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基因流限制了沿陡峭环境梯度的适应性。

Gene Flow Limits Adaptation along Steep Environmental Gradients.

作者信息

Bachmann Judith C, Jansen van Rensburg Alexandra, Cortazar-Chinarro Maria, Laurila Anssi, Van Buskirk Josh

出版信息

Am Nat. 2020 Mar;195(3):E67-E86. doi: 10.1086/707209. Epub 2020 Jan 15.

Abstract

When environmental variation is spatially continuous, dispersing individuals move among nearby sites with similar habitat conditions. But as an environmental gradient becomes steeper, gene flow may connect more divergent habitats, and this is predicted to reduce the slope of the adaptive cline that evolves. We compared quantitative genetic divergence of frog populations along a 2,000-m elevational gradient in eastern Switzerland (new experimental results) with divergence along a 1,550-km latitudinal gradient in Fennoscandia (previously published results). Both studies found significant countergradient variation in larval development rate (i.e., animals from cold climates developed more rapidly). The cline was weaker with elevation than with latitude. Animals collected on both gradients were genotyped at ∼2,000 single-nucleotide polymorphism markers, revealing that dispersal distance was 30% farther on the latitudinal gradient but 3.9 times greater with respect to environmental conditions on the elevational gradient. A meta-analysis of 19 experimental studies of anuran populations spanning temperature gradients revealed that countergradient variation in larval development, while significant overall, was weaker when measured on steeper gradients. These findings support the prediction that adaptive population divergence is less pronounced, and maladaptation more pervasive, on steep environmental gradients.

摘要

当环境变异在空间上连续时,扩散个体在具有相似栖息地条件的邻近地点之间移动。但随着环境梯度变得更陡峭,基因流动可能会连接差异更大的栖息地,预计这会减小进化出的适应性渐变群的斜率。我们将瑞士东部沿2000米海拔梯度的青蛙种群的数量遗传分化(新的实验结果)与芬诺斯堪的亚沿1550公里纬度梯度的分化(先前发表的结果)进行了比较。两项研究均发现幼体发育率存在显著的反梯度变异(即来自寒冷气候的动物发育更快)。海拔梯度上的渐变群比纬度梯度上的更弱。在两个梯度上采集的动物在约2000个单核苷酸多态性标记上进行了基因分型,结果显示,在纬度梯度上扩散距离远30%,但相对于海拔梯度上的环境条件,扩散距离大3.9倍。对19项跨越温度梯度的无尾目种群实验研究的荟萃分析表明,幼体发育的反梯度变异虽然总体上显著,但在较陡峭的梯度上测量时较弱。这些发现支持了这样的预测,即在陡峭的环境梯度上,适应性种群分化不太明显,而适应不良更为普遍。

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