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Local adaptation and ecological differentiation under selection, migration, and drift in Arabidopsis lyrata

机译:在选择,迁移和拟南芥中的局部适应和生态分化

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How the balance between selection, migration, and drift influences the evolution of local adaptation has been under intense theoretical scrutiny. Yet, empirical studies that relate estimates of local adaptation to quantification of gene flow and effective population sizes have been rare. Here, we conducted a reciprocal transplant trial, a common garden trial, and a whole-genome-based demography analysis to examine these effects among Arabidopsis lyrata populations from two altitudinal gradients in Norway. Demography simulations indicated that populations within the two gradients are connected by gene flow (0.1 < 4N_em < 11) and have small effective population sizes (N_e < 6000), suggesting that both migration and drift can counteract local selection. However, the three-year field experiments showed evidence of local adaptation at the level of hierarchical multiyear fitness, attesting to the strength of differential selection. In the lowland habitat, local superiority was associated with greater fecundity, while viability accounted for fitness differences in the alpine habitat. We also demonstrate that flowering time differentiation has contributed to adaptive divergence between these locally adapted populations. Our results show that despite the estimated potential of gene flow and drift to hinder differentiation, selection among these A. lyrata populations has resulted in local adaptation.
机译:选择,迁移和漂移之间的平衡如何影响本地适应的演变一直受到了浓烈的理论审查。然而,涉及局部适应估计对基因流动和有效群体尺寸的估计的实证研究已经罕见。在这里,我们进行了互惠的移植试验,共同的园林试验和基于全基因组的人口统计学分析,以检查来自挪威的两个高度梯度的拟南芥Lyrata群体中的这些影响。人口统计学模拟表明,两个梯度内的群体通过基因流(0.1 <4n_em <11)连接,并且具有小的有效种群尺寸(N_E <6000),表明迁移和漂移都可以抵消本地选择。然而,三年的现场实验显示了局部适应的证据,在分层多元性健身水平上,证明了差异选择的强度。在低地栖息地,局部优势与更高的繁殖力相关,而活力占高山栖息地的健身差异。我们还证明开花时间分化有助于这些局部适应群体之间的适应性分歧。我们的研究结果表明,尽管基因流动的估计潜力和漂移妨碍分化,但这些A. Lyrata群体导致局部适应。

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