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首页> 外文期刊>BMC Evolutionary Biology >Ecological, genetic and evolutionary drivers of regional genetic differentiation in Arabidopsis thaliana
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Ecological, genetic and evolutionary drivers of regional genetic differentiation in Arabidopsis thaliana

机译:拟南芥区域遗传分化的生态学,遗传和进化驱动因素

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Disentangling the drivers of genetic differentiation is one of the cornerstones in evolution. This is because genetic diversity, and the way in which it is partitioned within and among populations across space, is an important asset for the ability of populations to adapt and persist in changing environments. We tested three major hypotheses accounting for genetic differentiation—isolation-by-distance (IBD), isolation-by-environment (IBE) and isolation-by-resistance (IBR)—in the annual plant Arabidopsis thaliana across the Iberian Peninsula, the region with the largest genomic diversity. To that end, we sampled, genotyped with genome-wide SNPs, and analyzed 1772 individuals from 278 populations distributed across the Iberian Peninsula. IBD, and to a lesser extent IBE, were the most important drivers of genetic differentiation in A. thaliana. In other words, dispersal limitation, genetic drift, and to a lesser extent local adaptation to environmental gradients, accounted for the within- and among-population distribution of genetic diversity. Analyses applied to the four Iberian genetic clusters, which represent the joint outcome of the long demographic and adaptive history of the species in the region, showed similar results except for one cluster, in which IBR (a function of landscape heterogeneity) was the most important driver of genetic differentiation. Using spatial hierarchical Bayesian models, we found that precipitation seasonality and topsoil pH chiefly accounted for the geographic distribution of genetic diversity in Iberian A. thaliana. Overall, the interplay between the influence of precipitation seasonality on genetic diversity and the effect of restricted dispersal and genetic drift on genetic differentiation emerges as the major forces underlying the evolutionary trajectory of Iberian A. thaliana.
机译:解开遗传分化的驱动程序是进化中的基石之一。这是因为遗传多样性,以及它在跨空间的人群内部和群体中分区的方式,是人群适应和持续改变环境的能力的重要资产。我们测试了三个主要假设核算遗传分化隔离(IBD),隔离 - 逐次(IBE)和抗抵抗(IBR)-IN整个伊比利亚半岛,该地区的年度植物拟南芥具有最大的基因组多样性。为此,我们对基因组的SNP进行了采样,基因分型,并分析了来自伊比利亚半岛的278个种群的1772个个体。 IBD,在较小的程度上,IBE是A. Thaliana中最重要的遗传分化驱动因素。换句话说,分散限制,遗传漂移,以及对环境梯度的局部局部适应的较小程度,占遗传多样性的群体内和人口中的分布。适用于四个伊比利亚遗传集群的分析,它代表了该地区物种长期人口统计和自适应史的联合结果,除了一个集群外,展示了类似的结果,其中IBR(景观异质性的函数)是最重要的遗传分化司机。使用空间分层贝叶斯模型,我们发现降水季节性和表达博士主要占Iberian A. Thaliana遗传多样性的地理分布。总体而言,降水季节性对遗传多样性的影响与限制分散和遗传漂移对遗传分化的影响,作为伊比利亚伊比利亚人进化轨迹的主要力量出现。

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