Xie Duo, Chen Guangji, Meng Xiaoyu, Wang Haotian, Bi Xupeng, Fang Miaoquan, Yang Chentao, Zhou Yang, Long Erping, Feng Shaohong
College of Life Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
BGI-Shenzhen, Shenzhen 518083, China.
Animals (Basel). 2021 Nov 15;11(11):3264. doi: 10.3390/ani11113264.
Alleles that cause advantageous phenotypes with positive selection contribute to adaptive evolution. Investigations of positive selection in protein-coding genes rely on the accuracy of orthology, models, the quality of assemblies, and alignment. Here, based on the latest genome assemblies and gene annotations, we present a comparative analysis on positive selection in four great ape species and identify 211 high-confidence positively selected genes (PSGs). Even the differences in population size among these closely related great apes have resulted in differences in their ability to remove deleterious alleles and to adapt to changing environments, we found that they experienced comparable numbers of positive selection. We also uncovered that more than half of multigene families exhibited signals of positive selection, suggesting that imbalanced positive selection resulted in the functional divergence of duplicates. Moreover, at the expression level, although positive selection led to a more non-uniform pattern across tissues, the correlation between positive selection and expression patterns is diverse. Overall, this updated list of PSGs is of great significance for the further study of the phenotypic evolution in great apes.
导致具有正选择优势表型的等位基因有助于适应性进化。对蛋白质编码基因中正选择的研究依赖于直系同源性、模型的准确性、组装质量和比对。在此,基于最新的基因组组装和基因注释,我们对四种类人猿物种的正选择进行了比较分析,并鉴定出211个高可信度的正选择基因(PSG)。尽管这些密切相关的类人猿在种群大小上存在差异,导致它们在清除有害等位基因和适应不断变化的环境的能力上有所不同,但我们发现它们经历的正选择数量相当。我们还发现,超过一半的多基因家族表现出正选择信号,这表明不平衡的正选择导致了重复基因的功能分化。此外,在表达水平上,尽管正选择导致跨组织的模式更加不均匀,但正选择与表达模式之间的相关性是多样的。总体而言,这个更新的PSG列表对进一步研究类人猿的表型进化具有重要意义。