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Footprints of divergent selection in natural populations of Castanopsis fargesii (Fagaceae)

机译:锥栗(Fagaceae)自然种群中不同选择的足迹

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摘要

Given predicted rapid climate change, an understanding of how environmental factors affect genetic diversity in natural populations is important. Future selection pressures are inherently unpredictable, so forest management policies should maintain both overall diversity and identify genetic markers associated with the environmental factors expected to change most rapidly, like temperature and rainfall. In this study, we genotyped 648 individuals in 28 populations of Castanopsis fargesii (Fagaceae) using 32 expressed sequence tag (EST)-derived microsatellite markers. After removing six loci that departed from Hardy–Weinberg equilibrium, we measured genetic variation, population structure and identified candidate loci putatively under selection by temperature and precipitation. We found that C. fargesii populations possessed high genetic diversity and moderate differentiation among them, indicating predominant outcrossing and few restrictions to gene flow. These patterns reduce the possible impact of stochastic effects or the influence of genetic isolation. Clear footprints of divergent selection at four loci were discovered. Frequencies of five alleles at these loci were strongly correlated with environmental factors, particularly extremes in precipitation. These alleles varied from being near fixation at one end of the gradient to being completely absent at the other. Our study species is an important forest tree in the subtropical regions of China and could have a major role in future management and reforestation plans. Our results demonstrate that the gene flow is widespread and abundant in natural populations, maintaining high diversity, while diversifying selection is acting on specific genomic regions.
机译:考虑到预计的快速气候变化,了解环境因素如何影响自然种群遗传多样性很重要。未来的选择压力本质上是不可预测的,因此森林管理政策应既保持整体多样性,又应确定与预期变化最快的环境因素(如温度和降雨量)相关的遗传标记。在这项研究中,我们使用32个表达的序列标签(EST)衍生的微卫星标记,对法氏far(Fagaceae)的28个种群中的648个个体进行了基因分型。在去除了6个偏离Hardy-Weinberg平衡点的基因座后,我们测量了遗传变异,种群结构并确定了根据温度和降水选择的候选基因座。我们发现C. fargesii种群具有较高的遗传多样性和中度分化,表明主要的杂交和对基因流的限制很少。这些模式减少了随机效应或遗传隔离的影响。发现了四个位点的不同选择的清晰足迹。这些基因座上的五个等位基因的频率与环境因素密切相关,尤其是极端降水。这些等位基因的变化范围从在梯度的一端接近固定到另一端完全不存在。我们的研究树种是中国亚热带地区的重要林木,并可能在未来的管理和造林计划中发挥重要作用。我们的结果表明,基因流在自然种群中分布广泛且丰富,保持了高度多样性,而多样化的选择则作用于特定的基因组区域。

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