数字农科院2.0

Application of CRISPR/Cas9 for Rapid Genome Editing of Pseudorabies Virus and Bovine Herpesvirus-1

文献类型: 外文期刊

作者: Yu W.;Liu J.;Liu Y.;Forlenza M.;Chen H.

作者机构:

关键词: CRISPR/Cas9;gene editing;herpesvirus;recombination

期刊名称: Viruses

ISSN: 1999-4915

年卷期: 2024 年 16 卷 2 期

页码:

收录情况: SCIE(2024版)

摘要: The CRISPR/Cas9 system is widely used to manipulate viral genomes. Although Alphaherpesvirinae genomes are large and complicated to edit, in recent years several Pseudorabies virus (PRV) mutants have been successfully generated using the CRISPR/Cas9 system. However, the application of CRISPR/Cas9 editing on another member of alpha herpesviruses, bovine herpesvirus-1 (BHV-1), is rarely reported. This paper reports a rapid and straightforward approach to manipulating herpesviruses genome using CRISPR/Cas9. The recombinant plasmids contained the left and right arm of the thymidine kinase (TK) gene of PRV or of the glycoprotein I (gI) and glycoprotein E (gE) of BHV-1. Upon the cleavage of the TK or gIgE gene by Cas9 protein, this was replaced by the enhanced green fluorescence protein (eGFP) by homologous recombination. With this approach, we generated recombinant TK-/eGFP+ PRV and gIgE-/eGFP+ BHV-1 mutants and then proceeded to characterize their biological activities in vitro and in vivo. In conclusion, we showed that alpha herpesvirus, including PRV and BHV-1, can be rapidly edited using the CRISPR/Cas9 approach paving the way to the development of animal herpesvirus vaccines.

分类号:

  • 相关文献

[1]The Potential of CRISPR/Cas9 Gene Editing as a Treatment Strategy for Inherited Diseases. Sameh A. Abdelnour,Long Xie,Abdallah A. Hassanin,Erwei Zuo,Yangqing Lu. 2021

[2]Large DNA fragment deletion in lncRNA77580 regulates neighboring gene expression in soybean (Glycine max). Fengjuan Niu,Qiyan Jiang,Xianjun Sun,Zheng Hu,Lixia Wang,Hui Zhang. 2021

[3]Engineering broad-spectrum disease-resistant rice by editing multiple susceptibility genes. Hui Tao,Xuetao Shi,Feng He,Dan Wang,Ning Xiao,Hong Fang,Ruyi Wang,Fan Zhang,Min Wang,Aihong Li,Xionglun Liu,Guo Liang Wang,Yuese Ning. 2021

[4]The Potential of CRISPR/Cas9 Gene Editing as a Treatment Strategy for Inherited Diseases. Sameh A. Abdelnour,Long Xie,Abdallah A. Hassanin,Erwei Zuo,Yangqing Lu. 2022

[5]Physiological and Molecular Mechanisms of Lepidopteran Insects: Genomic Insights and Applications of Genome Editing for Future Research. Dongsheng Niu,Qing Zhao,Linbo Xu,Kejian Lin. 2024

[6]CRISPR/Cas9-mediated mutations of GS3 and GW5 positively regulate grain size and grain width in rice (Oryza sativa indica). Aqib Zeb,Amir Sohail,Shengjia Tang,Zhonghua Sheng,Peisong Hu. 2025

[7]An efficient CRISPR/Cas9-mediated editing of phytoene desaturase in hexaploid sweetpotato. Tang, Wei,Ma, Meng,Song, Weihan,Kou, Meng,Wang, Xin,Yan, Hui,Li, Chen,Zhang, Aicen,Gao, Tianqi,Gao, Runfei,Zhang, Yungang,Li, Qiang. 2025

[8]区分马流感和马鼻肺炎感染的分子生物学检测技术研究. 胡哲,初晓雨,常浩,王美月,李爽,王晓钧. 2015

[9]Isolation and characterization of a herpesvirus from feral pigeons in China. Zhao, Panpan,Ma, Jian,Guo, Ying,Tian, Li,Guo, Guangyang,Zhang, Kexin,Xing, Mingwei,Ma, Jian. 2015

[10]Crispr/Cas9-Mediated 2-Sgrna Cleavage Facilitates Pseudorabies V.irus Editing. Tang, YD, Guo, JC, Wang, TY, Zhao, K, Liu, JT, Gao, JC, Tian, ZJ, An, TQ, Cai, XH. 2018

[11]MAPK pathway orchestrates gallid alphaherpesvirus 1 infection through the biphasic activation of MEK/ERK and p38 MAPK signaling. Lu Cui,Xuefeng Li,Zheyi Liu,Xiaoxiao Liu,Yongxin Zhu,Yu Zhang,Zongxi Han,Yilei Zhang,Shengwang Liu,Hai Li. 2024

[12]MARCH1 and MARCH2 inhibit pseudorabies virus replication by trapping the viral cell-to-cell fusion complex in trans-Golgi network. Rui Huang,Cui Hong Rao,Yuan Zhe Bai,Changqing Yu,Meng Chen,Jin Mei Peng,Shi Jia Xu,Yue Sun,Meng Fandan,Chuang Lyu,Mirwaise Khan,Tong Qing An,Zhi Jun Tian,Xue Hui Cai,Gang Wang,Yan Dong Tang. 2024

[13]In planta haploid induction by genome editing of DMP in the model legume Medicago truncatula. Wang N., Xia X., Jiang T., Li L., Zhang P., Niu L., Cheng H., Wang K., Lin H.. 2023

[14]Multiplex precision gene editing by a surrogate prime editor in rice. Li H., Zhu Z., Li S., Li J., Yan L., Zhang C., Ma Y., Xia L.. 2022

[15]Rice genomes recorded ancient pararetrovirus activities: Virus genealogy and multiple origins of endogenization during rice speciation. Chen, Sunlu,Liu, Ruifang,Kishima, Yuji,Koyanagi, Kanako O.,Liu, Ruifang.

[16]Sex at the origin: An Asian population of the rice blast fungus Magnaporthe oryzae reproduces sexually. Saleh, Dounia,Adreit, Henri,Milazzo, Joelle,Ravigne, Virginie,Bazin, Eric,Tharreau, Didier,Saleh, Dounia,Fournier, Elisabeth,Xu, Peng,Li, Chenguyn,Shen, Ying,Notteghem, Jean-Loup.

[17]IDENTIFICATION OF GENOME RECOMBINATION AMONG APPLE STEM PITTING VIRUS ISOLATES. Li, Z.,Liu, P.,Sun, L.,Wu, Y.,Li, Z.,Liu, P.,Sun, L.,Wu, Y.,Li, Z.,Kondo, H.,Andika, I. B..

[18]Emergence of novel nephropathogenic infectious bronchitis viruses currently circulating in Chinese chicken flocks. Xu, Qianqian,Han, Zongxi,Wang, Qiuling,Zhang, Tingting,Gao, Mengying,Zhao, Yan,Shao, Yuhao,Li, Huixin,Kong, Xiangang,Liu, Shengwang.

[19]Genomic analyses reveal that partial sequence of an earlier pseudorabies virus in China is originated from a Bartha-vaccine-like strain. Ye, Chao,Guo, Jin-Chao,Gao, Jia-Cong,Wang, Tong-Yun,Zhao, Kuan,Chang, Xiao-Bo,Wang, Qian,Peng, Jin-Mei,Tian, Zhi-Jun,Cai, Xue-Hui,An, Tong-Qing,Ye, Chao,Tong, Guang-Zhi.

[20]Young but not relatively old retrotransposons are preferentially located in gene-rich euchromatic regions in tomato (Solanum lycopersicum) plants. Yingxiu Xu,Jianchang Du.

作者其他论文 更多>>