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Convergent genomic signatures of high-altitude adaptation among domestic mammals

Abundant and diverse domestic mammals living on the Tibetan Plateau provide useful materials for investigating adaptive evolution and genetic convergence. Here, we used 327 genomes from horses, sheep, goats, cattle, pigs and dogs living at both high and low altitudes, including 73 genomes generated...

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Autores principales: Wu, Dong-Dong, Yang, Cui-Ping, Wang, Ming-Shan, Dong, Kun-Zhe, Yan, Da-Wei, Hao, Zi-Qian, Fan, Song-Qing, Chu, Shu-Zhou, Shen, Qiu-Shuo, Jiang, Li-Ping, Li, Yan, Zeng, Lin, Liu, He-Qun, Xie, Hai-Bing, Ma, Yun-Fei, Kong, Xiao-Yan, Yang, Shu-Li, Dong, Xin-Xing, Esmailizadeh, Ali, Irwin, David M, Xiao, Xiao, Li, Ming, Dong, Yang, Wang, Wen, Shi, Peng, Li, Hai-Peng, Ma, Yue-Hui, Gou, Xiao, Chen, Yong-Bin, Zhang, Ya-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8288980/
https://www.ncbi.nlm.nih.gov/pubmed/34692117
http://dx.doi.org/10.1093/nsr/nwz213
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author Wu, Dong-Dong
Yang, Cui-Ping
Wang, Ming-Shan
Dong, Kun-Zhe
Yan, Da-Wei
Hao, Zi-Qian
Fan, Song-Qing
Chu, Shu-Zhou
Shen, Qiu-Shuo
Jiang, Li-Ping
Li, Yan
Zeng, Lin
Liu, He-Qun
Xie, Hai-Bing
Ma, Yun-Fei
Kong, Xiao-Yan
Yang, Shu-Li
Dong, Xin-Xing
Esmailizadeh, Ali
Irwin, David M
Xiao, Xiao
Li, Ming
Dong, Yang
Wang, Wen
Shi, Peng
Li, Hai-Peng
Ma, Yue-Hui
Gou, Xiao
Chen, Yong-Bin
Zhang, Ya-Ping
author_facet Wu, Dong-Dong
Yang, Cui-Ping
Wang, Ming-Shan
Dong, Kun-Zhe
Yan, Da-Wei
Hao, Zi-Qian
Fan, Song-Qing
Chu, Shu-Zhou
Shen, Qiu-Shuo
Jiang, Li-Ping
Li, Yan
Zeng, Lin
Liu, He-Qun
Xie, Hai-Bing
Ma, Yun-Fei
Kong, Xiao-Yan
Yang, Shu-Li
Dong, Xin-Xing
Esmailizadeh, Ali
Irwin, David M
Xiao, Xiao
Li, Ming
Dong, Yang
Wang, Wen
Shi, Peng
Li, Hai-Peng
Ma, Yue-Hui
Gou, Xiao
Chen, Yong-Bin
Zhang, Ya-Ping
author_sort Wu, Dong-Dong
collection PubMed
description Abundant and diverse domestic mammals living on the Tibetan Plateau provide useful materials for investigating adaptive evolution and genetic convergence. Here, we used 327 genomes from horses, sheep, goats, cattle, pigs and dogs living at both high and low altitudes, including 73 genomes generated for this study, to disentangle the genetic mechanisms underlying local adaptation of domestic mammals. Although molecular convergence is comparatively rare at the DNA sequence level, we found convergent signature of positive selection at the gene level, particularly the EPAS1 gene in these Tibetan domestic mammals. We also reported a potential function in response to hypoxia for the gene C10orf67, which underwent positive selection in three of the domestic mammals. Our data provide an insight into adaptive evolution of high-altitude domestic mammals, and should facilitate the search for additional novel genes involved in the hypoxia response pathway.
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spelling pubmed-82889802021-10-21 Convergent genomic signatures of high-altitude adaptation among domestic mammals Wu, Dong-Dong Yang, Cui-Ping Wang, Ming-Shan Dong, Kun-Zhe Yan, Da-Wei Hao, Zi-Qian Fan, Song-Qing Chu, Shu-Zhou Shen, Qiu-Shuo Jiang, Li-Ping Li, Yan Zeng, Lin Liu, He-Qun Xie, Hai-Bing Ma, Yun-Fei Kong, Xiao-Yan Yang, Shu-Li Dong, Xin-Xing Esmailizadeh, Ali Irwin, David M Xiao, Xiao Li, Ming Dong, Yang Wang, Wen Shi, Peng Li, Hai-Peng Ma, Yue-Hui Gou, Xiao Chen, Yong-Bin Zhang, Ya-Ping Natl Sci Rev MOLECULAR BIOLOGY & GENETICS Abundant and diverse domestic mammals living on the Tibetan Plateau provide useful materials for investigating adaptive evolution and genetic convergence. Here, we used 327 genomes from horses, sheep, goats, cattle, pigs and dogs living at both high and low altitudes, including 73 genomes generated for this study, to disentangle the genetic mechanisms underlying local adaptation of domestic mammals. Although molecular convergence is comparatively rare at the DNA sequence level, we found convergent signature of positive selection at the gene level, particularly the EPAS1 gene in these Tibetan domestic mammals. We also reported a potential function in response to hypoxia for the gene C10orf67, which underwent positive selection in three of the domestic mammals. Our data provide an insight into adaptive evolution of high-altitude domestic mammals, and should facilitate the search for additional novel genes involved in the hypoxia response pathway. Oxford University Press 2020-06 2019-12-19 /pmc/articles/PMC8288980/ /pubmed/34692117 http://dx.doi.org/10.1093/nsr/nwz213 Text en © The Author(s) 2020. Published by Oxford University Press on behalf of China Science Publishing & Media Ltd. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle MOLECULAR BIOLOGY & GENETICS
Wu, Dong-Dong
Yang, Cui-Ping
Wang, Ming-Shan
Dong, Kun-Zhe
Yan, Da-Wei
Hao, Zi-Qian
Fan, Song-Qing
Chu, Shu-Zhou
Shen, Qiu-Shuo
Jiang, Li-Ping
Li, Yan
Zeng, Lin
Liu, He-Qun
Xie, Hai-Bing
Ma, Yun-Fei
Kong, Xiao-Yan
Yang, Shu-Li
Dong, Xin-Xing
Esmailizadeh, Ali
Irwin, David M
Xiao, Xiao
Li, Ming
Dong, Yang
Wang, Wen
Shi, Peng
Li, Hai-Peng
Ma, Yue-Hui
Gou, Xiao
Chen, Yong-Bin
Zhang, Ya-Ping
Convergent genomic signatures of high-altitude adaptation among domestic mammals
title Convergent genomic signatures of high-altitude adaptation among domestic mammals
title_full Convergent genomic signatures of high-altitude adaptation among domestic mammals
title_fullStr Convergent genomic signatures of high-altitude adaptation among domestic mammals
title_full_unstemmed Convergent genomic signatures of high-altitude adaptation among domestic mammals
title_short Convergent genomic signatures of high-altitude adaptation among domestic mammals
title_sort convergent genomic signatures of high-altitude adaptation among domestic mammals
topic MOLECULAR BIOLOGY & GENETICS
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8288980/
https://www.ncbi.nlm.nih.gov/pubmed/34692117
http://dx.doi.org/10.1093/nsr/nwz213
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