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Recent population genomic insights into the genetic basis of arsenic tolerance in humans: the difficulties of identifying positively selected loci in strongly bottlenecked populations

机译:最近的人口基因组洞察人类砷耐受性的遗传基础:在强瓶颈中识别正面选择的群体的困难

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Recent advances in genomics have enabled researchers to shed light on the evolutionary processes driving human adaptation, by revealing the genetic architectures underlying traits ranging from lactase persistence, to skin pigmentation, to hypoxic response, to arsenic tolerance. Complicating the identification of targets of positive selection in modern human populations is their complex demographic history, characterized by population bottlenecks and expansions, population structure, migration, and admixture. In particular, founder effects and recent strong population size reductions, such as those experienced by the indigenous peoples of the Americas, have severe impacts on genetic variation that can lead to the accumulation of large allele frequency differences between populations due to genetic drift rather than natural selection. While distinguishing the effects of demographic history from selection remains challenging, neglecting neutral processes can lead to the incorrect identification of candidate loci. We here review the recent population genomic insights into the genetic basis of arsenic tolerance in Andean populations, and utilize this example to highlight both the difficulties pertaining to the identification of local adaptations in strongly bottlenecked populations, as well as the importance of controlling for demographic history in selection scans.
机译:基因组学的最新进展使研究人员能够在推动人类适应的进化过程中阐明脱光,通过揭示从乳糖酶持续性,皮肤色素沉着,缺氧反应,对砷耐受性的遗传架构。使现代人类群体的积极选择的目标复杂化是它们的复杂性人口历史,其特征是人口瓶颈和扩张,人口结构,迁移和混合物。特别是,创始人的影响和最近的人口大小减少,如美洲的土着人民所经历的那些对遗传变异产生严重影响,这可能导致由于遗传漂移而不是自然的群体之间的大型等位基因频率差异的积累选择。在区分人口统计历史的影响中,忽视中性过程可能导致候选基因座的识别不正确。我们在这里审查了近期砷耐受性遗传基础的人口基因组洞察力,利用了这个例子来突出,突出与强烈瓶颈群体的鉴定局部适应的困难,以及控制人口历史的重要性在选择扫描。

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