数字农科院2.0

A new PEDV strain CH/HLJJS/2022 can challenge current detection methods and vaccines

文献类型: 外文期刊

作者: Xin Yao;Wen Ting Qiao;Yu Qian Zhang;Wei Hong Lu;Zhen Wei Wang;Hui Xin Li;Jin Long Li

作者机构:

关键词: CH/HLJJS/2022;Evolutionary analysis;Neutralizing epitope mutations;Porcine epidemic diarrhea virus;Typing characteristics

期刊名称: Virology Journal

ISSN: 1743-422X

年卷期: 2023 年 20 卷 1 期

页码:

收录情况: SCIE(2023版)

摘要: Background: Porcine epidemic diarrhea virus (PEDV) variant strains cause great economic losses to the global swine industry. However, vaccines do not provide sufficient protection against currently circulating strains due to viral mutations. This study traced the molecular characteristics of the most recent isolates in China and aimed to provide a basis for the prevention and treatment of PEDV. Methods: We obtained samples from a Chinese diarrheal swine farm in 2022. Reverse transcription polymerase chain reaction and immunofluorescence were used to determine the etiology, and the full-length PEDV genome was sequenced. Nucleotide similarity was calculated using MEGA to construct a phylogenetic tree and DNASTAR. Mutant amino acids were aligned using DNAMAN and modeled by SWISS-MODEL, Phyre2 and FirstGlance in JMOL for protein tertiary structure simulation. Additionally, TMHMM was used for protein function prediction. Results: A PEDV virulent strain CH/HLJJS/2022 was successfully isolated in China. A genome-wide based phylogenetic analysis suggests that it belongs to the GII subtype, and 96.1–98.9% homology existed in the whole genomes of other strains. For the first time, simultaneous mutations of four amino acids were found in the highly conserved membrane (M) and nucleocapsid (N) proteins, as well as eight amino acid mutations that differed from the vast majority of strains in the spike (S) protein. Three of the mutations alter the S-protein spatial structure. In addition, typing markers exist during strain evolution, but isolates are using the fusion of specific amino acids from multiple variant strains to add additional features, as also demonstrated by protein alignments and 3D models of numerous subtype strains. Conclusion: The newly isolated prevalent strain CH/HLJJS/2022 belonged to the GII subtype, and thirteen mutations different from other strains were found, including mutations in the highly conserved m and N proteins, and in the S1° and COE neutralizing epitopes of the S protein. PEDV is breaking through original cognitions and moving on a more complex path. Surveillance for PEDV now and in the future and improvements derived from mutant strain vaccines are highly warranted.

分类号:

  • 相关文献

[1]The highly pathogenic strain of porcine deltacoronavirus disrupts the intestinal barrier and causes diarrhea in newborn piglets. Xin Yao,Wei Hong Lu,Wen Ting Qiao,Yu Qian Zhang,Bao Ying Zhang,Hui Xin Li,Jin Long Li. 2025

[2]Evolution of H9N2 influenza viruses from domestic poultry in Mainland China. Li, CJ,Yu, KZ,Tian, GB,Yu, DD,Liu, LL,Jing, B,Ping, JH,Chen, HL.

[3]Application of resequencing to rice genomics, functional genomics and evolutionary analysis. Longbiao Guo , Zhenyu Gao , Qian Qian *. 2014

[4]Comprehensive identification and functional characterization of GhpPLA gene family in reproductive organ development. Mingyang Wang,Dingyan Tian,Tengyu Li,Jingwen Pan,Chenlei Wang,Lanxin Wu,Kun Luo,Zhenyu Mei,Jinwei Liu,Wei Chen,Jinbo Yao,Yan Li,Fuxin Wang,Shouhong Zhu,Yongshan Zhang. 2023

[5]Genome-wide identification and expression analysis of CRK gene family in chili pepper (Capsicum annuum L.) in response to Colletotrichum truncatum infection. Rout, Swati Sumit,Rout, Priyadarshini,Uzair, Muhammad,Kumar, Gagan,Nanda, Satyabrata. 2022

[6]Identification of MYB genes reveals their potential functions in cadmium stress response and the regulation of cannabinoid biosynthesis in hemp. Ming Yin,Gen Pan,Jie Tao,Monika S. Doblin,Wei Zeng,Langlang Pan,Lining Zhao,Zheng Li,Hui Jiang,Li Chang,Yong Deng,Defang Li,Siqi Huang. 2022

[7]Evolutionary Analysis of Respiratory Burst Oxidase Homolog (RBOH) Genes in Plants and Characterization of ZmRBOHs. Haiyang Zhang,Xu Wang,An Yan,Jie Deng,Yanping Xie,Shiyuan Liu,Debin Liu,Lin He,Jianfeng Weng,Jingyu Xu. 2023

[8]Genome-wide identification and evolutionary analysis of leucine-rich repeat receptor-like protein kinase genes in soybean. Fulai Zhou,Yong Guo, Li-Juan Qiu. 2016

[9]Genome-Wide Identification and Expression Analysis of BnPP2C Gene Family in Response to Multiple Stresses in Ramie (Boehmeria nivea L.). Yu Chen,Haohan Zhao,Yue Wang,Xiaojun Qiu,Gang Gao,Aiguo Zhu,Ping Chen,Xiaofei Wang,Kunmei Chen,Jia Chen,Peng Chen,Jikang Chen. 2023

[10]Genome-wide identification, expression analysis, and response to abiotic stress of the phosphate transporter gene family in cucumber (Cucumis sativus L.). Kunhao Xie,Mintao Sun,Xiaoqin Wang,Xiaoya Zhou,Qinghua Di,Yang Li,Guoxiu Wu,Yansu Li,Chaoxing He,Shengli Li. 2025

[11]Codon Usage Preference and Evolutionary Analysis of Pseudorabies Virus. Aolong Xiong,Kai Li,Xiaodong Liu,Yunxin Ren,Fuchao Zhang,Xiaoqi Li,Ziqing Yuan,Junhong Bie,Jinxiang Li,Changzhan Xie. 2025

[12]Genome-Wide Identification and Expression Analyses of Odorant-Binding Proteins in Hoverfly Eupeodes corollae. He Yuan,Huiru Jia,Xianyong Zhou,Hui Li,Chao Wu,Kongming Wu. 2025

[13]Genomic Characteristics of a Novel Recombinant Bluetongue Virus Serotype 1 in Yunnan, China. Yunyi Chen,Shimei Luo,Nijing Lei,Zhenghao Ye,Xianping Ma,Shaoyu Yang,Huaijie Jia,Guangyu Qi,Guanghua Wang,Huashan Yi. 2025

[14]Porcine epidemic diarrhea virus virus-like particles produced in insect cells induce specific immune responses in mice. Wang, Cuiling,Wang, Cuiling,Yan, Feihu,Zheng, Xuexing,Wang, Hualei,Jin, Hongli,Wang, Chong,Zhao, Yongkun,Feng, Na,Wang, Tiecheng,Gao, Yuwei,Yang, Songtao,Xia, Xianzhu,Zheng, Xuexing,Jin, Hongli,Wang, Chong,Zheng, Xuexing,Wang, Hualei,Zhao, Yongkun,Feng, Na,Wang, Tiecheng,Gao, Yuwei,Yang, Songtao,Xia, Xianzhu.

[15]Reverse transcription-PCR assays for the differentiation of various US porcine epidemic diarrhea virus strains. Liu, Xinsheng,Wang, Qiuhong,Liu, Xinsheng.

[16]Construction of recombinant lactobacilli expressing the core neutralizing epitope (COE) of porcine epidemic diarrhea virus and a fusion protein consisting of COE and Escherichia coli heat-labile enterotoxin B, and comparison of the immune responses by orogastric immunization. Ge, Jun-Wei,Li, Yi-Jing,Liu, Di-Qiu.

[17]Attenuation of an original US porcine epidemic diarrhea virus strain PC22A via serial cell culture passage. Lin, Chun-Ming,Hou, Yixuan,Gao, Xiang,Liu, Xinsheng,Zheng, Lanlan,Saif, Linda J.,Wang, Qiuhong,Marthaler, Douglas G.,Marthaler, Douglas G.,Liu, Xinsheng,Zheng, Lanlan.

[18]SPIKE PROTEIN REGION (aa 636-789) OF PORCINE EPIDEMIC DIARRHEA VIRUS IS ESSENTIAL FOR INDUCTION OF NEUTRALIZING ANTIBODIES. Sun, D. B.,Feng, L.,Shi, H. Y.,Chen, J. F.,Liu, S. W.,Chen, H. Y.,Wang, Y. F..

[19]Porcine epidemic diarrhea virus nucleoprotein contributes to HMGB1 transcription and release by interacting with C/EBP-beta. Huan, Chang-chao,Wang, Hua-xia,Sheng, Xiang-xiang,Wang, Rui,Wang, Xin,Fan, Hong-jie,Mao, Xiang,Liao, Ying,Liu, Qin-fang,Tong, Guang-zhi,Ding, Chan,Mao, Xiang,Wu, Jia-qiang. 2016

[20]Epidemiology and vaccine of porcine epidemic diarrhea virus in China: a mini-review. Sun, Dongbo,Wang, Xinyu,Wei, Shan,Sun, Dongbo,Chen, Jianfei,Feng, Li.

作者其他论文 更多>>