4.7 Article

Emergence of two novel recombinant porcine reproductive and respiratory syndrome viruses 2 (lineage 3) in Southwestern China

期刊

VETERINARY MICROBIOLOGY
卷 232, 期 -, 页码 30-41

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.vetmic.2019.01.026

关键词

Porcine reproductive and respiratory syndrome virus (PRRSV); ORF5; Lineage 3; Recombination; Pathogenicity

资金

  1. Applied Basic Research Program of Science and Technology Department of Sichuan Province [2019YJ0561, 2018JY0640, 2018JY0252]
  2. Transformation of Agricultural Achievements in Sichuan Province [2018NZZJ008]
  3. Major Science and Technology Projects in Sichuan Province [2018NZDZX0006, 2018NZ0130]
  4. Public Welfare Scientific Research Institutes Basic Research Projects [SASA2018A01]
  5. Transformation Fund of Scientific and Technological Achievements of Scientific Research Institutes in Sichuan Province [2018YSZH0005]
  6. Special Finance of Sichuan [SASA2014CZYX009]
  7. Program for Pig Industry Technology System Innovation Team of Sichuan Province [sccxtd-004]
  8. Science & Technology Support Program of Sichuan [2016NZ0006, 2016NYZ0042]

向作者/读者索取更多资源

The lineage 3 of porcine reproductive and respiratory syndrome virus 2 (PRRSV-2) was first reported in mainland China in 2010 and it has spread rapidly in recent years. Here, two novel lineage 3 strains of PRRSV-2 were isolated from diseased pigs in Southwestern China during 2017-2018, and were designated as GZgy17 and SCya18. The complete genomes of the two isolates were then determined, and sequence alignment revealed that GZgy17 had the same discontinuous 30-amino acid (aa) deletion in NSP2 as JXA1, while SCyal8 contained the discontinuous 131-aa deletion in NSP2 identical to that of NADC30, when compared to the strain VR-2332. Notably, GZgy17 contained an additional 19-aa deletion in NSP2, and SCyal8 had a unique 3-nt deletion in its 3'UTR. Homology and phylogenetic analysis showed that GZgy17 and SCya18 shared low nucleotide homology (91.2-92.0%) with QYYZ and were classified into a new cluster of lineage 3 strains based on ORF5 genotyping. Recombination analyses revealed that GZgy17 and SCyal8 both originated from a SH/CH/2016-like (lineage 3) strain and had recombined with a JXA1-like (lineage 8) and a NADC30-like (lineage 1) strain, respectively. Furthermore, we compared the virulence of the two strains in 4-week-old piglets. The results showed that GZgy17 caused mortality rates of 20% and exhibited higher pathogenicity in piglets compared to SCya18. Our findings suggest that recombination might be responsible for the variations in pathogenicity of lineage 3 strains of PRRSV-2 and highlight the importance of surveillance of this lineage in China.

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