Comparative proteome analysis of tracheal tissues in response to infectious bronchitis coronavirus, Newcastle disease virus, and avian influenza virus H9 subtype virus infection

文献类型: 外文期刊

第一作者: Sun, Junfeng

作者: Sun, Junfeng;Han, Zongxi;Shao, Yuhao;Cao, Zhongzan;Kong, Xiangang;Liu, Shengwang

作者机构:

关键词: Animal proteomics;Avian influenza virus H9 subtype;Infectious bronchitis coronavirus;Newcastle disease virus;Pathogenesis

期刊名称:PROTEOMICS ( 影响因子:3.984; 五年影响因子:3.831 )

ISSN:

年卷期:

页码:

收录情况: SCI

摘要: Infectious bronchitis coronavirus (IBV), Newcastle disease virus (NDV), and avian influenza virus (AIV) H9 subtype are major pathogens of chickens causing serious respiratory tract disease and heavy economic losses. To better understand the replication features of these viruses in their target organs and molecular pathogenesis of these different viruses, comparative proteomic analysis was performed to investigate the proteome changes of primary target organ during IBV, NDV, and AIV H9 infections, using 2D-DIGE followed MALDI-TOF/TOF-MS. In total, 44, 39, 41, 48, and 38 proteins were identified in the tracheal tissues of the chickens inoculated with IBV (ck/CH/LDL/97I, H120), NDV (La Sota), and AIV H9, and between ck/CH/LDL/97I and H120, respectively. Bioinformatics analysis showed that IBV, NDV, and AIV H9 induced similar core host responses involved in biosynthetic, catabolic, metabolic, signal transduction, transport, cytoskeleton organization, macromolecular complex assembly, cell death, response to stress, and immune system process. Comparative analysis of host response induced by different viruses indicated differences in protein expression changes induced by IBV, NDV, and AIV H9 may be responsible for the specific pathogenesis of these different viruses. Our result reveals specific host response to IBV, NDV, and AIVH9 infections and provides insights into the distinct pathogenic mechanisms of these avian respiratory viruses.

分类号: Q5

  • 相关文献

[1]Experimental infection of duck origin virulent Newcastle disease virus strain in ducks. Dai, Yabin,Cheng, Xu,Liu, Mei,Shen, Xinyue,Li, Jianmei,Zou, Jianmin,Dai, Yabin,Cheng, Xu,Liu, Mei,Shen, Xinyue,Li, Jianmei,Zou, Jianmin,Yu, Shengqing,Ding, Chan. 2014

[2]Proteomic analysis of cow, yak, buffalo, goat and camel milk whey proteins: Quantitative differential expression patterns. Yang, Yongxin,Bu, Dengpan,Zhao, Xiaowei,Sun, Peng,Wang, Jiaqi,Zhou, Lingyun,Yang, Yongxin,Zhao, Xiaowei.

[3]Proteome profile of bovine ruminal epithelial tissue based on GeLC-MS/MS. Yang, Yongxin,Wang, Jiaqi,Yuan, Tingjie,Bu, Dengpan,Yang, Jinhui,Sun, Peng,Yang, Yongxin.

[4]Proteomic analysis of physiological function response to hot summer in liver from lactating dairy cows. Wang, Qiangjun,Zhao, Xiaowei,Zhao, Huiling,Huang, Dongwei,Cheng, Guanglong,Yang, Yongxin,Wang, Qiangjun,Zhang, Zijun.

[5]N-glycosylation proteomic characterization and cross-species comparison of milk fat globule membrane proteins from mammals. Yang, Yongxin,Zheng, Nan,Zhao, Xiaowei,Zhang, Yangdong,Han, Rongwei,Ma, Lu,Zhao, Shengguo,Li, Songli,Guo, Tongjun,Zang, Changjiang,Wang, Jiaqi,Yang, Yongxin,Zhao, Xiaowei,Wang, Weiyu.

[6]Molecular and antigenic characteristics of Massachusetts genotype infectious bronchitis coronavirus in China. Chen, Lingfeng,Zhang, Tingting,Han, Zongxi,Liang, Shuling,Xu, Yang,Xu, Qianqian,Chen, Yuqiu,Zhao, Yan,Shao, Yuhao,Li, Huixin,Wang, Kexiong,Kong, Xiangang,Liu, Shengwang.

[7]Serotype, antigenicity, and pathogenicity of a naturally recombinant TW I genotype infectious bronchitis coronavirus in China. Gao, Mengying,Wang, Qiuling,Zhao, Wenjun,Chen, Yuqiu,Zhang, Tingting,Han, Zongxi,Xu, Qianqian,Kong, Xiangang,Liu, Shengwang.

[8]Genome characterization, antigenicity and pathogenicity of a novel infectious bronchitis virus type isolated from south China. Jiang, Lei,Zhao, Wenjun,Han, Zongxi,Chen, Yuqiu,Zhao, Yan,Sun, Junfeng,Li, Huixin,Shao, Yuhao,Liu, Liangliang,Liu, Shengwang.

[9]Genetic, antigenic, and pathogenic characteristics of avian infectious bronchitis viruses genotypically related to 793/B in China. Han, Zongxi,Zhao, Wenjun,Chen, Yuqiu,Xu, Qianqian,Sun, Junfeng,Zhang, Tingting,Zhao, Yan,Liang, Shuling,Gao, Mengying,Wang, Qiuling,Kong, Xiangang,Liu, Shengwang.

[10]Serotype shift of a 793/B genotype infectious bronchitis coronavirus by natural recombination. Zhang, Tingting,Han, Zongxi,Xu, Qianqian,Wang, Qiuling,Gao, Mengying,Wu, Wei,Shao, Yuhao,Li, Huixin,Kong, Xiangang,Liu, Shengwang.

[11]Altered pathogenicity of a tl/CH/LDT3/03 genotype infectious bronchitis coronavirus due to natural recombination in the 5 '-17 kb region of the genome. Han, Zongxi,Zhang, Tingting,Xu, Qianqian,Gao, Mengying,Chen, Yuqiu,Wang, Qiuling,Zhao, Yan,Shao, Yuhao,Li, Huixin,Kong, Xiangang,Liu, Shengwang.

[12]Identification of the avian infectious bronchitis coronaviruses with mutations in gene 3. Liu, Shengwang,Zhang, Qingxia,Chen, Jianfei,Han, Zongxi,Shao, Yuhao,Kong, Xiangang,Tong, Guangzhi. 2008

[13]Characterization of a recombinant coronavirus infectious bronchitis virus with distinct S1 subunits of spike and nucleocapsid genes and a 3 ' untranslated region. Liu, Xiaoli,Ma, Huijie,Xu, Qianqian,Sun, Nana,Han, Zongxi,Sun, Chuyang,Guo, Hongbo,Shao, Yuhao,Kong, Xiangang,Liu, Shengwang. 2013

[14]Identification and molecular characterization of a novel serotype infectious bronchitis virus (GI-28) in China. Chen, Yuqiu,Jiang, Lei,Zhao, Wenjun,Liu, Liangliang,Zhao, Yan,Shao, Yuhao,Li, Huixin,Han, Zongxi,Liu, Shengwang.

[15]Altered levels of circulating miRNAs are associated Schistosoma japonicum infection in mice. Zhu, Lihui,Dao, Jinwei,Du, Xiaoli,Li, Hao,Lu, Ke,Liu, Jinming,Cheng, Guofeng. 2015

[16]Genomic Analysis of One Chinese H1N1 Swine Influenza Virus Strain from Healthy Pig Remaining Different Virulence Determinants. Xu Cong,Xue Chun-Yi,Lv Li-Shan,Li Xiao-Ming,Cao Yong-Chang,Shu Ding-Ming,Lin Zhi-Xiong. 2012

[17]Pathogenesis and phylogenetic analyses of canine distemper virus strain ZJ7 isolate from domestic dogs in China. Tan, Bin,Wen, Yong-Jun,Wang, Feng-Xue,Zhang, Shu-Qin,Wang, Xiu-Dong,Hu, Jia-Xin,Shi, Xin-Chuan,Yang, Bo-Chao,Chen, Li-Zhi,Cheng, Shi-Peng,Wu, Hua. 2011

[18]PEG-Mediated Genetic Transformation of Fusarium oxysporum f. sp conglutinans to Study Pathogenesis in Cabbage. Zhang, Wei,Feng, Jianhai,Yan, Hong,Li, Xinghong,Yan, Jiye,Zhao, Wensheng,Huang, Jinguang,Feng, Jianhai,Yang, Laying. 2014

[19]A Tiny RNA that Packs a Big Punch: The Critical Role of a Viral miR-155 Ortholog in Lymphomagenesis in Marek's Disease. Zhuang, Guoqing,Sun, Aijun,Teng, Man,Luo, Jun,Luo, Jun. 2017

[20]Alternative sigma factor RpoN2 is required for flagellar motility and full virulence of Xanthomonas oryzae pv. oryzae. Yu, Chao,Li, Haiyun,Wu, Xiaoli,Li, Bo,Chen, Huamin,Wu, Maosen,He, Chenyang.

作者其他论文 更多>>