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The impact of insecticides management linked with resistance expression in Anopheles spp. populations

机译:杀虫剂管理与抗咽部SPP抗性表达的影响。人口

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The resistance of some species of Anopheles to chemical insecticides is spreading quickly throughout the world and has hindered the actions of prevention and control of malaria. The main mechanism responsible for resistance in these insects appears to be the target site known as knock-down resistance (kdr), which causes mutations in the sodium channel. Even so, many countries have made significant progress in the prevention of malaria, focusing largely on vector control through long-lasting insecticide nets (LLINs), indoor residual spraying and (IRS) of insecticides. The objective of this review is to contribute with information on the more applied insecticides for the control of the main vectors of malaria, its effects, and the different mechanisms of resistance. Currently it is necessary to look for others alternatives, e.g. biological control and products derived from plants and fungi, by using other organisms as a possible regulator of the populations of malaria vectors in critical outbreaks .
机译:一些种类的肌肉蛋白对化学杀虫剂的抵抗力迅速蔓延,并阻碍了预防和控制疟疾的作用。负责这些昆虫中抗性的主要机制似乎是称为倒塌抗性(KDR)的靶位位点,其导致钠通道中的突变。即便如此,许多国家也在预防疟疾方面取得了重大进展,主要关注通过持久的杀虫剂网(Llins),室内残留的喷涂和(IRS)的杀虫剂来染色体。本综述的目的是促进关于更普遍应用的杀虫剂的信息,用于控制疟疾的主要载体,其影响和不同的抵抗机制。目前有必要寻找其他替代方案,例如,通过使用其他生物作为批判性爆发中疟疾载体群体的可能调节剂的生物控制和来自植物和真菌的产品。

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