生物
病毒学
猪繁殖与呼吸综合征病毒
遗传学
基因组
病毒
重组
基因
遗传重组
减毒疫苗
重组DNA
核糖核酸
RNA病毒
同源重组
毒力
作者
Liwei Li,Jinxia Chen,Zhengda Cao,Ziqiang Guo,Jiachen Liu,Yanjun Zhou,Guangzhi Tong,Fei Gao
出处
期刊:MBio
[American Society for Microbiology]
日期:2024-12-23
卷期号:16 (2): e0235024-e0235024
被引量:8
标识
DOI:10.1128/mbio.02350-24
摘要
Porcine reproductive and respiratory syndrome viruses (PRRSVs) are genetically diverse, and this is due in part to their extensive recombination. Live vaccines are widely used to prevent and control PRRS in China. However, owing to the wide variety of live vaccines, non-standard use, and the wild viruses prevalent on pig farms, new strains, generated via RNA recombination, are continuously emerging. Vaccine strains are also involved in PRRSV recombination, which leads to the emergence of new variants and alterations in virulence and pathogenesis. A recombination-resistant genome was engineered by rewiring the entire transcriptional regulatory sequence (TRS) circuit of the live PRRSV vaccine strain. Theoretically, after clinical application, once the virus recombines with the genome of the epidemic strain, the base pairing between the two sets of TRS circuits should be disrupted, resulting in a fatal genetic trap for the generation of an RNA recombinant progeny virus. Therefore, the remodeled PRRSV TRS mutant generated in this study can serve as a recombination-resistant platform for the rational design of safe PRRS vaccines in the future.
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