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在菘蓝属植物的物种形成过程中,漂变、基因流和选择的动态。

Dynamics of drift, gene flow, and selection during speciation in Silene.

机构信息

Department of Plant Sciences, University of Oxford, Oxford, OX1 3RB, United Kingdom.

出版信息

Evolution. 2012 May;66(5):1447-58. doi: 10.1111/j.1558-5646.2011.01529.x. Epub 2012 Jan 17.

Abstract

The mechanics of speciation with gene flow are still unclear. Disparity among genes in population differentiation (F(ST)) between diverging species is often interpreted as evidence for semipermeable species boundaries, with selection preventing "key" genes from introgressing despite ongoing gene flow. However, F(ST) can remain high before it reaches equilibrium between the lineage sorting of species divergence and the homogenizing effects of gene flow (via secondary contact). Thus, when interpreting F(ST), the dynamics of drift, gene flow, and selection need to be taken into account. We illustrate this view with a multigenic analyses of gene flow and selection in three closely related Silene species, S. latifolia, S. dioica, and S. diclinis. We report that although S. diclinis appears to have evolved in allopatry, isolation with (bidirectional) gene flow between S. latifolia and S. dioica is likely, perhaps as a result of parapatric speciation followed by more extensive sympatry. Interestingly, we detected the signatures of apparently independent instances of positive selection at the same locus in S. latifolia and S. dioica. Despite gene flow between the species, the adaptive alleles have not crossed the species boundary, suggesting that this gene has independently undergone species-specific (diversifying or parallel) selection.

摘要

基因流条件下物种形成的机制仍不清楚。在正在分化的物种之间,种群分化(F(ST))中基因的差异通常被解释为半渗透物种边界的证据,尽管存在基因流,但选择阻止了“关键”基因的渗入。然而,在物种分化的谱系排序与基因流(通过二次接触)的同质化效应达到平衡之前,F(ST)可能仍然很高。因此,在解释 F(ST)时,需要考虑漂变、基因流和选择的动态。我们用三个密切相关的矢车菊属物种(S. latifolia、S. dioica 和 S. diclinis)的基因流和选择的多基因分析来说明这一观点。我们报告说,尽管 S. diclinis 似乎是在异地发生进化的,但 S. latifolia 和 S. dioica 之间可能存在(双向)基因流的隔离,这可能是由于邻域物种形成后更广泛的同域发生。有趣的是,我们在 S. latifolia 和 S. dioica 中的同一个基因座上检测到了明显独立的正选择的特征。尽管种间存在基因流,但适应性等位基因没有跨越种间边界,这表明该基因独立地经历了种间特异性(多样化或平行)选择。

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