Genome sequencing and comparison of two nonhuman primate animal models, the cynomolgus and Chinese rhesus macaques

光美 颜;Guojie Zhang;Xiaodong Fang;Yanfeng Zhang;Cai Li;Fei Ling;David N. Cooper;Qiye Li;Yan Li;Alain J. Van Gool;Hongli Du;Jiesi Chen;Ronghua Chen;Pei Zhang;Zhiyong Huang;John R. Thompson;Yuhuan Meng;Yinqi Bai;菊芳 王;Min Zhuo;Tao Wang;Ying Huang;Liqiong Wei;Jianwen Li;Zhiwen Wang;Haofu Hu;Pengcheng Yang;Liang Le;Peter D. Stenson;Bo Li;Xiaoming Liu;Edward V. Ball;Na An;Quanfei Huang;Yong Zhang;Wei Fan;Xiuqing Zhang;Yingrui Li;Wen Wang;Michael G. Katze;兵 宿;Rasmus Nielsen;焕明 杨;军 王;Xiaoning Wang;Jian Wang

South China Center of Innovative Pharmaceuticals (SCCIP);Sun Yat-Sen University;CAS - Beijing Institute of Genomics;CAS - Kunming Institute of Zoology;South China University of Technology;Cardiff University;Sichuan Agricultural University;Merck;Guangdong Entomological Institute;University of Washington;University of Copenhagen;General Hospital of People's Liberation Army

发表时间:2011-11

期 刊:Nature Biotechnology

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=80755189340&partnerID=8YFLogxK

摘要

The nonhuman primates most commonly used in medical research are from the genus Macaca. To better understand the genetic differences between these animal models, we present high-quality draft genome sequences from two macaque species, the cynomolgus/crab-eating macaque and the Chinese rhesus macaque. Comparison with the previously sequenced Indian rhesus macaque reveals that all three macaques maintain abundant genetic heterogeneity, including millions of single-nucleotide substitutions and many insertions, deletions and gross chromosomal rearrangements. By assessing genetic regions with reduced variability, we identify genes in each macaque species that may have experienced positive selection. Genetic divergence patterns suggest that the cynomolgus macaque genome has been shaped by introgression after hybridization with the Chinese rhesus macaque. Macaque genes display a high degree of sequence similarity with human disease gene orthologs and drug targets. However, we identify several putatively dysfunctional genetic differences between the three macaque species, which may explain functional differences between them previously observed in clinical studies.

相关科学

生物化学、遗传学和分子生物学
生物技术
分子医学
化学工程
生物工程
工程
生物医学工程
免疫和微生物学
应用微生物学和生物技术

被引量

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999 2.963 2.113
2000 2.732 2.307
2001 2.813 2.724
2002 3.212 3.012
2003 4.031 3.002
2004 4.871 3.6
2005 5.333 3.799
2006 5.875 4.63
2007 5.146 4.581
2008 6.205 4.98
2009 7.942 5.624
2010 9.62 6.156
2011 38.7 11.749 6.139
2012 31.3 10.87 4.862
2013 35.3 13.974 5.358
2014 33.9 16.609 5.24
2015 39.6 18.263 5.474
2016 46.3 20.666 6.496
2017 44.8 18.252 6.291
2018 34.4 14.568 5.974
2019 31.5 12.565 5.827
2020 37.4 15.358 7.029
2021 48

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