G
Gang Fu
Researcher at Chinese National Human Genome Center
Publications - 21
Citations - 4377
Gang Fu is an academic researcher from Chinese National Human Genome Center. The author has contributed to research in topics: Gene & Expressed sequence tag. The author has an hindex of 17, co-authored 21 publications receiving 4186 citations. Previous affiliations of Gang Fu include Ruijin Hospital & Shanghai Jiao Tong University.
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Journal ArticleDOI
Molecular Evolution of the SARS Coronavirus, during the Course of the SARS Epidemic in China
Jian Feng He,Guo Wen Peng,Jun Min,De Wen Yu,Wen Jia Liang,Shuyi Zhang,Rui Heng Xu,Huan Ying Zheng,Xin Wei Wu,Jun Xu,Zhan Hui Wang,Ling Fang,Xin Zhang,Hui Li,Xin Ge Yan,Jiahai Lu,Zhihong Hu,Ji Cheng Huang,Zhuo Yue Wan,Jin Lin Hou,Jin Yan Lin,Huai Dong Song,Shengyue Wang,Xiang Jun Zhou,Guo Wei Zhang,Bo Wei Gu,Huajun Zheng,Xiang Lin Zhang,Mei He,Kui Zheng,Bo Fei Wang,Gang Fu,Xiao Ning Wang,Sai Juan Chen,Zhu Chen,Zhu Chen,Pei Hao,Hua Tang,Shuang Xi Ren,Yang Zhong,Zong Ming Guo,Qi Liu,You Gang Miao,Xiangyin Kong,Wei Zhong He,Yixue Li,Chung-I Wu,Guoping Zhao,Rossa W.K. Chiu,Stephen S.C. Chim,Yu K. Tong,Paul K.S. Chan,John S. Tam,Y.M. Dennis Lo +53 more
TL;DR: The spike protein showed the strongest initial responses to positive selection pressures, followed by subsequent purifying selection and eventual stabilization, and major deletions were observed in the Orf8 region of the genome at the start and the end of the epidemic.
Journal ArticleDOI
Unique physiological and pathogenic features of Leptospira interrogans revealed by whole-genome sequencing
Shuang-Xi Ren,Shuang-Xi Ren,Gang Fu,Xiu-Gao Jiang,Rong Zeng,You-Gang Miao,Hai Xu,Yi-Xuan Zhang,Hui Xiong,Gang Lu,Ling-Feng Lu,Hong-Quan Jiang,Jia Jia,Yuefeng Tu,Ju-Xing Jiang,Wenyi Gu,Yue-Qing Zhang,Yue-Qing Zhang,Zhen Cai,Haihui Sheng,Hai-Feng Yin,Yi Zhang,Genfeng Zhu,Ma Wan,Hong-Lei Huang,Zhen Qian,Shengyue Wang,Wei Ma,Zhijian Yao,Yan Shen,Boqin Qiang,Qi-Chang Xia,Xiaokui Guo,Antoine Danchin,Isabelle Saint Girons,Ronald L. Somerville,Yu-Mei Wen,Man-Hua Shi,Zhu Chen,Jianguo Xu,Guoping Zhao,Guoping Zhao +41 more
TL;DR: The complete genomic sequence of a representative virulent serovar type strain (Lai) of Leptospira interrogans serogroup Icterohaemorrhagiae is reported, consisting of a 4.33-megabase large chromosome and a 359-kilobase small chromosome, with a total of 4,768 predicted genes.
Journal ArticleDOI
Identification of gene expression profile of dorsal root ganglion in the rat peripheral axotomy model of neuropathic pain
Hua-Sheng Xiao,Qiu-Hua Huang,FX Zhang,Lan Bao,YJ Lu,C Guo,Liang Yang,WJ Huang,Gang Fu,Shuhua Xu,XP Cheng,Qing Yan,Zhi-Dong Zhu,Xu Zhang,Zi-Jiang Chen,Ze-Guang Han +15 more
TL;DR: CDNA array on genes mainly made from the cDNA libraries of lumbar DRGs of normal rats and of rats 14 days after peripheral axotomy reveals dynamic and complex changes in molecular diversity among DRG neurons after axotomy.
Journal ArticleDOI
Genome-based analysis of virulence genes in a non-biofilm-forming Staphylococcus epidermidis strain (ATCC 12228).
Yue-Qing Zhang,Shuang-Xi Ren,Hua-Lin Li,Yong-Xiang Wang,Gang Fu,Jian Yang,Zhiqiang Qin,You-Gang Miao,Wen-Yi Wang,Runsheng Chen,Yan Shen,Zhu Chen,Zhenghong Yuan,Guoping Zhao,Di Qu,Di Qu,Antoine Danchin,Yu-Mei Wen +17 more
TL;DR: The complete genome of Staphylococcus epidermidis strain ATCC 12228, a non‐biofilm forming, non‐infection associated strain used for detection of residual antibiotics in food products, was sequenced and the ica operon coding for the enzymes synthesizing interbacterial cellular polysaccharide is missing.
Journal ArticleDOI
Comparative and functional genomic analyses of the pathogenicity of phytopathogen Xanthomonas campestris pv. campestris
Wei Qian,Yantao Jia,Shuang-Xi Ren,Yong-Qiang He,Jia-Xun Feng,Ling-Feng Lu,Qihong Sun,Ge Ying,Dong-Jie Tang,Hua Tang,Wei Wu,Pei Hao,Lifeng Wang,Bo-Le Jiang,Shenyan Zeng,Wenyi Gu,Gang Lu,Li Rong,Yingchuan Tian,Zhijian Yao,Gang Fu,Baoshan Chen,Rongxiang Fang,Bo-qin Qiang,Zhu Chen,Guoping Zhao,Ji-Liang Tang,Chaozu He +27 more
TL;DR: The present combination of comparative and functional genomic analyses provides valuable information about the genetic basis of Xcc pathogenicity, which may offer novel insight toward the development of efficient methods for prevention of this important plant disease.