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  • [1]

    Zijun Yang, Hao Wang, Shixing Yang, Xiaochun Wang, Quan Shen, Likai Ji, Jian Zeng, Wen Zhang, Haiyan Gong, Tongling Shan, 2023: Virome diversity of ticks feeding on domestic mammals in China, Virologica Sinica, 38, 208-221. doi: 10.1016/j.virs.2023.02.001

  • [2]

    Wentao Zhu, Jing Yang, Shan Lu, Ruiting Lan, Dong Jin, Xue-lian Luo, Ji Pu, Shusheng Wu, Jianguo Xu, 2021: Beta- and Novel Delta-Coronaviruses Are Identified from Wild Animals in the Qinghai-Tibetan Plateau, China, Virologica Sinica, 36, 402-411. doi: 10.1007/s12250-020-00325-z

  • [3]

    Xiuling Ji, Chunjing Zhang, Anxiu Kuang, Jiankai Li, Yinshan Cui, Kunhao Qin, Lianbing Lin, Benxu Cheng, Qi Zhang, Yunlin Wei, 2015: Morphological diversity of cultured cold-active lytic bacteriophages isolated from the Napahai plateau wetland in China, Virologica Sinica, 30, 457-459. doi: 10.1007/s12250-015-3674-4

  • [4]

    Yiwei Shi, Letian Fang, Cixiu Li, Peng Li, Jiluo Liu, Yifan Chen, Yue Zhao, Zishuai Li, Shuqi Liu, Yibo Ding, Xinyu Zhou, Dongming Jiang, Jiaying Shen, Zihan Zhang, Junheng Lyu, Rui Pu, Xiaojie Tan, Jianhua Yin, Weifeng Shi, Guangwen Cao, 2025: Virome diversity in small mammals from south China: Insights into virus evolution, transmission, and ecology, Virologica Sinica, 40, 520-534. doi: 10.1016/j.virs.2025.06.004

  • [5]

    Daniel K. W. Chu, J. S. Malik Peiris, Leo L. M. Poon, 2009: Novel Coronaviruses and Astroviruses in Bats, Virologica Sinica, 24, 100-104. doi: 10.1007/s12250-009-3031-6

  • [6]

    Yong-jie Wang, John P. Burand, Johannes A. Jehle, 2007: Nudivirus Genomics: Diversity and Classification*, Virologica Sinica, 22, 128-136.

  • [7]

    陆承平, 2003: Comparison of SARS Virus and Animal Coronaviruses, Virologica Sinica, 18, 307-309.

  • [8]

    王汉中, 丁清泉, 2003: Severe Acute Respiratory Syndrome And Coronaviruses, Virologica Sinica, 18, 303-306.

  • [9]

    Hanna Turlewicz-Podbielska, Małgorzata Pomorska-Mól, 2021: Porcine Coronaviruses: Overview of the State of the Art, Virologica Sinica, 36, 833-851. doi: 10.1007/s12250-021-00364-0

  • [10]

    Griphin Ochieng Ochola, Bei Li, Vincent Obanda, Sheila Ommeh, Harold Ochieng, Xing-Lou Yang, Samson Omondi Onyuok, Zheng-Li Shi, Bernard Agwanda, Ben Hu, 2022: Discovery of novel DNA viruses in small mammals from Kenya, Virologica Sinica, 37, 491-502. doi: 10.1016/j.virs.2022.06.001

  • [11]

    Lanlan Liu, Tao Wang, Jiahai Lu, 2016: The prevalence, origin, and prevention of six human coronaviruses, Virologica Sinica, 31, 94-99. doi: 10.1007/s12250-015-3687-z

  • [12]

    Kexin Zong, Yuanyuan Guo, Jingdong Song, Maoshun Liu, Junfeng Hao, Jie Zhang, Xin Li, Shiyan Zhu, Shuting Huo, Ziqian Xu, Peipei Liu, Yingze Zhao, Yuhai Bi, Jiapeng Qu, George F. Gao, Jun Liu, 2023: The genomic characteristics and pathogenicity of a mammalian orthoreovirus within a new lineage from wild pika in plateau, Virologica Sinica, 38, 877-888. doi: 10.1016/j.virs.2023.11.001

  • [13]

    Jialu Zheng, Yutong Wei, Guan-Zhu Han, 2022: The diversity and evolution of retroviruses: Perspectives from viral “fossils”, Virologica Sinica, 37, 11-18. doi: 10.1016/j.virs.2022.01.019

  • [14]

    Jialu Zheng, Yutong Wei, Guan-Zhu Han, 0: The diversity and evolution of retroviruses: perspectives from viral “fossils”, Virologica Sinica.

  • [15]

    Jingjing Wang, Feng Deng, Gang Ye, Wanyu Dong, Anjun Zheng, Qigai He, Guiqing Peng, 2016: Comparison of lentiviruses pseudotyped with S proteins from coronaviruses and cell tropisms of porcine coronaviruses, Virologica Sinica, 31, 49-56. doi: 10.1007/s12250-015-3690-4

  • [16]

    Shiping Ding, Jiangtao Zhou, Junlong Xiong, Xiaowen Du, Wenzhuo Yang, Jinyu Huang, Yi Liu, Lihong Huang, Ming Liao, Jiahao Zhang, Wenbao Qi, 2024: Continued evolution of H10N3 influenza virus with adaptive mutations poses an increased threat to mammals, Virologica Sinica, 39, 546-555. doi: 10.1016/j.virs.2024.06.005

  • [17]

    杨松涛, 高玉伟, 王承宇, 邹啸环, 苏建青, 孙贺廷, 常爽, 郑晓一, 王铁成, 王化磊, 冯娜, 夏咸柱, 2006: Mice as a Model for Studying the Avian H5N1 Influenza Virus in Mammals, Virologica Sinica, 21, 353-357.

  • [18]

    Shumin Zhang, Xuhua Zhang, Yuanyuan Bie, Jing Kong, An Wang, Yang Qiu, Xi Zhou, 2022: STUB1 regulates antiviral RNAi through inducing ubiquitination and degradation of Dicer and AGO2 in mammals, Virologica Sinica, 37, 569-580. doi: 10.1016/j.virs.2022.05.001

  • [19]

    孙 啸, 谢建明, 周士新, 谢雪英, 陆祖宏, 2003: Genome Comparison Between SARS—associated coronavirus andOther Coronaviruses, Virologica Sinica, 18, 335-339.

  • [20]

    Xing-Yi Ge, Ning Wang, Wei Zhang, Ben Hu, Bei Li, Yun-Zhi Zhang, Ji-Hua Zhou, Chu-Ming Luo, Xing-Lou Yang, Li-Jun Wu, Bo Wang, Yun Zhang, Zong-Xiao Li, Zheng-Li Shi, 2016: Coexistence of multiple coronaviruses in several bat colonies in an abandoned mineshaft, Virologica Sinica, 31, 31-40. doi: 10.1007/s12250-016-3713-9