首页> 美国卫生研究院文献>Genome Biology and Evolution >Migration-Selection Balance Drives Genetic Differentiation in Genes Associated with High-Altitude Function in the Speckled Teal (Anas flavirostris) in the Andes
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Migration-Selection Balance Drives Genetic Differentiation in Genes Associated with High-Altitude Function in the Speckled Teal (Anas flavirostris) in the Andes

机译:迁移选择平衡驱动安第斯山脉有斑点的蓝绿色拟南芥(Anas flavirostris)高海拔功能相关基因的遗传分化

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摘要

Local adaptation frequently occurs across populations as a result of migration-selection balance between divergent selective pressures and gene flow associated with life in heterogeneous landscapes. Studying the effects of selection and gene flow on the adaptation process can be achieved in systems that have recently colonized extreme environments. This study utilizes an endemic South American duck species, the speckled teal (Anas flavirostris), which has both high- and low-altitude populations. High-altitude speckled teal (A. f. oxyptera) are locally adapted to the Andean environment and mostly allopatric from low-altitude birds (A. f. flavirostris); however, there is occasional gene flow across altitudinal gradients. In this study, we used next-generation sequencing to explore genetic patterns associated with high-altitude adaptation in speckled teal populations, as well as the extent to which the balance between selection and migration have affected genetic architecture. We identified a set of loci with allele frequencies strongly correlated with altitude, including those involved in the insulin-like signaling pathway, bone morphogenesis, oxidative phosphorylation, responders to hypoxia-induced DNA damage, and feedback loops to the hypoxia-inducible factor pathway. These same outlier loci were found to have depressed gene flow estimates, as well as being highly concentrated on the Z-chromosome. Our results suggest a multifactorial response to life at high altitudes through an array of interconnected pathways that are likely under positive selection and whose genetic components seem to be providing an effective genomic barrier to interbreeding, potentially functioning as an avenue for population divergence and speciation.
机译:由于不同选择压力和与异质景观中的生命相关的基因流之间的迁移-选择平衡,种群之间经常发生局部适应。研究选择和基因流对适应过程的影响可以在最近已经殖民到极端环境的系统中实现。这项研究利用南美特有的鸭种,即斑点蓝绿色(Anas flavirostris),其高海拔和低海拔种群均如此。高海拔斑点水鸭(A. f。oxyptera)在局部适应安第斯环境,并且大部分来自低海拔鸟类(A. favirostris)的异特异性;但是,偶尔会有基因在高度梯度上流动。在这项研究中,我们使用了下一代测序技术来探索斑驳蓝绿色种群与高海拔适应性相关的遗传模式,以及选择和迁移之间的平衡对遗传结构的影响程度。我们确定了一组等位基因频率与海拔高度密切相关的基因座,包括那些涉及胰岛素样信号传导途径,骨形态发生,氧化磷酸化,对缺氧诱导的DNA损伤的应答者以及对缺氧诱导因子途径的反馈回路的位点。发现这些相同的异常基因座的基因流量估计值较低,并且高度集中在Z染色体上。我们的结果表明,通过一系列相互关联的途径,人们对高海拔地区的生活有多方面的反应,这些途径可能处于积极选择之下,其遗传成分似乎为杂交提供了有效的基因组屏障,并有可能成为种群分化和物种形成的途径。

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