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检测热带雨林蜥蜴中系统发育分歧的假说。

Testing hypotheses for genealogical discordance in a rainforest lizard.

机构信息

Museum of Vertebrate Zoology, University of California, Berkeley, CA 94720-3160, USA.

出版信息

Mol Ecol. 2012 Oct;21(20):5059-72. doi: 10.1111/j.1365-294X.2012.05747.x. Epub 2012 Sep 18.

Abstract

Genealogical discordance, or when different genes tell distinct stories although they evolved under a shared history, often emerges from either coalescent stochasticity or introgression. In this study, we present a strong case of mito-nuclear genealogical discordance in the Australian rainforest lizard species complex of Saproscincus basiliscus and S. lewisi. One of the lineages that comprises this complex, the Southern S. basiliscus lineage, is deeply divergent at the mitochondrial genome but shows markedly less divergence at the nuclear genome. By placing our results in a comparative context and reconstructing the lineages' demography via multilocus and coalescent-based approximate Bayesian computation methods, we test hypotheses for how coalescent variance and introgression contribute to this pattern. These analyses suggest that the observed genealogical discordance likely results from introgression. Further, to generate such strong discordance, introgression probably acted in concert with other factors promoting asymmetric gene flow between the mitochondrial and nuclear genomes, such as selection or sex-biased dispersal. This study offers a framework for testing sources of genealogical discordance and suggests that historical introgression can be an important force shaping the genetic diversity of species and their populations.

摘要

系统发生不和谐,即尽管不同基因在共同的历史中进化,但它们讲述了不同的故事,这种现象通常源于融合随机性或基因渗入。在这项研究中,我们提出了一个强有力的证据,证明了澳大利亚雨林蜥蜴物种复合体中的丝裂核系发生不和谐现象,该复合体包括 Saproscincus basiliscus 和 S. lewisi 两个物种。其中一个包含这个复合体的谱系,即南部 S. basiliscus 谱系,在线粒体基因组上存在很深的分歧,但在核基因组上的分歧明显较少。通过将我们的结果置于比较背景下,并通过多基因和基于融合的近似贝叶斯计算方法重建谱系的种群动态,我们检验了融合方差和基因渗入如何影响这种模式的假说。这些分析表明,观察到的系统发生不和谐可能是由于基因渗入所致。此外,为了产生如此强烈的不和谐,基因渗入可能与其他促进线粒体和核基因组之间非对称基因流动的因素协同作用,例如选择或性别偏向的扩散。本研究为检验系统发生不和谐的来源提供了一个框架,并表明历史上的基因渗入可能是塑造物种及其种群遗传多样性的重要力量。

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