Modern human DNA analyses with special reference to the inner dual-structure model of Yaponesian

IF 1.9 4区 社会学 Q3 EVOLUTIONARY BIOLOGY
T. Jinam, Y. Kawai, N. Saitou
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引用次数: 7

Abstract

Previous studies suggested two major migration events during the Jomon and Yayoi periods that affected the genetic diversity of modern Japanese (Yaponesians). We explored the possibility of a three-wave migration model by examining three datasets of modern human DNA: (1) whole mitochondrial (mt) DNA genomes of 1642 Yaponesians; (2) mtDNA haplogroup frequencies of 59105 Yaponesians from 47 prefectures; and (3) genome-wide SNP data of two Yaponesians (Ainu, Okinawa) and whole-genome sequence data of Yamato individuals, the Funadomari Jomon F23 individual, and three East Asian populations (Korean, northern Chinese, and southern Chinese). Past population size change was estimated based on dataset 1, and we clearly observed a steep population increase after the Yayoi period. Principal-component analysis and phylogenetic network analysis were applied to dataset 2, and we confirmed the pattern consistent with our model. An admixture program was used on dataset 3, and we found that the two- and three-layer migration models are both compatible with these SNP data. Taken together, these three datasets provide support for our three-wave, ‘inner dual-structure’ model.
现代人类DNA分析——特别是雅波内二元结构模型
先前的研究表明,绳文和弥生时期发生了两次主要的迁徙事件,影响了现代日本人的遗传多样性。我们通过检查现代人类DNA的三个数据集来探索三波迁移模型的可能性:(1)1642名亚波人的全线粒体(mt)DNA基因组;(2) 来自47个都道府县的59105名雅坡那人mtDNA单倍群频率;和(3)两个亚波人(阿伊努人、冲绳人)的全基因组SNP数据和大和人、伏那多麻绳文F23人和三个东亚群体(朝鲜人、中国北方人和中国南方人)的整个基因组序列数据。过去的人口规模变化是根据数据集1估计的,我们清楚地观察到弥生时期后人口急剧增加。将主成分分析和系统发育网络分析应用于数据集2,我们证实了该模式与我们的模型一致。在数据集3上使用了一个混合程序,我们发现两层和三层迁移模型都与这些SNP数据兼容。总之,这三个数据集为我们的三波“内部双重结构”模型提供了支持。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Anthropological Science
Anthropological Science 生物-进化生物学
CiteScore
1.50
自引率
0.00%
发文量
7
审稿时长
>12 weeks
期刊介绍: Anthropological Science (AS) publishes research papers, review articles, brief communications, and material reports in physical anthropology and related disciplines. The scope of AS encompasses all aspects of human and primate evolution and variation. We welcome research papers in molecular and morphological variation and evolution, genetics and population biology, growth and development, biomechanics, anatomy and physiology, ecology and behavioral biology, osteoarcheology and prehistory, and other disciplines relating to the understanding of human evolution and the biology of the human condition.
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