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Published on: May 22, 2021
Molecular characterisation of Porcine rubulavirus (PorPV) isolates from different outbreaks in Mexico
S Cuevas-Romero1,2,3, J F Rivera-Benítez4, A-L Blomström5
1Centro Nacional de Investigación Disciplinaria en Microbiología Animal, INIFAP, Mexico City, Mexico. cuevas.julieta@inifap.gob.mx.
Abstract:
Since the report of the initial outbreak of Porcine rubulavirus (PorPV) infection in pigs, only one full-length genome from 1984 (PorPV-LPMV/1984) has been characterised. To investigate the overall genetic variation, full-length gene nucleotide sequences of current PorPV isolates were obtained from different clinical cases of infected swine. Genome organisation and sequence analysis of the encoded proteins (NP, P, F, M, HN and L) revealed high sequence conservation of the NP protein and the expression of the P and V proteins in all PorPV isolates. The V protein of one isolate displayed a mutation that has been implicated to antagonise the antiviral immune responses of the host. The M protein indicated a variation in a short region that could affect the electrostatic charge and the interaction with the membrane. One PorPV isolate recovered from the lungs showed a mutation at the cleavage site (HRKKR) of the F protein that could represent an important factor to determine the tissue tropism and pathogenicity of this virus. The HN protein showed high sequence identity through the years (up to 2013). Additionally, a number of sequence motifs of very high amino acid conservation among the PorPV isolates important for polymerase activity of the L protein have been identified. In summary, genetic comparisons and phylogenetic analyses indicated that three different genetic variants of PorPV are currently spreading within the swine population, and a new generation of circulating virus with different characteristics has begun to emerge.
Insights
Genetic analysis of Porcine rubulavirus (PorPV) reveals three spreading variants in swine. Emerging PorPV strains show mutations potentially affecting pathogenicity and host immune response.
Area of Science:
- Virology
- Molecular Biology
- Genetics
Background:
- Porcine rubulavirus (PorPV) is an economically significant swine pathogen.
- Limited genomic data exists for PorPV, with only one full-length genome characterized since its initial outbreak.
Purpose of the Study:
- To investigate the genetic variation and evolution of current PorPV isolates.
- To analyze the genetic makeup of PorPV proteins (NP, P, F, M, HN, L) and their implications.
Main Methods:
- Obtained full-length gene nucleotide sequences from current PorPV isolates.
- Performed genome organization and sequence analysis of encoded proteins.
- Conducted genetic comparisons and phylogenetic analyses.
Main Results:
- High sequence conservation observed in the NP protein and consistent expression of P and V proteins across isolates.
- Identified mutations in V protein (antagonizing host immunity) and M protein (affecting membrane interaction).
- Detected a mutation in the F protein cleavage site of a lung isolate, potentially influencing tissue tropism and pathogenicity.
Conclusions:
- Three distinct genetic variants of PorPV are currently circulating in swine populations.
- A new generation of PorPV with potentially altered characteristics is emerging.
- Understanding PorPV genetic diversity is crucial for disease control and management.

