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Natural selection drives clinal life history patterns in the perennial sunflower species, Helianthus maximiliani

机译:自然选择驱动多年生向日葵物种向日葵的最终生活史模式

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摘要

In plants, ecologically important life history traits often display clinal patterns of population divergence. Such patterns can provide strong evidence for spatially varying selection across environmental gradients but also may result from nonselective processes, such as genetic drift, population bottlenecks and spatially restricted gene flow. Comparison of population differentiation in quantitative traits (measured as Q_(ST)) with neutral molecular markers (measured as F_(ST)) provides a useful tool for understanding the relative importance of adaptive and nonadaptive processes in the formation and maintenance of clinal variation. Here, we demonstrate the existence of geographic variation in key life history traits in the diploid perennial sunflower species Helianthus maximiliani across a broad latitudinal transect in North America. Strong population differentiation was found for days to flowering, growth rate and multiple size-related traits. Differentiation in these traits greatly exceeds neutral predictions, as determined both by partial Mantel tests and by comparisons of global Q_(ST) values with theoretical F_(ST) distributions. These findings indicate that clinal variation in these life history traits likely results from local adaptation driven by spatially heterogeneous environments.
机译:在植物中,具有重要生态意义的生活史特征经常表现出种群差异的倾斜模式。这种模式可以为跨环境梯度的空间变化选择提供有力的证据,但也可能是由于非选择性过程(例如遗传漂移,种群瓶颈和空间受限的基因流)导致的。定量特征(以Q_(ST)衡量)与中性分子标记(以F_(ST)衡量)之间的种群分化比较为了解适应性和非适应性过程在形成和维持最终变异中的相对重要性提供了有用的工具。在这里,我们证明了北美洲宽阔的横断面的二倍体多年生向日葵物种向日葵最大生命向日葵的主要生活史特征存在地理变异。在开花,生长速率和多种大小相关性状的天数中发现强烈的种群分化。这些特征的差异大大超过了中性预测,这既通过部分Mantel测试确定,又通过将全局Q_(ST)值与理论F_(ST)分布进行比较而确定。这些发现表明,这些生活史特征的临床变化可能是由空间异质环境驱动的局部适应引起的。

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