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关于两篇附件的讨论正在热战中啊!期待ing。。
http://comonca.org.cn/lh/Documents/A49S1.pdf
http://comonca.org.cn/lh/Documents/A49S1.xls
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91[A50] Li Hui, Cho Kelly, Kidd Judith R, Kidd Kenneth K (2009) Genetic Landscape of Eurasia Viewed from Large Allele Frequency Differences. The American Society of Human Genetics 59th Annual Meeting, Honolulu, Hawaii, October 20-24, 2009. No. 632/W, Poster 290. 李辉,赵艺憬,吉珠,吉坎(2009)等位基因频率高度差异体现的欧亚遗传地势. 美国人类遗传学会第59届年会.夏威夷, 檀香山, 2009年10月20-24日. No.630/W, 290.
[PDF全文下载] [摘要]
Genetic Landscape of Eurasia Viewed from Large Allele Frequency Differences. H. Li, K. Cho, J. R. Kidd, K. K. Kidd Department of Genetics, School of Medicine, Yale University, New Haven, CT 06520.
The diversification leading to modern human populations in Eurasia is one of the most important topics in the study of human expansions after leaving Africa. Most studies of Eurasia populations have used either limited markers or involved insufficient population coverage. We chose 68 markers based on large allele frequency differences among a few Eurasian populations and then typed them on 1766 individuals from 34 populations representing all subdivisions of Eurasia. Analyses using the STRUCTURE program showed a clinal east-west division when K=2, with a median border dividing Central Asia along the Ob River, the Kazakh highland, the western side of Pamir Mountains, and the southwestern side of the Himalayas. We fit curves to the STRUCTURE loadings using distances of the population coordinates from the median border. The genetic structure changed dramatically only within 2000km on each side of the border. At higher values of K the western populations of East Asia are the first to be distinguished (at K=3): Mongols, Tibetans, Qiang, and Baima, are most distinct from the more eastern populations. At K=4 Southwest and South Asians are distinguished from the Europeans; At K=5 Southeast Asians and at K=6 Central Asians are successively distinguished from eastern East Asians. Several more isolated populations such as Samaritans, Atayals, or Micronesians were distinguished in different independent runs when K=7 providing no clear anthropological information. South Asians were always clustered with Southwest Asians with pronounced similarity to Central Asians. The failure to distinguish South Asians maybe due to the selection of the markers with large allele frequency differences specifically between Europeans and East Asians. We also tested for statistical differences in the allele frequencies for all pairs of clusters when K=6. The results showed significant borders (P<0.0001) including those between western East Asians and eastern East Asians or Central Asians; however, insignificant borders were observed between Southwest Asians and Southeast Asians or western East Asians, neither was between Central Asians and eastern East Asians. This indicates substantial gene flow in North Asia between eastern East Asians and Central Asians, and in South Asia between South Asians and Southeast Asians. Using increased population and marker coverage, this study helps to understand the details of genetic diversity and landscape of Eurasians. |
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