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Evidence for widespread adaptive evolution of gene expression in budding yeast

机译:萌芽酵母中基因表达广泛适应性进化的证据

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摘要

Changes in gene expression have been proposed to underlie many, or even most, adaptive differences between species. Despite the increasing acceptance of this view, only a handful of cases of adaptive gene expression evolution have been demonstrated. To address this discrepancy, we introduce a simple test for lineage-specific selection on gene expression. Applying the test to genome-wide gene expression data from the budding yeast Saccharomyces cerevisiae, we find that hundreds of gene expression levels have been subject to lineage-specific selection. Comparing these findings with independent population genetic evidence of selective sweeps suggests that this lineage-specific selection has resulted in recent sweeps at over a hundred genes, most of which led to increased transcript levels. Examination of the implicated genes revealed a specific biochemical pathway—ergosterol biosynthesis—where the expression of multiple genes has been subject to selection for reduced levels. In sum, these results suggest that adaptive evolution of gene expression is common in yeast, that regulatory adaptation can occur at the level of entire pathways, and that similar genome-wide scans may be possible in other species, including humans.
机译:已经提出基因表达的变化是物种之间许多乃至大多数适应性差异的基础。尽管越来越多地接受这种观点,但仅证明了少数几个自适应基因表达进化的情况。为了解决这种差异,我们针对基因表达的谱系特异性选择引入了一个简单的测试。将测试应用于来自发芽酵母酿酒酵母的全基因组基因表达数据中,我们发现数百种基因表达水平已受到谱系特异性选择的影响。将这些发现与选择性扫描的独立群体遗传学证据进行比较表明,这种特定于谱系的选择已导致最近对100多个基因进行了扫描,其中大多数导致转录水平的提高。对涉及基因的检查揭示了一种特定的生化途径-麦角固醇的生物合成-其中多个基因的表达已被选择降低水平。总而言之,这些结果表明,基因表达的适应性进化在酵母中很常见,调节适应性可以发生在整个途径的水平,并且在包括人类在内的其他物种中也可能进行类似的全基因组扫描。

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