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Local Selection Across a Latitudinal Gradient Shapes Nucleotide Diversity in Balsam Poplar Populus balsamifera L

机译:香脂杨苦瓜杨的横向梯度形状核苷酸多样性的局部选择。

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摘要

Molecular studies of adaptive evolution often focus on detecting selective sweeps driven by positive selection on a species-wide scale; however, much adaptation is local, particularly of ecologically important traits. Here, we look for evidence of range-wide and local adaptation at candidate genes for adaptive phenology in balsam poplar, Populus balsamifera, a widespread forest tree whose range extends across environmental gradients of photoperiod and growing season length. We examined nucleotide diversity of 27 poplar homologs of the flowering-time network—a group of genes that control plant developmental phenology through interactions with environmental cues such as photoperiod and temperature. Only one gene, ZTL2, showed evidence of reduced diversity and an excess of fixed replacement sites, consistent with a species-wide selective sweep. Two other genes, LFY and FRI, harbored high levels of nucleotide diversity and exhibited elevated differentiation between northern and southern accessions, suggesting local adaptation along a latitudinal gradient. Interestingly, FRI has also been identified as a target of local selection between northern and southern accessions of Arabidopsis thaliana, indicating that this gene may be commonly involved in ecological adaptation in distantly related species. Our findings suggest an important role for local selection shaping molecular diversity and reveal limitations of inferring molecular adaptation from analyses designed only to detect species-wide selective sweeps.
机译:适应性进化的分子研究通常集中于检测全物种范围内由正选择驱动的选择性扫描。然而,许多适应是地方性的,特别是对具有生态重要性的性状。在这里,我们寻找香脂杨,香脂杨(Populus balsamifera)(一种广泛的林木,其范围跨越光周期的环境梯度和生长季节长度)的适应性物候候选基因的范围广泛和局部适应的证据。我们检查了开花时间网络的27个杨树同系物的核苷酸多样性,这是一组通过与环境信息(例如光周期和温度)相互作用来控制植物发育物候的基因。只有一个基因ZTL2显示出减少的多样性和过量的固定置换位点的证据,这与全物种范围的选择性扫描一致。另外两个基因,LFY和FRI,具有高水平的核苷酸多样性,并且在北部和南部种质之间表现出较高的分化能力,表明沿纬度梯度的局部适应。有趣的是,FRI也已被确定为拟南芥南北种之间局部选择的目标,表明该基因可能通常与远缘物种的生态适应有关。我们的发现表明,局部选择在塑造分子多样性方面起着重要作用,并揭示了仅用于检测物种范围内选择性扫描的分析推断分子适应性的局限性。

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