Department of Ecology and Evolutionary Biology, Cornell University, Ithaca, New York, 14853.
Corn Insects and Crop Genetics Research Unit, USDA-ARS, Ames, Iowa, 50011.
Evolution. 2022 May;76(5):985-1002. doi: 10.1111/evo.14466. Epub 2022 Mar 26.
Theory predicts that when different barriers to gene flow become coincident, their joint effects enhance reproductive isolation and genomic divergence beyond their individual effects, but empirical tests of this "coupling" hypothesis are rare. Here, we analyze patterns of gene exchange among populations of European corn borer moths that vary in the number of acting barriers, allowing for comparisons of genomic variation when barrier traits or loci are in coincident or independent states. We find that divergence is mainly restricted to barrier loci when populations differ by a single barrier, whereas the coincidence of temporal and behavioral barriers is associated with divergence of two chromosomes harboring barrier loci. Furthermore, differentiation at temporal barrier loci increases in the presence of behavioral divergence and differentiation at behavioral barrier loci increases in the presence of temporal divergence. Our results demonstrate how the joint action of coincident barrier effects leads to levels of genomic differentiation that far exceed those of single barriers acting alone, consistent with theory arguing that coupling allows indirect selection to combine with direct selection and thereby lead to a stronger overall barrier to gene flow. Thus, the state of barriers-independent or coupled-strongly influences the accumulation of genomic differentiation.
理论预测,当不同的基因流动障碍同时出现时,它们的共同作用会增强生殖隔离和基因组分化,超过它们各自的作用,但这种“耦合”假说的实证检验很少。在这里,我们分析了欧洲玉米螟种群之间的基因交换模式,这些种群在作用障碍的数量上存在差异,允许比较当障碍特征或基因座处于一致或独立状态时的基因组变异。我们发现,当种群之间存在单一障碍时,分化主要局限于障碍基因座,而时间和行为障碍的同时出现与两个含有障碍基因座的染色体的分化有关。此外,在行为分化存在的情况下,时间障碍基因座的分化增加,在时间分化存在的情况下,行为障碍基因座的分化增加。我们的结果表明,共同作用的障碍效应如何导致基因组分化的水平远远超过单一障碍单独作用的水平,这与理论一致,即耦合允许间接选择与直接选择相结合,从而导致更强的整体基因流动障碍。因此,障碍的状态——独立或耦合——强烈影响基因组分化的积累。