TY - JOUR
T1 - Altitude adaptation in Tibetans caused by introgression of Denisovan-like DNA
AU - Huerta-Sánchez, Emilia
AU - Jin, Xin
AU - Asan,
AU - Bianba, Zhuoma
AU - Peter, Benjamin M.
AU - Vinckenbosch, Nicolas
AU - Liang, Yu
AU - Yi, Xin
AU - He, Mingze
AU - Somel, Mehmet
AU - Ni, Peixiang
AU - Wang, Bo
AU - Ou, Xiaohua
AU - Huasang,
AU - Luosang, Jiangbai
AU - Cuo, Zha Xi Ping
AU - Li, Kui
AU - Gao, Guoyi
AU - Yin, Ye
AU - Wang, Wei
AU - Zhang, Xiuqing
AU - Xu, Xun
AU - Yang, Huanming
AU - Li, Yingrui
AU - Wang, Jian
AU - Wang, Jun
AU - Nielsen, Rasmus
PY - 2014/8/14
Y1 - 2014/8/14
N2 - As modern humans migrated out of Africa, they encountered many new environmental conditions, including greater temperature extremes, different pathogens and higher altitudes. These diverse environments are likely to have acted as agents of natural selection and to have led to local adaptations. One of the most celebrated examples in humans is the adaptation of Tibetans to the hypoxic environment of the high-altitude Tibetan plateau. A hypoxia pathway gene, EPAS1, was previously identified as having the most extreme signature of positive selection in Tibetans, and was shown to be associated with differences in haemoglobin concentration at high altitude. Re-sequencing the region around EPAS1 in 40 Tibetan and 40 Han individuals, we find that this gene has a highly unusual haplotype structure that can only be convincingly explained by introgression of DNA from Denisovan or Denisovan-related individuals into humans. Scanning a larger set of worldwide populations, we find that the selected haplotype is only found in Denisovans and in Tibetans, and at very low frequency among Han Chinese. Furthermore, the length of the haplotype, and the fact that it is not found in any other populations, makes it unlikely that the haplotype sharing between Tibetans and Denisovans was caused by incomplete ancestral lineage sorting rather than introgression. Our findings illustrate that admixture with other hominin species has provided genetic variation that helped humans to adapt to new environments.
AB - As modern humans migrated out of Africa, they encountered many new environmental conditions, including greater temperature extremes, different pathogens and higher altitudes. These diverse environments are likely to have acted as agents of natural selection and to have led to local adaptations. One of the most celebrated examples in humans is the adaptation of Tibetans to the hypoxic environment of the high-altitude Tibetan plateau. A hypoxia pathway gene, EPAS1, was previously identified as having the most extreme signature of positive selection in Tibetans, and was shown to be associated with differences in haemoglobin concentration at high altitude. Re-sequencing the region around EPAS1 in 40 Tibetan and 40 Han individuals, we find that this gene has a highly unusual haplotype structure that can only be convincingly explained by introgression of DNA from Denisovan or Denisovan-related individuals into humans. Scanning a larger set of worldwide populations, we find that the selected haplotype is only found in Denisovans and in Tibetans, and at very low frequency among Han Chinese. Furthermore, the length of the haplotype, and the fact that it is not found in any other populations, makes it unlikely that the haplotype sharing between Tibetans and Denisovans was caused by incomplete ancestral lineage sorting rather than introgression. Our findings illustrate that admixture with other hominin species has provided genetic variation that helped humans to adapt to new environments.
UR - https://www.scopus.com/pages/publications/84906242803
U2 - 10.1038/nature13408
DO - 10.1038/nature13408
M3 - 文章
C2 - 25043035
AN - SCOPUS:84906242803
SN - 0028-0836
VL - 512
SP - 194
EP - 197
JO - Nature
JF - Nature
IS - 7513
ER -