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Does Speciation between Arabidopsis halleri and Arabidopsis lyrata Coincide with Major Changes in a Molecular Target of Adaptation?

机译:拟南芥和拟南芥的物种形成是否与适应性分子目标发生重大变化?

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摘要

Ever since Darwin proposed natural selection as the driving force for the origin of species, the role of adaptive processes in speciation has remained controversial. In particular, a largely unsolved issue is whether key divergent ecological adaptations are associated with speciation events or evolve secondarily within sister species after the split. The plant Arabidopsis halleri is one of the few species able to colonize soils highly enriched in zinc and cadmium. Recent advances in the molecular genetics of adaptation show that the physiology of this derived ecological trait involves copy number expansions of the AhHMA4 gene, for which orthologs are found in single copy in the closely related A. lyrata and the outgroup A. thaliana. To gain insight into the speciation process, we ask whether adaptive molecular changes at this candidate gene were contemporary with important stages of the speciation process. We first inferred the scenario and timescale of speciation by comparing patterns of variation across the genomic backgrounds of A. halleri and A. lyrata. Then, we estimated the timing of the first duplication of AhHMA4 in A. halleri. Our analysis suggests that the historical split between the two species closely coincides with major changes in this molecular target of adaptation in the A. halleri lineage. These results clearly indicate that these changes evolved in A. halleri well before industrial activities fostered the spread of Zn- and Cd-polluted areas, and suggest that adaptive processes related to heavy-metal homeostasis played a major role in the speciation process.
机译:自从达尔文提出自然选择作为物种起源的驱动力以来,适应性过程在物种形成中的作用一直存在争议。特别是,一个主要尚未解决的问题是关键的不同生态适应性是否与物种形成事件相关联或在分裂后在其姊妹物种中次生进化。拟南芥植物是少数能够在高度富含锌和镉的土壤上定殖的物种之一。适应性分子遗传学的最新进展表明,这种衍生的生态特性的生理学涉及AhHMA4基因的拷贝数扩展,为此,在密切相关的拟南芥和拟南芥的单拷贝中发现直系同源物。为了深入了解物种形成过程,我们询问该候选基因的适应性分子变化是否在物种形成过程的重要阶段处于当代状态。我们首先通过比较哈雷木霉和野草的基因组背景的变异模式来推断物种形成的情况和时间尺度。然后,我们估计了在A. halleri中第一次复制AhHMA4的时间。我们的分析表明,这两个物种之间的历史分裂与哈氏曲霉谱系中适应这一分子靶标的重大变化非常吻合。这些结果清楚地表明,这些变化在工业活动促进锌和镉污染区域的扩散之前就已经在哈氏曲霉中进化,并且表明与重金属稳态有关的适应性过程在物种形成过程中起着重要作用。

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