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ADAPTIVE POPULATION DIVERGENCE IN CRYPTIC COLOR-PATTERN FOLLOWING A REDUCTION IN GENE FLOW

机译:基因流减少后的隐色模式自适应种群扩散

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Adaptive population divergence is often driven by divergent natural selection, but can be constrained by the homogenizing effect of gene flow between populations. Indeed, a common pattern in nature is an inverse correlation between the degree of adaptive phenotypic divergence between populations and levels of gene flow between populations. However, there is essentially no experimental data on whether this correlation arises because gene flow constrains adaptation or, conversely, because adaptive divergence causes barriers to gene flow (ecological speciation). Here, I report increased adaptive divergence in cryptic color pattern between a pair of Timema insect populations following an experimental reduction in between-population gene flow. The reduction in gene flow arose due to a natural experiment, and thus was not replicated at a second site. However, temporal replication of the trends among six generations of data, coupled with a lack of increased adaptive divergence for two other population pairs where gene flow was not manipulated (i.e., control sites), argues that the results did not arise by chance. Estimates of dispersal ability and population size further support reduced gene flow, rather than increased genetic drift, as the cause of divergence. Thus, the findings provide experimental evidence that gene flow constrains adaptation in nature.
机译:适应性种群差异通常是由自然选择的差异驱动的,但可能受到种群之间基因流的均质化作用的限制。实际上,自然界中的一种常见模式是种群之间的适​​应性表型差异程度与种群之间的基因流水平之间呈负相关。但是,基本上没有关于这种相关性是否出现的实验数据,这是因为基因流限制了适应性,或者相反,因为适应性分歧导致了基因流的障碍(生态物种形成)。在这里,我报道了种群间基因流的实验性减少之后,一对Timema昆虫种群之间的隐秘颜色模式的适应性差异有所增加。基因流量的减少归因于自然实验,因此未在第二个位点复制。然而,趋势在六代数据之间的时间复制,再加上缺乏其他两个未操纵基因流(即控制位点)的种群对的适应性差异,这表明结果并非偶然。分散能力和种群规模的估计进一步支持减少基因流,而不是增加遗传漂移,这是造成分歧的原因。因此,这些发现提供了实验证据,证明基因流动限制了自然界的适应。

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