Genetic diversity and recombination of NA-PRRSV field strains in Vietnam: Implications for vaccine efficacy

Porcine reproductive and respiratory syndrome (PRRS) causes severe reproductive losses in pregnant sows and piglets, resulting in substantial economic impact on the swine industry worldwide. However, due to the significant genetic diversity and rapid evolutionary changes of the pathogen, continuous surveillance and detailed genetic analysis of circulating strains are essential. The current study aimed to evaluate the genetic diversity of the hypervariable (HV) region of non-structural protein 2 (nsp2) among North American PRRSV strains isolated from swine farms in Vietnam. Phylogenetic analysis and multiple sequence alignment were conducted to determine subtype classification and assess genetic variability. A total of 48 field isolates were obtained, of which 12.5% belonged to classical NA-PRRSV, 16.6% to NADC30-like and 70.9% to HP-PRRSV, primarily distributed across sublineages 1.4, 5.1, 8.7 and 8.9. Amino acid comparisons found multiple insertions, deletions and substitutions at various positions within the hypervariable region of nsp2. The study revealed substantial genetic variation in the HV region of nsp2 among NA-PRRSV field strains, largely associated with recombination and immune escape. These findings highlight epidemiological risks to vaccine efficacy and underscore the need for continuous molecular surveillance to support effective PRRSV control in Vietnam.

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Publication Details

Journal
Acta Veterinaria Hungarica
Published
2026-09-01
DOI
https://doi.org/10.1556/004.2026.01282
Primary Topic
Animal Virus Infections Studies
Type
article
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article

Genetic diversity and recombination of NA-PRRSV field strains in Vietnam: Implications for vaccine efficacy

Hieu Tran‐Van, Tram-Anh Bui-Nguyen, Thu-Ha Le-Thi, Quoc-Vu Nguyen et al.
Acta Veterinaria Hungarica
Animal Virus Infections Studies
article

Genetic diversity and recombination of NA-PRRSV field strains in Vietnam: Implications for vaccine efficacy

Hieu Tran‐Van, Tram-Anh Bui-Nguyen, Thu-Ha Le-Thi, Quoc-Vu Nguyen, Ngoc-Hai Nguyen, Van-Anh Huynh-Nguyen, Xuan-Phat Dinh, Dieu-Thuy Nguyen-Thi
article en

Abstract

Porcine reproductive and respiratory syndrome (PRRS) causes severe reproductive losses in pregnant sows and piglets, resulting in substantial economic impact on the swine industry worldwide. However, due to the significant genetic diversity and rapid evolutionary changes of the pathogen, continuous surveillance and detailed genetic analysis of circulating strains are essential. The current study aimed to evaluate the genetic diversity of the hypervariable (HV) region of non-structural protein 2 (nsp2) among North American PRRSV strains isolated from swine farms in Vietnam. Phylogenetic analysis and multiple sequence alignment were conducted to determine subtype classification and assess genetic variability. A total of 48 field isolates were obtained, of which 12.5% belonged to classical NA-PRRSV, 16.6% to NADC30-like and 70.9% to HP-PRRSV, primarily distributed across sublineages 1.4, 5.1, 8.7 and 8.9. Amino acid comparisons found multiple insertions, deletions and substitutions at various positions within the hypervariable region of nsp2. The study revealed substantial genetic variation in the HV region of nsp2 among NA-PRRSV field strains, largely associated with recombination and immune escape. These findings highlight epidemiological risks to vaccine efficacy and underscore the need for continuous molecular surveillance to support effective PRRSV control in Vietnam.

Acta Veterinaria Hungarica
Vietnam National University Ho Chi Minh City (VN), Ho Chi Minh City University of Science (VN), Vietnam Academy of Science and Technology (VN), Nong Lam University Ho Chi Minh City (VN), Semtech (Canada) (CA)
Openalex Percentile: Top 14%
Animal Virus Infections Studies
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Genetic diversity and recombination of NA-PRRSV field strains in Vietnam: Implications for vaccine efficacy — Hieu Tran‐Van, Tram-Anh Bui-Nguyen, et al. · Acta Veterinaria Hungarica (2026) | TGRS Research Map | TGRS