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Frontiers in Cellular and Infection Microbiology|March 8, 2021
Corrigendum: Autophagy Is a Potential Therapeutic Target Against Duck Tembusu Virus Infection <i>in Vivo</i>Zhiqiang Hu, Yuhong Pan, Anchun Cheng, et al.Scientific Reports|January 13, 2021
Comparative genomics and metabolomics analysis of Riemerella anatipestifer strain CH-1 and CH-2Jibin Liu, Anchun Cheng, Mingshu Wang, et al.Vaccines|September 14, 2019
Mutations in VP0 and 2C Proteins of Duck Hepatitis A Virus Type 3 Attenuate Viral Infection and VirulenceXingjian Wen, Jinlong Guo, Di Sun, et al.BMC Veterinary Research|January 10, 2020
Duck enteritis virus UL21 is a late gene encoding a protein that interacts with pUL16Linjiang Yang, Mingshu Wang, Chunhui Zeng, et al.Virology|May 1, 2024
E-M349E and NS2A/2B-P1(T) are compensatory mutations of rDTMUV-NS2AB-P1P1'(AA), which regain virus proliferation by enhancing the virus package and restoring NS2A/2B cleavageBowen Jiang, Wei Zhang, Tao Hu, et al.Poultry Science|July 28, 2022
The substitution at residue 218 of the NS5 protein methyltransferase domain of Tembusu virus impairs viral replication and translation and may triggers RIG-I-like receptor signalingXuedong Wu, Yuhong Pan, Juan Huang, et al.Frontiers in Immunology|August 23, 2021
Replication/Assembly Defective Avian Flavivirus With Internal Deletions in the Capsid Can Be Used as an Approach for Living Attenuated VaccineYu He, Xiaoli Wang, Jiaqi Guo, et al.Frontiers in Microbiology|May 7, 2020
Duck Tembusu Virus Utilizes miR-221-3p Expression to Facilitate Viral Replication <i>via</i> Targeting of Suppressor of Cytokine Signaling 5Min Cui, Shuling Chen, Shaqiu Zhang, et al.Journal of Virology|August 8, 2020
The First Nonmammalian Pegivirus Demonstrates Efficient <i>In Vitro</i> Replication and High LymphotropismZhen Wu, Yuanyuan Wu, Wei Zhang, et al.Frontiers in Immunology|October 19, 2020
SOCS Proteins Participate in the Regulation of Innate Immune Response Caused by VirusesShanzhi Huang, Ke Liu, Anchun Cheng, et al.Pageof 53