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系统发生基因组分析为灵长类动物的进化提供了新视角。

Phylogenomic analyses provide insights into primate evolution.

机构信息

State Key Laboratory of Genetic Resources and Evolution, Kunming Natural History Museum of Zoology, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming 650201, China.

Center of Evolutionary & Organismal Biology, and Women's Hospital at Zhejiang University School of Medicine, Hangzhou 310058, China.

出版信息

Science. 2023 Jun 2;380(6648):913-924. doi: 10.1126/science.abn6919. Epub 2023 Jun 1.

Abstract

Comparative analysis of primate genomes within a phylogenetic context is essential for understanding the evolution of human genetic architecture and primate diversity. We present such a study of 50 primate species spanning 38 genera and 14 families, including 27 genomes first reported here, with many from previously less well represented groups, the New World monkeys and the Strepsirrhini. Our analyses reveal heterogeneous rates of genomic rearrangement and gene evolution across primate lineages. Thousands of genes under positive selection in different lineages play roles in the nervous, skeletal, and digestive systems and may have contributed to primate innovations and adaptations. Our study reveals that many key genomic innovations occurred in the Simiiformes ancestral node and may have had an impact on the adaptive radiation of the Simiiformes and human evolution.

摘要

在系统发育背景下对灵长类动物基因组进行比较分析对于理解人类遗传结构和灵长类动物多样性的进化至关重要。我们对跨越 38 属和 14 科的 50 种灵长类动物进行了这样的研究,其中包括 27 个首次在这里报告的基因组,其中许多来自以前代表性较少的群体,即新世界猴和贫齿目。我们的分析揭示了灵长类动物谱系中基因组重排和基因进化的异质性速率。不同谱系中数千个受正选择作用的基因在神经系统、骨骼和消化系统中发挥作用,可能为灵长类动物的创新和适应做出了贡献。我们的研究表明,许多关键的基因组创新发生在灵长类动物的祖先节点,可能对灵长类动物的辐射适应和人类进化产生了影响。

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