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Molecular Mechanisms and Evolutionary Processes Contributing to Accelerated Divergence of Gene Expression on the Drosophila X Chromosome

机译:导致果蝇X染色体上基因表达加速分化的分子机制和进化过程

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摘要

In species with a heterogametic sex, population genetics theory predicts that DNA sequences on the X chromosome can evolve faster than comparable sequences on autosomes. Both neutral and nonneutral evolutionary processes can generate this pattern. Complex traits like gene expression are not predicted to have accelerated evolution by these theories, yet a "faster-X" pattern of gene expression divergence has recently been reported for both Drosophila and mammals. Here, we test the hypothesis that accelerated adaptive evolution of cis-regulatory sequences on the X chromosome is responsible for this pattern by comparing the relative contributions of cis- and trans-regulatory changes to patterns of faster-X expression divergence observed between strains and species of Drosophila with a range of divergence times. We find support for this hypothesis, especially amongmale-biased genes, when comparing different species. However, we also find evidence that trans-regulatory differences contribute to a faster-X pattern of expression divergence both within and between species. This contribution is surprising because trans-acting regulators of X-linked genes are generally assumed to be randomly distributed throughout the genome. We found, however, that X-linked transcription factors appear to preferentially regulate expression of X-linked genes, providing a potential mechanistic explanation for this result. The contribution of trans-regulatory variation to faster-X expression divergence was larger within than between species, suggesting that it is more likely to result from neutral processes than positive selection. These data show how accelerated evolution of both coding and noncoding sequences on the X chromosome can lead to accelerated expression divergence on the X chromosome relative to autosomes.
机译:在具有异配子性别的物种中,群体遗传学理论预测X染色体上的DNA序列可以比常染色体上的可比序列进化得更快。中性和非中性进化过程都可以产生这种模式。这些理论预测,像基因表达这样的复杂性状不会加速进化,但最近已经报道了果蝇和哺乳动物的基因表达差异的“更快X”模式。在这里,我们通过比较顺式和反式调节变化对果蝇菌株和物种之间观察到的更快 X 表达差异模式的相对贡献,验证了 X 染色体上顺式调节序列的加速适应性进化是造成这种模式的假设。在比较不同物种时,我们发现支持这一假设,尤其是男性偏向基因。然而,我们也发现有证据表明,跨调控差异有助于物种内部和物种之间的更快 X 表达差异模式。这一贡献是令人惊讶的,因为X连锁基因的反式调节因子通常被认为是随机分布在整个基因组中的。然而,我们发现X连锁转录因子似乎优先调节X连锁基因的表达,为这一结果提供了潜在的机制解释。跨调控变异对 faster-X 表达差异的贡献在物种内大于物种间,表明它更可能是由中性过程而不是正选择引起的。这些数据显示,X染色体上编码和非编码序列的加速进化如何导致X染色体相对于常染色体的加速表达分化。

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