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Selection and drift influence genetic differentiation of insular Canada lynx (Lynx canadensis) on Newfoundland and Cape Breton Island

机译:纽芬兰和布雷顿角岛上的加拿大孤立Canada(Lynx canadensis)的选择和漂移影响遗传分化

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摘要

Island populations have long been important for understanding the dynamics and mechanisms of evolution in natural systems. While genetic drift is often strong on islands due to founder events and population bottlenecks, the strength of selection can also be strong enough to counteract the effects of drift. Here, we used several analyses to identify the roles of genetic drift and selection on genetic differentiation and diversity of Canada lynx (Lynx canadensis) across eastern Canada, including the islands of Cape Breton and Newfoundland. Specifically, we assessed whether we could identify a genetic component to the observed morphological differentiation that has been reported across insular and mainland lynx. We used a dinucleotide repeat within the promoter region of a functional gene that has been linked to mammalian body size, insulin‐like growth factor‐1 (IGF‐1). We found high genetic differentiation at neutral molecular markers but convergence of allele frequencies at the IGF‐1 locus. Thus, we showed that while genetic drift has influenced the observed genetic structure of lynx at neutral molecular markers, natural selection has also played a role in the observed patterns of genetic diversity at the IGF‐1 locus of insular lynx.
机译:长期以来,岛屿人口对于理解自然系统的动力学和演化机制很重要。尽管由于创始人事件和人口瓶颈,岛屿上的遗传漂移往往很强,但选择的强度也可能足以抵消漂移的影响。在这里,我们使用了几种分析方法来确定遗传漂移和选择对整个加拿大东部(包括布雷顿角岛和纽芬兰岛)加拿大(Lynx canadensis)的遗传分化和多样性的作用。具体来说,我们评估了我们是否可以确定已观察到的岛和大陆天猫的形态分化的遗传成分。我们在功能基因的启动子区域内使用了一个二核苷酸重复序列,该基因与哺乳动物的体型胰岛素样生长因子-1(IGF-1)相关。我们在中性分子标记处发现了高遗传分化,但在IGF-1基因座处等位基因频率趋同。因此,我们表明,尽管遗传漂移影响了在中性分子标记处观察到的ly的遗传结构,但自然选择在岛in的IGF-1位点的观察到的遗传多样性模式中也发挥了作用。

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