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Parallel selection on gene copy number variations through evolution of three-spined stickleback genomes

机译:通过三棘棘背式基因组进化对基因拷贝数变异的平行选择

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摘要

BackgroundUnderstanding the genetic basis of adaptive evolution is one of the major goals in evolutionary biology. Recently, it has been revealed that gene copy number variations (GCNVs) constitute significant proportions of genomic diversities within natural populations. However, it has been unclear whether GCNVs are under positive selection and contribute to adaptive evolution. Parallel evolution refers to adaptive evolution of the same trait in related but independent lineages, and three-spined stickleback (Gasterosteus aculeatus) is a well-known model organism. Through identification of genetic variations under parallel selection, i.e., variations shared among related but independent lineages, evidence of positive selection is obtained. In this study, we investigated whole-genome resequencing data from the marine and freshwater groups of three-spined sticklebacks from diverse areas along the Pacific and Atlantic Ocean coastlines, and searched for GCNVs under parallel selection.
机译:背景技术了解适应性进化的遗传基础是进化生物学的主要目标之一。最近,已经揭示了基因拷贝数变异(GCNV)构成了自然种群中基因组多样性的重要部分。但是,尚不清楚GCNV是否处于正选择之下并有助于适应性进化。平行进化是指在相关但独立的世系中具有相同性状的适应性进化,而三梭stick(Gasterosteus aculeatus)是一种著名的模型生物。通过鉴定平行选择下的遗传变异,即相关但独立的谱系之间共享的变异,可以获得阳性选择的证据。在这项研究中,我们调查了来自太平洋和大西洋沿岸不同地区的三梭stick的海洋和淡水组的全基因组重测序数据,并在平行选择下搜索了GCNV。

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