Extensive ethnolinguistic diversity at the crossroads of North China and South Siberia reflects multiple sources of genetic diversity

中国 地理 遗传多样性 人口 高原(数学) 单倍型 创始人效应 进化生物学 民族学 生物 考古 等位基因 人口学 历史 遗传学 基因 数学分析 数学 社会学
作者
Guanglin He,Mengge Wang,Xing Zou,Hui‐Yuan Yeh,Changhui Liu,Chao-Lien Liu,Gang Chen,Chuan‐Chao Wang
出处
期刊:Journal of Systematics and Evolution [Wiley]
卷期号:61 (1): 230-250 被引量:25
标识
DOI:10.1111/jse.12827
摘要

Abstract North China and South Siberia, populated by Altaic‐ and Sino‐Tibetan‐speaking populations, possess extensive ethnolinguistic diversity and serve as the crossroads for the initial peopling of America and western–eastern transcontinental communication. However, the population genetic structure and admixture history of northern East Asians remain poorly understood due to a lack of genome‐wide data, especially for Mongolic‐speaking people in China. We genotyped genome‐wide single nucleotide polymorphisms for 510 individuals from 38 Mongolic, Tungusic, and Sinitic‐speaking populations. We first explored the shared alleles and haplotypes within the studied groups. We then merged with 3508 published modern and ancient Eurasian individuals to reconstruct the deep evolutionary and natural selection history of northern East Asians. We identified genetic substructures within Altaic‐speaking populations: Western Turkic people harbored more western Eurasian‐related ancestry; Northern Mongolic people in Siberia and eastern Tungusic people in Amur River Basin (ARB) possessed a majority of Neolithic ARB related ancestry; Southern Mongolic people in China possessed apparent genetic influence from Neolithic Yellow River Basin (YRB) farmers. Additionally, we found the differentiated admixture history between western and eastern Mongolians and geographically close Northeast Hans: the former received a genetic impact from western Eurasians, and the latter retained the primary Neolithic YRB and ARB ancestry. Moreover, we demonstrated that Kalmyk people from the northern Caucasus Mountains possessed a strong genetic affinity with Neolithic Mongolian Plateau (MP) people, supporting the hypothesis of their eastern Eurasian origin and long‐distance migration history. We also illuminated that historical pastoral empires in the MP contributed considerably to the gene pool of northern Mongolic people but rarely to the southern ones. We finally found natural selection signatures in Mongolians associated with alcohol metabolism. Our results demonstrated that the Neolithic ancestral sources from the MP or ARB played an important role in spreading Altaic populations and languages. The observed multisources of genetic diversity contributed significantly to the extensive ethnolinguistic diversity in northern East Asia.
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