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Fidelity Characterization of Highly Pathogenic Porcine Reproductive and Respiratory Syndrome Virus and NADC30-like Strain
by
Yang, Hanchun
, Gao, Xiang
, Bian, Ting
, Ge, Xinna
, Zhou, Lei
, Gao, Peng
, Zhang, Yongning
, Guo, Xin
, Han, Jun
in
Animal diseases
/ Animals
/ Care and treatment
/ Cell Line
/ Comparative analysis
/ Control
/ Diagnosis
/ Fidelity
/ Genetic diversity
/ genome
/ Genome, Viral
/ Genomes
/ Genomics
/ Hogs
/ HP-PRRSV
/ Identification and classification
/ Laboratory animals
/ Mutation
/ Mutation rates
/ NADC30-like
/ Nucleotide analogs
/ Pathogens
/ Penicillin
/ Porcine reproductive and respiratory syndrome
/ Porcine Reproductive and Respiratory Syndrome - virology
/ porcine reproductive and respiratory syndrome virus (PRRSV)
/ Porcine respiratory and reproductive syndrome virus - classification
/ Porcine respiratory and reproductive syndrome virus - genetics
/ pork industry
/ Pulmonary manifestations of general diseases
/ Recombination
/ Recombination, Genetic
/ Risk factors
/ RNA viruses
/ Strains (organisms)
/ Swine
/ Vaccines
/ Virulence
/ Virus Replication
/ Viruses
2024
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Fidelity Characterization of Highly Pathogenic Porcine Reproductive and Respiratory Syndrome Virus and NADC30-like Strain
by
Yang, Hanchun
, Gao, Xiang
, Bian, Ting
, Ge, Xinna
, Zhou, Lei
, Gao, Peng
, Zhang, Yongning
, Guo, Xin
, Han, Jun
in
Animal diseases
/ Animals
/ Care and treatment
/ Cell Line
/ Comparative analysis
/ Control
/ Diagnosis
/ Fidelity
/ Genetic diversity
/ genome
/ Genome, Viral
/ Genomes
/ Genomics
/ Hogs
/ HP-PRRSV
/ Identification and classification
/ Laboratory animals
/ Mutation
/ Mutation rates
/ NADC30-like
/ Nucleotide analogs
/ Pathogens
/ Penicillin
/ Porcine reproductive and respiratory syndrome
/ Porcine Reproductive and Respiratory Syndrome - virology
/ porcine reproductive and respiratory syndrome virus (PRRSV)
/ Porcine respiratory and reproductive syndrome virus - classification
/ Porcine respiratory and reproductive syndrome virus - genetics
/ pork industry
/ Pulmonary manifestations of general diseases
/ Recombination
/ Recombination, Genetic
/ Risk factors
/ RNA viruses
/ Strains (organisms)
/ Swine
/ Vaccines
/ Virulence
/ Virus Replication
/ Viruses
2024
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Fidelity Characterization of Highly Pathogenic Porcine Reproductive and Respiratory Syndrome Virus and NADC30-like Strain
by
Yang, Hanchun
, Gao, Xiang
, Bian, Ting
, Ge, Xinna
, Zhou, Lei
, Gao, Peng
, Zhang, Yongning
, Guo, Xin
, Han, Jun
in
Animal diseases
/ Animals
/ Care and treatment
/ Cell Line
/ Comparative analysis
/ Control
/ Diagnosis
/ Fidelity
/ Genetic diversity
/ genome
/ Genome, Viral
/ Genomes
/ Genomics
/ Hogs
/ HP-PRRSV
/ Identification and classification
/ Laboratory animals
/ Mutation
/ Mutation rates
/ NADC30-like
/ Nucleotide analogs
/ Pathogens
/ Penicillin
/ Porcine reproductive and respiratory syndrome
/ Porcine Reproductive and Respiratory Syndrome - virology
/ porcine reproductive and respiratory syndrome virus (PRRSV)
/ Porcine respiratory and reproductive syndrome virus - classification
/ Porcine respiratory and reproductive syndrome virus - genetics
/ pork industry
/ Pulmonary manifestations of general diseases
/ Recombination
/ Recombination, Genetic
/ Risk factors
/ RNA viruses
/ Strains (organisms)
/ Swine
/ Vaccines
/ Virulence
/ Virus Replication
/ Viruses
2024
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Fidelity Characterization of Highly Pathogenic Porcine Reproductive and Respiratory Syndrome Virus and NADC30-like Strain
Journal Article
Fidelity Characterization of Highly Pathogenic Porcine Reproductive and Respiratory Syndrome Virus and NADC30-like Strain
2024
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Overview
The porcine reproductive and respiratory syndrome virus (PRRSV) has significantly impacted the global pork industry for over three decades. Its high mutation rates and frequent recombination greatly intensifies its epidemic and threat. To explore the fidelity characterization of Chinese highly pathogenic PRRSV JXwn06 and the NADC30-like strain CHsx1401, self-recombination and mutation in PAMs, MARC-145 cells, and pigs were assessed. In vitro, CHsx1401 displayed a higher frequency of recombination junctions and a greater diversity of junction types than JXwn06. In vivo, CHsx1401 exhibited fewer junction types yet maintained a higher junction frequency. Notably, JXwn06 showed more accumulation of mutations. To pinpoint the genomic regions influencing their fidelity, chimeric viruses were constructed, with the exchanged nsp9-10 regions between JXwn06 and CHsx1401. The SJn9n10 strain, which incorporates JXwn06’s nsp9-10 into the CHsx1401 genome, demonstrated reduced sensitivity to nucleotide analogs compared to CHsx1401. Conversely, compared with JXwn06, the JSn9n10 strain showed increased sensitivity to these inhibitors. The swapped nsp9-10 also influences the junction frequency and accumulated mutations as their donor strains. The results indicate a propensity for different types of genetic variations between these two strains and further highlight the nsp9-10 region as a critical determinant of their fidelity.
Publisher
MDPI AG
Subject
/ Animals
/ Control
/ Fidelity
/ genome
/ Genomes
/ Genomics
/ Hogs
/ HP-PRRSV
/ Identification and classification
/ Mutation
/ Porcine reproductive and respiratory syndrome
/ Porcine Reproductive and Respiratory Syndrome - virology
/ porcine reproductive and respiratory syndrome virus (PRRSV)
/ Porcine respiratory and reproductive syndrome virus - classification
/ Porcine respiratory and reproductive syndrome virus - genetics
/ Pulmonary manifestations of general diseases
/ Swine
/ Vaccines
/ Viruses
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