Department of Botany and Biodiversity Research, University of Vienna, Rennweg 14, 1030 Vienna, Austria.
Vienna Graduate School of Population Genetics, Vienna, Austria.
Philos Trans R Soc Lond B Biol Sci. 2020 Aug 31;375(1806):20190544. doi: 10.1098/rstb.2019.0544. Epub 2020 Jul 13.
Many recent studies have addressed the mechanisms operating during the early stages of speciation, but surprisingly few studies have tested theoretical predictions on the evolution of strong reproductive isolation (RI). To help address this gap, we first undertook a quantitative review of the hybrid zone literature for flowering plants in relation to reproductive barriers. Then, using as an exemplary model group, we analysed genome-wide variation for phylogenetic tree topologies in both early- and late-stage speciation taxa to determine how these patterns may be related to the genomic architecture of RI. Our plant literature survey revealed variation in barrier complexity and an association between barrier number and introgressive gene flow. Focusing on our genome-wide analysis of tree topologies in speciating poplar taxa points to unusually complex genomic architectures of RI, consistent with earlier genome-wide association studies. These architectures appear to facilitate the 'escape' of introgressed genome segments from polygenic barriers even with strong RI, thus affecting their relationships with recombination rates. Placed within the context of the broader literature, our data illustrate how phylogenomic approaches hold great promise for addressing the evolution and temporary breakdown of RI during late stages of speciation. This article is part of the theme issue 'Towards the completion of speciation: the evolution of reproductive isolation beyond the first barriers'.
许多最近的研究都探讨了物种形成早期阶段的作用机制,但令人惊讶的是,很少有研究测试关于强生殖隔离 (RI) 进化的理论预测。为了帮助解决这一差距,我们首先对开花植物的杂交区文献进行了定量综述,以了解生殖障碍。然后,我们使用 作为一个典型的模型组,分析了早期和晚期物种形成分类单元的系统发育树拓扑的全基因组变异,以确定这些模式如何与 RI 的基因组结构相关。我们的植物文献调查显示出障碍复杂性的变化,以及障碍数量与基因渐渗流之间的关联。我们专注于 对杨树分类单元的物种形成过程中的树拓扑的全基因组分析表明,RI 的基因组结构异常复杂,与早期的全基因组关联研究一致。这些结构似乎有助于“逃脱”多基因障碍的渐渗基因组片段,即使存在强 RI,从而影响它们与重组率的关系。从更广泛的文献背景来看,我们的数据说明了系统发生基因组学方法如何在物种形成的后期阶段解决 RI 的进化和暂时破裂具有很大的前景。本文是主题为“迈向物种形成的完成:生殖隔离的进化超越第一道障碍”的一部分。