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基因树分歧可以随时间产生趋异收敛程度降低的模式。

Gene Tree Discordance Can Generate Patterns of Diminishing Convergence over Time.

机构信息

Department of Biology, Indiana University, Bloomington, IN

Department of Life Science, Research Center for Biomolecules and Biosystems, Chung-Ang University, Seoul, Republic of Korea

出版信息

Mol Biol Evol. 2016 Dec;33(12):3299-3307. doi: 10.1093/molbev/msw197. Epub 2016 Sep 15.

DOI:10.1093/molbev/msw197
PMID:27634870
Abstract

Phenotypic convergence is an exciting outcome of adaptive evolution, occurring when different species find similar solutions to the same problem. Unraveling the molecular basis of convergence provides a way to link genotype to adaptive phenotypes, but can also shed light on the extent to which molecular evolution is repeatable and predictable. Many recent genome-wide studies have uncovered a striking pattern of diminishing convergence over time, ascribing this pattern to the presence of intramolecular epistatic interactions. Here, we consider gene tree discordance as an alternative cause of changes in convergence levels over time in a primate dataset. We demonstrate that gene tree discordance can produce patterns of diminishing convergence by itself, and that controlling for discordance as a cause of apparent convergence makes the pattern disappear. We also show that synonymous substitutions, where neither selection nor epistasis should be prevalent, have the same diminishing pattern of molecular convergence in primates. Finally, we demonstrate that even in situations where biological discordance is not possible, discordance due to errors in species tree inference can drive similar patterns. Though intramolecular epistasis could in principle create a pattern of declining convergence over time, our results suggest a possible alternative explanation for this widespread pattern. These results contribute to a growing appreciation not just of the presence of gene tree discordance, but of the unpredictable effects this discordance can have on analyses of molecular evolution.

摘要

表型趋同是适应进化的一个令人兴奋的结果,当不同的物种找到解决同一问题的相似解决方案时就会发生。揭示趋同的分子基础为将基因型与适应性表型联系起来提供了一种方法,但也可以揭示分子进化在多大程度上是可重复和可预测的。最近的许多全基因组研究揭示了一个惊人的模式,即随着时间的推移,趋同程度逐渐减弱,将这种模式归因于分子内上位相互作用的存在。在这里,我们考虑基因树分歧作为灵长类数据集随时间变化的趋同水平变化的另一个原因。我们证明,基因树分歧本身就可以产生趋同程度逐渐减弱的模式,并且控制分歧作为明显趋同的原因会使该模式消失。我们还表明,在同义替换中,选择和上位作用都不应该普遍存在,在灵长类动物中也具有相同的分子趋同程度逐渐减弱的模式。最后,我们证明即使在不可能存在生物学分歧的情况下,由于物种树推断中的错误导致的分歧也可以产生类似的模式。尽管分子内上位作用原则上可以在随时间推移的过程中产生趋同程度逐渐减弱的模式,但我们的结果表明,对于这种广泛存在的模式,可能存在替代解释。这些结果不仅增加了对基因树分歧存在的认识,而且增加了对这种分歧对分子进化分析的不可预测影响的认识。

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