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Spatial variation in climate mediates gene flow across an island archipelago

机译:气候的空间变化介导了整个岛屿群岛的基因流

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High levels of gene flow among partially isolated populations can overwhelm selection and limit local adaptation. This process, known as "gene swamping," can homogenize genetic diversity among populations and reduce the capacity of a species to withstand rapid environmental change. We studied brown anole lizards (Anolis sagrei) distributed across seven islands in The Bahamas. We used microsatellite markers to estimate gene flow among islands and then examined the correlation between thermal performance and island temperature. The thermal optimum for sprint performance was correlated with both mean and maximum island temperature, whereas performance breadth was not correlated with any measure of temperature variation. Gene flow between islands decreased as the difference between mean island temperatures increased, even when those islands were adjacent to one another. These data suggest that phenotypic variation is the result of either (1) local genetic adaptation with selection against immigrants maintaining variation in the thermal optimum, (2) irreversible forms of adaptive plasticity such that immigrants have reduced fitness, or (3) an interaction between fixed genetic differences and plasticity. In general, the patterns of gene flow we observed suggest that local thermal environments represent important ecological filters that can mediate gene flow on relatively fine geographic scales.
机译:在部分隔离的种群中高水平的基因流动会淹没选择并限制局部适应。这一过程被称为“基因沼泽”,可以使种群之间的遗传多样性同质化,并降低物种抵御快速环境变化的能力。我们研究了分布在巴哈马的七个岛屿上的棕蜥蜴(Anolis sagrei)。我们使用微卫星标记来估计岛屿之间的基因流动,然后研究了热性能和岛屿温度之间的相关性。短跑性能的最佳温度与平均岛温度和最大岛温度都相关,而性能广度与温度变化的任何度量均不相关。岛屿之间的基因流随着平均岛屿温度之间的差异增加而降低,即使这些岛屿彼此相邻也是如此。这些数据表明,表型变异是以下两种结果的结果:(1)局部遗传适应,针对移民的选择保持了热最适度的变化;(2)不可逆形式的适应性可塑性,使得移民的适应性降低,或者(3)固定的遗传差异和可塑性。通常,我们观察到的基因流动模式表明,局部热环境代表了重要的生态过滤器,可以在相对精细的地理尺度上介导基因流动。

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