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Assessing connectivity despite high diversity in island populations of a malaria mosquito

机译:尽管疟疾蚊子的岛屿种群多样性高但仍要评估连通性

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摘要

Documenting isolation is notoriously difficult for species with vast polymorphic populations. High proportions of shared variation impede estimation of connectivity, even despite leveraging information from many genetic markers. We overcome these impediments by combining classical analysis of neutral variation with assays of the structure of selected variation, demonstrated using populations of the principal African malaria vector . Accurate estimation of mosquito migration is crucial for efforts to combat malaria. Modeling and cage experiments suggest that mosquito gene drive systems will enable malaria eradication, but establishing safety and efficacy requires identification of isolated populations in which to conduct field testing. We assess Lake Victoria islands as candidate sites, finding one island 30 km offshore is as differentiated from mainland samples as populations from across the continent. Collectively, our results suggest sufficient contemporary isolation of these islands to warrant consideration as field‐testing locations and illustrate shared adaptive variation as a useful proxy for connectivity in highly polymorphic species.
机译:众所周知,对于具有大量多态种群的物种而言,记录隔离非常困难。即使利用了许多遗传标记的信息,高比例的共享变异也阻碍了对连通性的估计。我们通过将中性变异的经典分析与选定变异结构的分析方法相结合,克服了这些障碍,这些方法已使用非洲主要疟疾媒介的种群进行了证明。准确估计蚊子的迁徙对防治疟疾至关重要。建模和笼子实验表明,蚊子基因驱动系统将能够根除疟疾,但要确定安全性和有效性,必须确定进行现场测试的孤立种群。我们将维多利亚湖岛作为候选地点进行评估,发现离岸30公里的一个岛与大陆样本的差异与整个大陆的人口不同。总体而言,我们的结果表明,这些岛屿在当代已被充分隔离,值得考虑作为实地测试地点,并说明共享的适应性变异是高度多态物种的连通性的有用替代。

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