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中国NADC30样猪繁殖与呼吸综合征病毒的基因组特征及流行趋势

Genomic characteristics and epidemic trends of NADC30-like PRRSV in China.

作者信息

Zhang Siyu, Xu Hu, Guo Zhenyang, Xiang Lirun, Li Chao, Gong Bangjun, Li Jinhao, Feng Zixuan, Kang Haonan, Wang Qian, Zhou Guohui, Leng Chaoliang, Zhao Kuan, Tang Yan-Dong, Liu Huairan, An Tong-Qing, Cai Xuehui, Peng Jinmei, Tian Zhi-Jun, Zhang Hongliang

机构信息

State Key Laboratory for Animal Disease Control and Prevention, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, No. 678 Haping Road, Xiangfang District, Harbin, 150001, China.

College of Veterinary Medicine, Hebei Agricultural University, Baoding, 071000, China.

出版信息

Porcine Health Manag. 2025 May 28;11(1):30. doi: 10.1186/s40813-025-00444-7.

Abstract

BACKGROUND

NADC30-like PRRSV was first identified in China in 2012 and had become the predominant circulating strain since 2016. Currently, the recombination patterns of NADC30-like PRRSV in China exhibit a high degree of complexity, characterized by low whole-genome sequence homology. The genomic features and epidemiological trends of these strains remain to be elucidated.

RESULTS

To evaluate the prevalence of NADC30-like PRRSV in China, this study acquired 30 whole-genome sequences of NADC30-like strains via Next-Generation Sequencing (NGS). These sequences were subsequently integrated with 224 whole-genome sequences from China available in the GenBank database. A comprehensive analysis of the genomic characteristics of contemporary NADC30-like PRRSV strains in China was conducted. Recombinant analysis indicated a yearly increase in the number of NADC30-like strains exhibiting recombination signals, whereas nonrecombinant NADC30-like strains have become nearly extinct. Among the recombination events, those involving L1C and L8E as parental strains are most prevalent. Based on the results of recombination and phylogenetic analyses, this study classified 120 Chinese NADC30-like strains with similar recombination characteristics into groups NADC30-R1 to R12. The intra-group genetic distances of the NADC30-R1 to R12 groups approximately 5.73% (SD ± 1.68), while the inter-group genetic distances between different groups are usually stably greater than 10%. The amino acid alignment of Nsp2 demonstrated that all NADC30-R1 to R12 strains exhibit a discontinuous deletion of 131 amino acids. These classifications do not exhibit consistent pathogenic characteristics within groups, with most NADC30-like PRRSVs showing moderate virulence. Geographical distribution analysis indicated that NADC30 whole-genome sequences in China originated from 19 provinces. Notably, the NADC30-R1 and NADC30-R2 strains are the most widely distributed and abundant, suggesting that these variants have established localized epidemics in specific regions.

CONCLUSION

In summary, the vast majority of NADC30-like strains in our country have undergone recombination, L1C + L8E is the most common recombination mode. The NADC30-like strains in China can be classified into 12 different recombination patterns, NADC30-R1 and NADC30-R2 strains are already showing pandemic trends. These findings provide a critical foundation for future NADC30-like PRRSV prevention and control strategies.

摘要

背景

NADC30样猪繁殖与呼吸综合征病毒(PRRSV)于2012年首次在中国被发现,自2016年以来已成为主要的流行毒株。目前,中国NADC30样PRRSV的重组模式呈现出高度复杂性,其全基因组序列同源性较低。这些毒株的基因组特征和流行病学趋势仍有待阐明。

结果

为评估NADC30样PRRSV在中国的流行情况,本研究通过二代测序(NGS)获得了30个NADC30样毒株的全基因组序列。随后,这些序列与GenBank数据库中来自中国的224个全基因组序列进行整合。对中国当代NADC30样PRRSV毒株的基因组特征进行了全面分析。重组分析表明,呈现重组信号的NADC30样毒株数量逐年增加,而非重组的NADC30样毒株已近乎绝迹。在重组事件中,涉及L1C和L8E作为亲本毒株的最为普遍。基于重组和系统发育分析结果,本研究将120个具有相似重组特征的中国NADC30样毒株分为NADC30-R1至R12组。NADC30-R1至R12组内的遗传距离约为5.73%(标准差±1.68),而不同组之间的组间遗传距离通常稳定大于10%。Nsp2的氨基酸比对表明,所有NADC30-R1至R12毒株均表现出131个氨基酸的不连续缺失。这些分类在组内并未表现出一致的致病特征,大多数NADC30样PRRSV表现为中等毒力。地理分布分析表明,中国的NADC30全基因组序列来自19个省份。值得注意的是,NADC30-R1和NADC30-R2毒株分布最广且数量最多,表明这些变异株已在特定区域形成局部流行。

结论

综上所述,我国绝大多数NADC30样毒株已发生重组,L1C + L8E是最常见的重组模式。中国的NADC30样毒株可分为12种不同的重组模式,NADC30-R1和NADC30-R2毒株已呈现大流行趋势。这些发现为未来NADC30样PRRSV的防控策略提供了关键依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6793/12121172/0c1d8eafa36a/40813_2025_444_Figa_HTML.jpg

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