉反应。此类研究将提供生产诊断工具的方法,以早期检测与耐药性相关的P450。它还将能够设计出在不同环境下具有最佳功效的新型杀虫剂。

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