[1] |
ZHANG Yanmin, ZHOU Yanan, CAO Lei, TIAN Yuan, LIU Xuping, TAN Wensong, ZHAO Liang.
Expression and Immunogenicity Analysis of Classical Swine Fever Virus E2-GM-CSF Fusion Protein in HEK293T Cells
[J]. China Animal Husbandry and Veterinary Medicine, 2022, 49(2): 669-676.
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[2] |
LIU Huan, ZHANG Mengmeng, CUI Yifang, LIU Jing, ZHANG Jingju, CHEN Dengjin, LI Xiubo, LI Cun, XU Fei.
Optimization of Foaming Performance of Compound Quaternary Ammonium Salt Foam Disinfectant and Evaluation of Its Killing Effect on Viruses
[J]. China Animal Husbandry and Veterinary Medicine, 2022, 49(12): 4866-4877.
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[3] |
LI Mingyang, FANG Qingli, HUANG Weijian.
Molecular Epidemiology of Bovine Astrovirus in Buffalo from Guangxi
[J]. China Animal Husbandry and Veterinary Medicine, 2020, 47(9): 2926-2934.
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[4] |
XU Hu, PAN Yan, SONG Mingxin.
Genomic Characteristics of 2.1d Subtype Epidemic Strain of Classical Swine Fever in China in 2018
[J]. China Animal Husbandry and Veterinary Medicine, 2020, 47(8): 2561-2570.
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[5] |
WANG Jiayun, WANG Xin, WANG Bingyu, ZENG Hao, SHEN Wenhui, YU Jiang, CHEN Zhi, ZHANG Yuyu, SUN Wenbo, GUO Lihui, REN Sufang, LI Yubao, WU Jiaqiang.
Epidemiological Investigation of CSFV in Shandong Province from 2017 to 2019
[J]. China Animal Husbandry and Veterinary Medicine, 2020, 47(6): 1870-1881.
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[6] |
LI Xiaofei, CHEN Ting, WEI Xiaoxiao, SUN Airong, HUANG Yan, GE Xiaojie, XU Ting, WANG Caihong, QIN Liting.
Establishment and Application of TaqMan-MGB Real-time RT-PCR Assay for Detection of Porcine Reproductive and Respiratory Syndrome Virus
[J]. , 2019, 46(1): 239-246.
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[7] |
LUO Dandan, LIAO Dangjin, YE Yonggang.
Cloning and Molecular Characterization Analysis of E2 Gene of Classical Swine Fever Virus
[J]. , 2018, 45(8): 2095-2103.
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[8] |
REN Pengju, LI Peng, ZHANG Qiuyu, WANG Yaping, WU Leyi, WANG Xuannian.
Research Progress on New Type Classical Swine Fever Vaccines
[J]. , 2018, 45(7): 1958-1964.
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[9] |
YANG Fan, SHI Shunli, XU Na, LEI Yu, CHANG Tana, LI Pingan, GUAN Pingyuan.
Establishment of a Multiplex RT-PCR Detection Method for Three Genotypes of Bovine Parainfluenza Virus Type 3
[J]. , 2018, 45(1): 32-38.
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[10] |
ZHANG Xiao-fen, YE Gui-sheng.
PCR Amplification and Bioinformatics Analysis of IL-7 Gene in Tibetan Sheep
[J]. , 2017, 44(9): 2558-2565.
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[11] |
WANG Shu-juan, LIU Mei-fen, YAN Ruo-qian, BAN Fu-guo, ZHAO Xue-li, MA Zhen-yuan, WANG Hua-jun, WANG Cui, ZHAO Ming-jun.
Establishment and Application of Real-time Quantitative PCR Assay for Detection of Classical Swine Fever Virus
[J]. , 2017, 44(7): 2112-2118.
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[12] |
TANG Lian-fei, YU Si-yu, ZHOU Yu.
Establishment of Digital RT-PCR Assay for Detection of Swine Influenza Virus H3N2 Subtype
[J]. , 2017, 44(6): 1847-1853.
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[13] |
SHI Kai-chuang, XU Xin-ting, HU Jie, SU Yan-qiong, LU Wen-jun, CHEN Han-zhong.
Establishment and Application of a Multiplex RT-PCR Assay for Differential Detection of Classical, Highly Pathogenic and Vaccine Strains of North American Genotype PRRSV
[J]. , 2017, 44(3): 879-887.
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[14] |
YAO Huai-bing, ZHAO Yi, LIU Hong, ZHANG Yi, REN Fang, HUANG Jiong.
Development and Application of Two-temperature RT-PCR for Detectionof Type O Foot and Mouth Disease Virus
[J]. , 2017, 44(2): 311-318.
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[15] |
WANG Bo, WANG Hui-yu, ZHAO Bao-hua, LUO Jing, WANG Cheng-min, HE Hong-xuan, HAN Xue-qing.
Development and Application of Duplex Real-time RT-PCR Assay for Detection of H1 and H3 Subtype Swine Influenza Viruses
[J]. , 2017, 44(10): 3035-3041.
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