Genetic signatures of high-altitude adaptation in Tibetans.

Yang, Jian; Jin, Zi-Bing; Chen, Jie; Huang, Xiu-Feng; Li, Xiao-Man; Liang, Yuan-Bo; Mao, Jian-Yang; Chen, Xin et al. · Proc Natl Acad Sci U S A · 2017

basic_science · Level V

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Abstract

Indigenous Tibetan people have lived on the Tibetan Plateau for millennia. There is a long-standing question about the genetic basis of high-altitude adaptation in Tibetans. We conduct a genome-wide study of 7.3 million genotyped and imputed SNPs of 3,008 Tibetans and 7,287 non-Tibetan individuals of Eastern Asian ancestry. Using this large dataset, we detect signals of high-altitude adaptation at nine genomic loci, of which seven are unique. The alleles under natural selection at two of these loci [methylenetetrahydrofolate reductase (<i>MTHFR</i>) and <i>EPAS1</i>] are strongly associated with blood-related phenotypes, such as hemoglobin, homocysteine, and folate in Tibetans. The folate-increasing allele of rs1801133 at the <i>MTHFR</i> locus has an increased frequency in Tibetans more than expected under a drift model, which is probably a consequence of adaptation to high UV radiation. These findings provide important insights into understanding the genomic consequences of high-altitude adaptation in Tibetans.

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