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Spatio-temporal genetic structure of Anopheles gambiae in the Northwestern Lake Victoria Basin Uganda: implications for genetic control trials in malaria endemic regions

机译:乌干达维多利亚湖西北岸盆地冈比亚按蚊的时空遗传结构:对疟疾流行地区遗传控制试验的影响

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摘要

BackgroundUnderstanding population genetic structure in the malaria vector Anopheles gambiae (s.s.) is crucial to inform genetic control and manage insecticide resistance. Unfortunately, species characteristics such as high nucleotide diversity, large effective population size, recent range expansion, and high dispersal ability complicate the inference of genetic structure across its range in sub-Saharan Africa. The ocean, along with the Great Rift Valley, is one of the few recognized barriers to gene flow in this species, but the effect of inland lakes, which could be useful sites for initial testing of genetic control strategies, is relatively understudied. Here we examine Lake Victoria as a barrier between the Ugandan mainland and the Ssese Islands, which lie up to 60 km offshore. We use mitochondrial DNA (mtDNA) from populations sampled in 2002, 2012 and 2015, and perform Bayesian cluster analysis on mtDNA combined with microsatellite data previously generated from the same 2002 mosquito DNA samples.
机译:背景了解疟疾媒介冈比亚按蚊(s.s.)中的种群遗传结构对于告知遗传控制和管理杀虫剂抗性至关重要。不幸的是,物种特征,例如高核苷酸多样性,较大的有效种群规模,最近的范围扩展和高分散能力,使得在撒哈拉以南非洲范围内的遗传结构推论复杂化。海洋和大裂谷是该物种中少数几个公认的阻碍基因流动的障碍之一,但是相对而言,对内陆湖的影响(可能是对遗传控制策略进行初步测试的有用场所)的研究相对较少。在这里,我们将维多利亚湖视为乌干达大陆和塞西群岛之间的屏障,后者位于离岸60公里处。我们使用2002年,2012年和2015年采样的人群的线粒体DNA(mtDNA),并对mtDNA进行贝叶斯聚类分析,再结合先前从2002年相同的蚊子DNA样品中产生的微卫星数据。

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