[1]Genetic characteristics and pathogenicity of variant porcine parvovirus 1 in northern China. Huiwei Deng,Mengting Wang,Guangyi Cong,Fang Fu,Li Feng. 2024
[2]PB2-E627K and PA-T97I substitutions enhance polymerase activity and confer a virulent phenotype to an H6N1 avian influenza virus in mice. Cheng, Kaihui,Yu, Zhijun,Sun, Weiyang,Xin, Yue,Huang, Jing,Zhang, Kun,Li, Xue,Yang, Songtao,Wang, Tiecheng,Zheng, Xuexing,Wang, Hualei,Qian, Jun,Gao, Yuwei,Xia, Xianzhu,Cheng, Kaihui,Yu, Zhijun,Qin, Chuan,Xia, Xianzhu,Yu, Zhijun,Qin, Chuan,Xia, Xianzhu,Zhang, Qianyi,Chen, Hualan,Chai, Hongliang,Hua, Yuping.
[3]H10Nx avian influenza viruses detected in wild birds in China pose potential threat to mammals. Lv X.,Tian J.,Li X.,Bai X.,Li Y.,Li M.,An Q.,Song X.,Xu Y.,Sun H.,Peng P.,Qin S.,Zhao Z.,Qin R.,Xu Q.,Qu F.,Wang M.,Luo H.,Zhang Z.,Zeng X.,Wang Y.,Hou Z.,Zhou X.,Wang Y.,Li Y.,Chai H.. 2023
[4]Global dissemination of H5N1 influenza viruses bearing the clade 2.3.4.4b HA gene and biologic analysis of the ones detected in China. Pengfei Cui,Jianzhong Shi,Congcong Wang,Yuancheng Zhang,Xin Xing,Huihui Kong,Cheng Yan,Xianying Zeng,Liling Liu,Guobin Tian,Chengjun Li,Guohua Deng,Hualan Chen. 2022
[5]SUMOylation of Matrix Protein M1 and Filamentous Morphology Collectively Contribute to the Replication and Virulence of Highly Pathogenic H5N1 Avian Influenza Viruses in Mammals. Jing Guo,Jianing Chen,Yuanyuan Li,Yanbing Li,Guohua Deng,Jianzhong Shi,Liling Liu,Hualan Chen,Xuyong Li. 2022
[6]Novel H5N6 reassortants bearing the clade 2.3.4.4b HA gene of H5N8 virus have been detected in poultry and caused multiple human infections in China. Gu W.,Shi J.,Cui P.,Yan C.,Zhang Y.,Wang C.,Zhang Y.,Xing X.,Zeng X.,Liu L.,Tian G.,Suzuki Y.,Li C.,Deng G.,Chen H.. 2022
[7]Evolution of H7N9 highly pathogenic avian influenza virus in the context of vaccination. Hou, Yujie,Deng, Guohua,Cui, Pengfei,Zeng, Xianying,Li, Bin,Wang, Dongxue,He, Xinwen,Yan, Cheng,Zhang, Yaping,Li, Jiongjie,Ma, Jinming,Li, Yanbing,Wang, Xiurong,Tian, Guobin,Kong, Huihui,Tang, Lijie,Suzuki, Yasuo,Shi, Jianzhong,Chen, Hualan. 2024
[8]Epidemiology, evolution, and biological characteristics of avian influenza A (H11) viruses from wild birds. Zhiguo Zhao,Jingman Tian,Xiaoli Bai,Minghui Li,Xingdong Song,Jiaying Li,Jianzhong Shi,Huihui Kong,Xianying Zeng,Guobin Tian,Jinxiong Liu,Chengjun Li,Hualan Chen,Yanbing Li. 2025
[9]葡萄卷叶相关病毒13在我国葡萄上的首次报道. 范旭东,张尊平,任芳,胡国君,董雅凤. 2019
[10]Influence of whole hulled rice and rice husk feeding on the performance, carcass yield and digestive tract development of geese. Wang, Z. Y.,Yang, H. M.,Li, W. Z.,Lu, J.,Zou, J. M..
[11]CpG oligodeoxynucleotide-specific goose TLR21 initiates an anti-viral immune response against NGVEV but not AIV strain H9N2 infection. Qi, Yulin,Yan, Bing,Chen, Shun,Wang, Mingshu,Jia, Renyong,Liu, Mafeng,Yang, Qiao,Sun, Kunfeng,Wu, Ying,Cheng, Anchun,Chen, Shun,Wang, Mingshu,Jia, Renyong,Zhu, Dekang,Yang, Qiao,Sun, Kunfeng,Wu, Ying,Chen, Xiaoyue,Cheng, Anchun,Chen, Shun,Wang, Mingshu,Jia, Renyong,Zhu, Dekang,Liu, Fei,Yang, Qiao,Sun, Kunfeng,Wu, Ying,Chen, Xiaoyue,Jing, Bo,Cheng, Anchun,Chen, Hongjun.
[12]Influence of whole corn feeding on the performance, digestive tract development and nutrient retention of geese from 28 to 70 days of age. Lu, J.,Wang, Z. Y.,Yang, H. M.,Lu, J.,Zou, J. M..
[13]Identification of three novel avian beta-defensins from goose and their significance in the pathogenesis of Salmonella. Ma, Deying,Zhang, Mingyue,Zhang, Kexin,Zhang, Mingyue,Zhang, Kexin,Liu, Xiaoli,Han, Zongxi,Shao, Yuhao,Liu, Shengwang.
[14]Functional analysis and induction of four novel goose (Anser cygnoides) avian beta-defensins in response to salmonella enteritidis infection. Ma, Deying,Zhou, Caiyuan,Zhang, Mingyue,Zhou, Caiyuan,Zhang, Mingyue,Han, Zongxi,Shao, Yuhao,Liu, Shengwang.
[15]Infection of Goose with Genotype VIId Newcastle Disease Virus of Goose Origin Elicits Strong Immune Responses at Early Stage. Xu, Qianqian,Chen, Yuqiu,Zhao, Wenjun,Zhang, Tingting,Liu, Chenggang,Qi, Tianming,Ma, Deying,Xu, Qianqian,Chen, Yuqiu,Zhao, Wenjun,Zhang, Tingting,Liu, Chenggang,Qi, Tianming,Han, Zongxi,Shao, Yuhao,Liu, Shengwang. 2016
[16]Genetic diversity of 14 indigenous grey goose breeds in China based on microsatellite markers. Tu, YJ,Chen, KW,Zhang, SJ,Tang, QP,Gao, YS,Yang, N. 2006
[17]The deletion of an extra six nucleotides in the 5 '-untranslated region of the nucleoprotein gene of Newcastle disease virus NA-1 decreases virulence. Liu, Jiaxu,Cong, Yanlong,Yin, Renfu,Ding, Zhuang,Wang, Chunfeng,Wang, Chunfeng,Ding, Chan,Yu, Shengqing,Liu, Xiufan. 2014
[18]Goose Mavs Functions In Rig-I-Mediated I.fn-Beta Signaling Activation. Sun, YJ, Mao, XM, Zheng, H, Wu, W, Rehman, ZU, Liao, Y, Meng, CC, Qiu, XS, Tan, L, Song, CP, Xu, L, Yu, SQ, Ding, C. 2019
[19]Effects of Feeding Fermented Medicago sativa (Plus Soybean and DDGS) on Growth Performance, Blood Profiles, Gut Health, and Carcass Characteristics of Lande (Meat) Geese. Hui Li,Yang Liu,Lan Wei,Qian Lin,Zhifei Zhang. 2022
[20]Isolation And Biological Characterization Of M.esenchymal Stem Cells From G oose Dermis. Wang, JJ, Wu, XL, Zheng, YJ, Wen, HB, Ji, HD, Zhao, YH, Guan, WJ. 2018