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Detecting lineage-specific adaptive evolution of brain-expressed genes in human using rhesus macaque as outgroup.

机译:使用恒河猴作为外群检测人脑表达基因的谱系特异性适应性进化。

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摘要

Comparative genetic analysis between human and chimpanzee may detect genetic divergences responsible for human-specific characteristics. Previous studies have identified a series of genes that potentially underwent Darwinian positive selection during human evolution. However, without a closely related species as outgroup, it is difficult to identify human-lineage-specific changes, which is critical in delineating the biological uniqueness of humans. In this study, we conducted phylogeny-based analyses of 2633 human brain-expressed genes using rhesus macaque as the outgroup. We identified 47 candidate genes showing strong evidence of positive selection in the human lineage. Genes with maximal expression in the brain showed a higher evolutionary rate in human than in chimpanzee. We observed that many immune-defense-related genes were under strong positive selection, and this trend was more prominent in chimpanzee than in human. We also demonstrated that rhesus macaque performed much better than mouse as an outgroup in identifying lineage-specific selection in humans.
机译:人类和黑猩猩之间的比较遗传分析可能会发现造成人类特定特征的遗传差异。先前的研究已经确定了在人类进化过程中可能经历达尔文正选择的一系列基因。但是,如果没有紧密相关的物种作为外群,则很难确定特定于人类谱系的变化,这对于描述人类的生物学独特性至关重要。在这项研究中,我们使用恒河猴作为外群,对2633个人类大脑表达的基因进行了系统发育分析。我们鉴定了47个候选基因,这些基因显示了人类谱系中阳性选择的有力证据。在大脑中表达最高的基因在人类中的进化速率要高于黑猩猩。我们观察到许多与免疫防御相关的基因都处于强阳性选择之下,并且这种趋势在黑猩猩中比在人类中更为突出。我们还证明了恒河猴在识别人类谱系特异性选择方面的表现要好于小鼠。

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