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Journal of Virological Methods|June 14, 2024
Establishment of a RAA-CRISPR Cas12a based diagnostic method for peste des petits ruminants virus N gene and M geneJiao Xu, Yingli Wang, Yongqiang Zhang, et al.Science Advances|May 16, 2025
Sheep serve as amplifying hosts of Japanese encephalitis virus, increasing the risk of human infectionHailong Zhang, Dan Li, Jiayang Zheng, et al.Viruses|February 24, 2024
Generation of High-Quality African Swine Fever Virus Complete Genome from Field Samples by Next-Generation SequencingChuan Shi, Qinghua Wang, Yutian Liu, et al.Emerging Infectious Diseases|February 6, 2009
Peste des petits ruminants virus in Tibet, ChinaZhiliang Wang, Jingyue Bao, Xiaodong Wu, et al.Emerging Infectious Diseases|November 25, 2014
Molecular evolution of peste des petits ruminants virusMurali Muniraju, Muhammad Munir, AravindhBabu R Parthiban, et al.Emerging Infectious Diseases|August 25, 2018
Molecular Characterization of African Swine Fever Virus, China, 2018Shengqiang Ge, Jinming Li, Xiaoxu Fan, et al.Transboundary and Emerging Diseases|January 15, 2019
Genome comparison of African swine fever virus China/2018/AnhuiXCGQ strain and related European p72 Genotype II strainsJingyue Bao, Qinghua Wang, Peng Lin, et al.Frontiers in Microbiology|January 22, 2026
Development and validation of a novel triplex droplet digital PCR assay for simultaneous detection of African swine fever virus, pseudorabies virus, and porcine parvovirusJiarong Yu, Lu Zhu, Yuanyuan Zuo, et al.Microbiology and Immunology|November 24, 2004
Microarray analysis of temperature-induced transcriptome of Yersinia pestisYanping Han, Dongsheng Zhou, Xin Pang, et al.Research in Microbiology|April 6, 2005
Comparative transcriptome analysis of Yersinia pestis in response to hyperosmotic and high-salinity stressYanping Han, Dongsheng Zhou, Xin Pang, et al.Pageof 5