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Zhipeng Li

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Open access Aug 2026

The S32 amino acid deletion in the GP5 protein modulates the infectivity of porcine reproductive and respiratory syndrome virus

ABSTRACT The high genetic diversity of porcine reproductive and respiratory syndrome virus (PRRSV) poses a significant challenge to effective vaccination and infection prevention. Recently, NADC30-like PRRSV has become dominant in China. In this study, we characterized a PRRSV isolate XJ2020 from a vaccinated pig. The isolate exhibited moderate pathogenicity in piglets and clustered within the same sub-lineage as NADC30. Sequence analysis identified a unique deletion of the serine residue at position 32 (S32) in the GP5 protein. This deletion was introduced into a highly pathogenic PRRSV (HP-PRRSV) strain, JX2015, to generate the mutant JX2015-ΔS32 using a reverse genetic approach. We found that JX2015-△S32 showed reduced propagation in Marc-145 cells and decreased sensitivity to neutralization by MLV-derived anti-PRRSV positive serum, but exhibited enhance replication in primary porcine alveolar macrophages (PAMs) compared to its parental strain JX2015. Interestingly, the viral load in lung and ileum samples from JX2015-△S32-infected piglets was higher, but the lung injury was milder than in JX2015-infected piglets. Overall, this study highlights the S32 site in the PRRSV GP5 protein as an important factor influencing virus propagation, neutralization, cell tropism and pathogenicity in piglets, and suggests that targeting this residue could lead to the development of more effective PRRSV vaccines.

Xingdong Zhou, Xiaohui Zhang, E. Kan et al. · 0 citations
Open access Aug 2026

Characterization and pathogenicity of single-farm-isolated PRRSV 1 and PRRSV 2 strain in China

ABSTRACT Porcine reproductive and respiratory syndrome virus (PRRSV) remains a major threat to the swine industry globally. In China, the dominance of PRRSV 2 is complicated by the emergence and co-circulation of genetically distinct strains, including a rising number of PRRSV 1 cases. In this study, the concurrent circulation of PRRSV 1 and PRRSV 2 was identified, and two novel strains AHB1 and Chah2022 were isolated from a single sow farm experiencing reproductive failure. Genetic analysis revealed that AHB1 shared 81.6%-83.6% nucleotide identity with subtype 1 strains of PRRSV 1 and clustered within a new evolutionary branch, characterized by a continuous 54-amino acid deletion in nsp2 and 1-amino acid deletion in the GP3-GP4 overlap region. In contrast, Chah2022 was identified as a recombinant virus with NADC30-like (lineage 1) and highly pathogenic PRRSV-like (lineage 8) strains. Pathogenicity assessment in nursery piglet model demonstrated that both AHB1 and Chah2022 had established systemic and persistent infections, although with low or moderate clinical signs. Our findings provide the evidence of PRRSV 1 and PRRSV 2 concurrent circulation in the single sow farm in China, which highlights the ongoing evolution of both Chinese PRRSV species and underscores the urgent need for enhanced surveillance and updated control strategies.

Zhendong Zhang, Di Gao, Zihe Wang et al. · 0 citations