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首页> 外文期刊>PLoS Genetics >An Africa-wide genomic evolution of insecticide resistance in the malaria vector Anopheles funestus involves selective sweeps, copy number variations, gene conversion and transposons
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An Africa-wide genomic evolution of insecticide resistance in the malaria vector Anopheles funestus involves selective sweeps, copy number variations, gene conversion and transposons

机译:疟疾血管抗性的非洲基因组进化<斜体>肌肉蛋白酶丧生涉及选择性扫描,拷贝数变异,基因转换和转座子

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Insecticide resistance in malaria vectors threatens to reverse recent gains in malaria control. Deciphering patterns of gene flow and resistance evolution in malaria vectors is crucial to improving control strategies and preventing malaria resurgence. A genome-wide survey of Anopheles funestus genetic diversity Africa-wide revealed evidences of a major division between southern Africa and elsewhere, associated with different population histories. Three genomic regions exhibited strong signatures of selective sweeps, each spanning major resistance loci ( CYP6P9a/b , GSTe2 and CYP9K1 ). However, a sharp regional contrast was observed between populations correlating with gene flow barriers. Signatures of complex molecular evolution of resistance were detected with evidence of copy number variation, transposon insertion and a gene conversion between CYP6P9a / b paralog genes. Temporal analyses of samples before and after bed net scale up suggest that these genomic changes are driven by this control intervention. Multiple independent selective sweeps at the same locus in different parts of Africa suggests that local evolution of resistance in malaria vectors may be a greater threat than trans-regional spread of resistance haplotypes.
机译:疟疾载体抗性抗性威胁威胁到最近疟疾控制的近期收益。疟疾载体基因流动和抗性进化的解密模式对于改善对照策略并预防疟疾复兴至关重要。对南非和其他地方之间的主要部门和其他地方,与不同人群历史有关的基因组对粪便遗传遗传多样性的基因组调查。三个基因组区域表现出强烈的选择性扫描签名,每个跨越主要抗性基因座(CYP6P9A / B,GSTE2和CYP9K1)。然而,在与基因流动屏障相关的群体之间观察到尖锐的区域对比。用CYP6P9A / B Paralog基因之间的拷贝数变异,转座子插入和基因转化的证据检测抗性复杂分子演化的签名。床净量表之前和之后的样品的时间分析表明这些基因组变化由该控制干预驱动。非洲不同地区同一地点的多个独立选择扫描表明,疟疾载体中抗性的局部演化可能是抗性单倍型的跨区域传播的更大威胁。

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