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Repression and loss of gene expression outpaces activation and gain in recently duplicated fly genes

机译:基因表达的抑制和丧失超过了最近复制的果蝇基因的激活和获得

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摘要

Evolutionists widely acknowledge that regulatory genetic changes are of paramount importance for morphological and genomic evolution. Nevertheless, mechanistic complexity and a paucity of data from nonmodel organisms have prevented testing and quantifying universal hypotheses about the macroevolution of gene regulatory mechanisms. Here, we use a phylogenetic approach to provide a quantitative demonstration of a previously hypothesized trend, whereby the evolutionary rate of repression or loss of gene expression regions is significantly higher than the rate of activation or gain. Such a trend is expected based on case studies in regulatory evolution and under models of molecular evolution where duplicated genes lose duplicated expression patterns in a complementary fashion. The trend is important because repression of gene expression is a hypothesized mechanism for the origin of evolutionarily novel morphologies through specialization.
机译:进化论者广泛承认,调节性遗传变化对于形态和基因组进化至关重要。然而,机制复杂性和来自非模型生物的数据的匮乏阻止了对基因调控机制的宏观进化的普遍假设的检验和量化。在这里,我们使用系统发育方法对先前假设的趋势进行定量证明,从而抑制或降低基因表达区域的进化速率明显高于激活或增益的速率。根据监管发展的案例研究和分子进化模型,其中复制的基因以互补的方式失去复制的表达模式,这种趋势是可以预期的。这种趋势很重要,因为基因表达的抑制是通过专门化来进化新形态的起源的一种推测机制。

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