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在人类群体中骨形成蛋白 3(BMP3)基因存在正选择的证据。

Evidence for positive selection on the Osteogenin (BMP3) gene in human populations.

机构信息

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

出版信息

PLoS One. 2010 Jun 4;5(6):e10959. doi: 10.1371/journal.pone.0010959.

Abstract

BACKGROUND

Human skeletal system has evolved rapidly since the dispersal of modern humans from Africa, potentially driven by selection and adaptation. Osteogenin (BMP3) plays an important role in skeletal development and bone osteogenesis as an antagonist of the osteogenic bone morphogenetic proteins, and negatively regulates bone mineral density.

METHODOLOGY/PRINCIPAL FINDINGS: Here, we resequenced the BMP3 gene from individuals in four geographically separated modern human populations. Features supportive of positive selection in the BMP3 gene were found including the presence of an excess of nonsynonymous mutations in modern humans, and a significantly lower genetic diversity that deviates from neutrality. The prevalent haplotypes of the first exon region in Europeans demonstrated features of long-range haplotype homogeneity. In contrast with findings in European, the derived allele SNP Arg192Gln shows higher extended haplotype homozygosity in East Asian. The worldwide allele frequency distribution of SNP shows not only a high-derived allele frequency in Asians, but also in Americans, which is suggestive of functional adaptation.

CONCLUSIONS/SIGNIFICANCE: In conclusion, we provide evidence for recent positive selection operating upon a crucial gene in skeletal development, which may provide new insight into the evolution of the skeletal system and bone development.

摘要

背景

自从现代人从非洲扩散以来,人类骨骼系统迅速进化,这可能是由选择和适应驱动的。骨成型蛋白 3(BMP3)作为成骨骨形态发生蛋白的拮抗剂,在骨骼发育和骨生成中发挥重要作用,并负调控骨矿物质密度。

方法/主要发现:在这里,我们对来自四个地理位置分离的现代人类群体的个体中的 BMP3 基因进行了重测序。支持 BMP3 基因中存在正选择的特征包括现代人中存在过多的非同义突变,以及显著低于偏离中性的遗传多样性。欧洲人第一外显子区域的常见单倍型表现出长程单倍型同质性的特征。与欧洲人的发现相反,衍生等位基因 SNP Arg192Gln 在东亚表现出更高的扩展单倍型纯合性。SNP 的全球等位基因频率分布不仅在亚洲,而且在美国,都显示出高衍生等位基因频率,这表明存在功能适应。

结论/意义:总之,我们提供了骨骼发育关键基因最近发生正选择的证据,这可能为骨骼系统和骨发育的进化提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef5d/2881034/1a3bbe6966e9/pone.0010959.g001.jpg

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