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Evolution of resistance in Culex pipiens: Allele replacement and changing environment

机译:淡色库蚊的抗性演变:等位基因置换和环境变化

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Fixation of adaptive mutations in populations is often constrained by pleiotropic fitness costs. The evolutionary pathways that compensate such fitness disadvantages are either the occurrence of modifier genes or replacement of the adaptive allele by less costly ones. In this context, 23 years of evolution of insecticide resistance genes in the mosquito Culex pipiens from southern France are analyzed. The aim of this study is to answer the following points. Is there a fitness cost associated with these resistance genes in natural populations? Does evolution proceed through allele replacement or through selection of modifiers? And finally, how do environmental changes affect the evolution of resistance genes? Samples from the same transect, crossing the boundary between an insecticide-treated and a nontreated area, are analyzed. Clinal analyses indicate a variable fitness cost among the resistance genes and show that allele replacement has been the primary mechanism of resistance evolution in this area. It is also shown that replacement was probably due to environmental changes corresponding to modification in pesticide-treatment intensity. [References: 67]
机译:群体中适应性突变的固定通常受到多效适应性成本的限制。弥补这种适应性缺陷的进化途径是修饰基因的出现或适应性等位基因被成本较低的替代。在此背景下,分析了法国南部蚊子库蚊的23年进化历程。本研究的目的是回答以下几点。在自然种群中,与这些抗性基因相关的适应性成本吗?进化是通过等位基因置换还是通过选择修饰子来进行?最后,环境变化如何影响抗性基因的进化?分析来自同一断面的样品,这些样品跨越了经过杀虫剂处理的区域和未经处理的区域之间的边界。临床分析表明,抗性基因之间的适应度成本存在变化,并显示等位基因替代已成为该区域抗性进化的主要机制。还显示出替换可能是由于环境变化所致,该环境变化对应于农药处理强度的改变。 [参考:67]

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