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The contribution of gene movement to the 'two rules of speciation'

机译:基因运动对“物种形成的两个规则”的贡献

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The two " rules of speciation" -the Large X-effect and Haldane's rule-hold throughout the animal kingdom, but the underlying genetic mechanisms that cause them are still unclear. Two predominant explanations-the " dominance theory" and faster male evolution-both have some empirical support, suggesting that the genetic basis of these rules is likely multifarious. We revisit one historical explanation for these rules, based on dysfunctional genetic interactions involving genes recently moved between chromosomes. We suggest that gene movement specifically off or onto the X chromosome is another mechanism that could contribute to the two rules, especially as X chromosome movements can be subject to unique sex-specific and sex chromosome specific consequences in hybrids. Our hypothesis is supported by patterns emerging from comparative genomic data, including a strong bias in interchromosomal gene movements involving the X and an overrepresentation of male reproductive functions among chromosomally relocated genes. In addition, our model indicates that the contribution of gene movement to the two rules in any specific group will depend upon key developmental and reproductive parameters that are taxon specific. We provide several testable predictions that can be used to assess the importance of gene movement as a contributor to these rules in the future.
机译:两种“物种形成规则”-大X效应和霍尔丹规则贯穿整个动物界,但引起它们的潜在遗传机制仍不清楚。两种主要的解释-“优势理论”和较快的男性进化-都有一些经验支持,表明这些规则的遗传基础可能是多种多样的。我们基于涉及染色体之间最近移动的基因的功能失调的遗传相互作用,重新审视这些规则的历史解释。我们建议基因运动特别是在X染色体外或在X染色体上是另一种机制,可能有助于这两个规则,特别是因为X染色体运动在杂种中可能会受到独特的性别特异性和性染色体特异性影响。我们的假设得到了来自比较基因组数据的模式的支持,其中包括涉及X的染色体间基因运动的强烈偏见以及染色体重定位基因中男性生殖功能的过度表达。此外,我们的模型表明,基因运动对任何特定组中两个规则的贡献将取决于分类群特异性的关键发育和生殖参数。我们提供了一些可检验的预测,这些预测可用于评估基因移动作为将来这些规则的贡献者的重要性。

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