数字农科院2.0

Epidemiology and Pathogenicity Analysis Based on Partial Recombinant PRRSV Strains in China

文献类型: 外文期刊

作者: You, Shangshang;Li, Lingguang;Wang, Junna;Luo, Lingzhi;Song, Junhan;Ju, Houbin;Yu, Lingxue;Li, Guoxin;Cui, Jin

作者机构:

关键词: genetic evolution;genetic recombination;pathogenicity;PRRSV

期刊名称: TRANSBOUNDARY AND EMERGING DISEASES

ISSN: 1865-1674

年卷期: 2025 年 2025 卷 1 期

页码:

收录情况: SCIE(2025版)

摘要: Currently, multiple recombinant variants of porcine reproductive and respiratory syndrome virus (PRRSV) are circulating in China. These variants exhibit differences in pathogenicity. To comprehensively understand the current status of the virus and its recombination patterns, a total of 677 PRRSV strains were used for evolutionary analysis, of which 673 strains were isolated from mainland China. The results indicated that current PRRSV strains in circulation in China are highly complex, with NADC30-like strains having replaced highly pathogenic strain of PRRSV (HP-PRRSV) strains as the dominant strains. An analysis of the patterns and hotspots of PRRSV-2 recombinant strains from 2019 to 2023 revealed two main types: the strains with NADC30 as the primary parent were observed to have recombination hotspots concentrated in the Nsp1, Nsp4 to Nsp9, and ORF2 to ORF6 regions, while recombination frequencies were found to be lower in the Nsp2, Nsp10, and Nsp11 regions. In contrast, the other type of recombinant strain, primarily derived from HP-PRRSV, exhibited recombination hotspots concentrated in the Nsp2 and ORF2 to ORF6 regions, while the recombination frequency in the Nsp8 and Nsp9 regions was relatively low. Further, a comprehensive analysis of the phylogenetic and recombination patterns of four PRRSV strains (ZJ-2021-1, JS-2020-1, GZ-2022-1, and SH-2020-2) indicated variations in genotyping precision among Nsp2, ORF5, and the entire genome. As demonstrated by the results of the animal experiments, there were differences in pathogenicity between ZJ-2021-1 and JS-2020-1. The pathogenicity of the recombinant strain exhibited similar characteristics to its parental skeleton. Our results provided reference data for exploring epidemiological characteristics and pathogenicity of recombinant PRRSV strains.

分类号:

  • 相关文献

[1]Molecular characterization and pathogenicity evaluation of enterovirus G isolated from diarrheic piglets. Ibrahim, Yassein M.,Zhang, Wenli,Wang, Xinrong,Werid, Gebremeskel Mamu,Fu, Lizhi,Yu, Haidong,Wang, Yue. 2023

[2]Recent Advances in Porcine Reproductive and Respiratory Syndrome Virus NADC30-Like Research in China: Molecular Characterization, Pathogenicity, and Control. Ying Yu,Qiaoya Zhang,Zhi Cao,Yan Dong Tang,Dasong Xia,Gang Wang,Hu Shan. 2022

[3]Recombinant characteristics, pathogenicity, and viral shedding of a novel PRRSV variant derived from twice inter-lineage recombination. Xing Yang Cui,Da Song Xia,Xin Yi Huang,Xiao Xiao Tian,Tao Wang,Yong Bo Yang,Gang Wang,Hai Wei Wang,Yue Sun,Yi Hong Xiao,Zhi Jun Tian,Xue Hui Cai,Tong Qing An. 2022

[4]Lineage 1 Porcine Reproductive and Respiratory Syndrome Virus Attenuated Live Vaccine Provides Broad Cross-Protection against Homologous and Heterologous NADC30-Like Virus Challenge in Piglets. Hongliang Zhang,Lirun Xiang,Hu Xu,Chao Li,Yan Dong Tang,Bangjun Gong,Wenli Zhang,Jing Zhao,Shuaijie Song,Jinmei Peng,Qian Wang,Tongqing An,Xuehui Cai,Zhi Jun Tian. 2022

[5]Recombination between NADC34-like and QYYZ-like strain of porcine reproductive and respiratory syndrome virus with high pathogenicity for piglets in China. Sun, Ying-Feng,Liu, Ye,Yang, Jing,Li, Wen-Zhong,Yu, Xiao-Xue,Wang, Shuai-Yong,Li, Liu-An,Yu, Hai. 2022

[6]Isolation of serotype 2 porcine teschovirus in China: Evidence of natural recombination. Wang, Bin,Tian, Zhi-Jun,Gong, Da-Qing,Li, Deng-Yun,Wang, Yao,Chen, Jia-Zeng,An, Tong-Qing,Peng, Jin-Mei,Wang, Bin,Tong, Guang-Zhi,Wang, Bin,Chen, Jia-Zeng,Peng, Jin-Mei,Tong, Guang-Zhi.

[7]Crop Wild Relatives-Undervalued, Underutilized and under Threat?. Ford-Lloyd, Brian V.,Armstrong, Susan J.,Kell, Shelagh P.,Maxted, Nigel,Schmidt, Markus,Barazani, Oz,Hadas, Rivka,Engels, Jan,Hammer, Karl,Khoshbakht, Korous,Kang, Dingming,Li, Yinghui,Qiu, Lijuan,Long, Chunlin,Lu, Bao-Rong,Ma, Keping,Ge, Song,Wei, Wei,Viet Tung Nguyen,Zhang, Zongwen.

[8]Shifts in the evolutionary rate and intensity of purifying selection between two Brassica genomes revealed by analyses of orthologous transposons and relics of a whole genome triplication. Zhao, Meixia,Tong, Chaobo,Yu, Jingyin,Huang, Shunmou,Liu, Shengyi,Zhao, Meixia,Du, Jianchang,Lin, Feng,Ma, Jianxin,Wang, Xiaowu. 2013

[9]Molecular Characterization and Phylogenetic Analysis of a Novel Porcine Epidemic Diarrhea Virus Circulating in Large-scale Pig Farms in Xinjiang, China. Chen, Jinlong,Tian, Lulu,LI, Zhiyuan,Wang, Lixia,Guo, Yun,Shang, Yunxia,Sun, Yaoqiang,Huang, Xiaoxing,Meng, Qingling,Cai, Xuepeng,Xia, Xianzhu,Qiao, Jun. 2023

[10]Concurrent Disruption of Genetic Interference and Increase of Genetic Recombination Frequency in Hybrid Rice Using CRISPR/Cas9. Chaolei Liu,Yiwei Cao,Yufeng Hua,Guijie Du,Qing Liu,Xin Wei,Tingting Sun,Jianrong Lin,Mingguo Wu,Zhukuan Cheng,Kejian Wang. 2021

[11]CsKIP1.7A, a gene involved in fruit development, contributes to the yield heterosis formation of hybrid F1 in cucumber. Yu, Daoliang,Zhang, Shengping,Miao, Han,Dong, Shaoyun,Liu, Xiaoping,Shi, Lixue,Xie, Qing,Wang, Weiping,Wei, Shuang,Gu, Xingfang,Bo, Kailiang. 2025

[12]Evaluation of genetic identity and variation in cultivars of Pyrus pyrifolia (Burm.f.) Nakai from China using microsatellite markers. Cao, Y.,Yang, J.,Zhang, S.,Cao, Y.,Tian, L.,Gao, Y..

[13]Genetic Evolution during the development of an attenuated EIAV vaccine. Wang, Xue-Feng,Lin, Yue-Zhi,Li, Qiang,Liu, Qiang,Zhao, Wei-Wei,Du, Cheng,Chen, Jie,Wang, Xiaojun,Zhou, Jian-Hua,Wang, Xue-Feng,Li, Qiang,Zhou, Jian-Hua. 2016

[14]Molecular Epidemic Characteristics and Genetic Evolution of Porcine Circovirus Type 2 (PCV2) in Swine Herds of Shanghai, China. Le Kang,Abdul Wahaab,Kun Shi,Bahar E. Mustafa,Yan Zhang,Junjie Zhang,Zongjie Li,Yafeng Qiu,Beibei Li,Ke Liu,Donghua Shao,Zhiyong Ma,Dengke Zhong,Jianchao Wei. 2022

[15]Investigation of porcine circovirus type 2 and porcine circovirus type 3 infections based on dual TaqMan fluorescent quantitative PCR method and genetic evolutionary analysis of these two viruses. Mengxiang Cao,Yanwu Wei,Weilin Shi,Li Feng,Liping Huang. 2024

[16]Genetic evolution and alterations in pathogenicity of highly pathogenic porcine reproductive and respiratory syndrome virus. Chao Li,Hu Xu,Jinhao Li,Bangjun Gong,Zhenyang Guo,Lirun Xiang,Siyu Zhang,Qi Sun,Jing Zhao,Menglin Zhang,Chaoliang Leng,Kuan Zhao,Jianan Wu,Qian Wang,Jinmei Peng,Guohui Zhou,Huairan Liu,Tongqing An,Xuehui Cai,Zhi Jun Tian,Yan Dong Tang,Hongliang Zhang. 2025

[17]Genetic Epidemiology of Porcine Epidemic Diarrhea Virus Circulating in China From 2010 to 2024: Characterization of Phylogenetic and Genetic Diversity of S1-Based Genes. Jing Sun,Jiongze Cheng,Da Shi,Xiangwen Xu,Yijia Liu,Jiale Ying,Yulin Zhao,Huihua Zheng,Junfang Yan,Dongbo Sun,Houhui Song,Mingjun Su. 2025

[18]Analysis of genomic selection characteristics of local cattle breeds in Gansu. Bao Cai,Yandong Kang,Lin Xiong,Jie Pei,Qianyun Ge,Xiaoyun Wu,Manyu Gan,Xian Guo. 2025

[19]Global evolution dynamics of genotype VI NDVs and dissection of the biological properties of strains from the prevalent sub-genotypes. Di, Tao,Han, Zongxi,Li, Huixin,Shao, Yuhao,Sun, Junfeng,Liu, Shengwang. 2025

[20]Global dissemination and evolutionary dynamics of duck hepatitis A virus type 3 driven by VP1 gene variation. Zhao, Saisai,Hao, Yizhang,Zhang, Qing,Li, Bing,Fan, Yaru,Liu, Guocheng,Li, Yiman,Zhang, Jiahao,Tang, Yi,Diao, Youxiang. 2025

作者其他论文 更多>>