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Natural Selection Drives Rapid Functional Evolution of Young Drosophila Duplicate Genes

机译:自然选择驱动年轻的果蝇重复基因的快速功能演变

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摘要

Gene duplication is thought to play a major role in phenotypic evolution. Yet the forces involved in the functional divergence of young duplicate genes remain unclear. Here, we use population-genetic inference to elucidate the role of natural selection in the functional evolution of young duplicate genes in Drosophila melanogaster. We find that negative selection acts on young duplicates with ancestral functions, and positive selection on those with novel functions, suggesting that natural selection may determine whether and how young duplicate genes are retained. Moreover, evidence of natural selection is strongest in protein-coding regions and 3′ UTRs of young duplicates, indicating that selection may primarily target encoded proteins and regulatory sequences specific to 3′ UTRs. Further analysis reveals that natural selection acts immediately after duplication and weakens over time, possibly explaining the observed bias toward the acquisition of new functions by young, rather than old, duplicate gene copies. Last, we find an enrichment of testis-related functions in young duplicates that underwent recent positive selection, but not in young duplicates that did not undergo recent positive selection, or in old duplicates that either did or did not undergo recent positive selection. Thus, our findings reveal that natural selection is a key player in the functional evolution of young duplicate genes, acts rapidly and in a region-specific manner, and may underlie the origin of novel testis-specific phenotypes in Drosophila.
机译:基因重复被认为在表型演变中发挥着重要作用。然而,参与年轻重复基因的功能分歧的力仍不清楚。在这里,我们使用人口遗传推断来阐明自然选择在果蝇Melanogaster中的年轻重复基因的功能演变中的作用。我们发现负面选择对年轻副本进行祖先功能,以及对具有新功能的阳性选择,表明自然选择可以确定是否保留了幼年重复基因。此外,在蛋白质编码区和3英尺的年轻复制的缺点中,自然选择的证据是最强的,表明选择可以主要是针对3'UTR特异的靶编码蛋白和调节序列。进一步的分析表明,自然选择在重复后立即行动,随着时间的推移,可能会解释观察到的偏见,以便通过年轻,而不是旧的重复基因拷贝获取新功能。最后,我们发现在年轻复制品中的睾丸相关功能的丰富,近期的肯定选择,但不是在近期没有接受近期选择的年轻复制品,或者在旧的复制品中,无论是近期的正面选择。因此,我们的研究结果表明,自然选择是年轻重复基因的功能演化中的关键球员,迅速和以区域特异性方式起作用,并且可以利于果蝇中新型睾丸特异性表型的起源。

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