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Geographic population structure analysis of worldwide human populations infers their biogeographical origins

机译:全球人口的地理人口结构分析推断其生物地理起源

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The search for a method that utilizes biological information to predict humans' place of origin has occupied scientists for millennia. Over the past four decades, scientists have employed genetic data in an effort to achieve this goal but with limited success. While biogeographical algorithms using next-generation sequencing data have achieved an accuracy of 700 km in Europe, they were inaccurate elsewhere. Here we describe the Geographic Population Structure (GPS) algorithm and demonstrate its accuracy with three data sets using 40,000-130,000 SNPs. GPS placed 83% of worldwide individuals in their country of origin. Applied to over 200 Sardinians villagers, GPS placed a quarter of them in their villages and most of the rest within 50km of their villages. GPS's accuracy and power to infer the biogeography of worldwide individuals down to their country or, in some cases, village, of origin, underscores the promise of admixture-based methods for biogeography and has ramifications for genetic ancestry testing.RI Balanovsky, Oleg/G-1549-2014; Comas, David/D-5382-2014OI Comas, David/0000-0002-5075-0956
机译:寻找一种利用生物信息来预测人类起源地的方法已经占据了几千年的科学家。在过去的四十年中,科学家们利用遗传数据来实现这一目标,但取得的成功有限。虽然使用下一代测序数据的生物地理算法在欧洲已达到700 km的精度,但在其他地方却不准确。在这里,我们描述了地理人口结构(GPS)算法,并通过使用40,000-130,000个SNP的三个数据集展示了其准确性。 GPS将全球83%的个人安置在其原籍国。 GPS适用于200多个撒丁岛的村民,将其中的四分之一安置在他们的村庄中,其余大部分则放置在村庄的50公里之内。 GPS的准确性和能力可推断出其祖国乃至村庄的世界范围内个人的生物地理学,这突显了基于混合技术的生物地理学方法的前景,并对遗传祖先测试产生了影响。RIBalanovsky,Oleg / G -1549-2014;大卫·科马斯/ D-5382-2014OI大卫·科马斯/ 0000-0002-5075-0956

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