Key result
Analysis of 24 Chinese PCV2 strains revealed high genetic variation and a genotype shift to PCV2d, with different genotypes coexisting in Chinese pig herds.
High genetic variation and a genotype shift to PCV2d have occurred in recent years among Chinese pig herds, with different genotypes coexisting.
Diverse Chinese PCV2 strains warrant ongoing swine surveillance; leaves open vaccine efficacy against emerging variants.
Porcine circovirus type 2 (PCV2) is a causative agent of PCV2-associated disease, which is a growing problem in the swine industry worldwide. High nucleotide substitution occurs in the capsid (Cap) gene of PCV2, which allows the continuous evolution and the emergence of novel PCV2 strains. In this study, we sequenced 24 Chinese PCV2 strains collected from healthy and diseased pigs between 2013 and 2015. Analyses of the genome, Cap and phylogeny classified the 24 Chinese PCV2 strains as PCV-2a (four of 24), PCV-2b (five of 24) and PCV-2d (15 of 24). All strains shared 89.5%-100% and 87.2%-100% identities with the nucleotide and amino acid (aa) sequences of Cap, respectively. Selection pressure analysis showed that five sites at the epitope regions in Cap were under positive selection. Further analysis by Jameson-Wolf antigenic index indicated that aa substitutions occurring at the epitope regions contributed to the antigenic alterations of the different PCV2 strains. High genetic variation and genotype shift to PCV2d occurred in recent years, and different genotypes coexisted in Chinese pig herds. The data provide evidence for the increased genetic diversity and insights into the molecular epidemiology of PCV2.
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Yang et al. (2017) studied Porcine circovirus type 2 (PCV2) (n=24). Porcine circovirus type 2 strains was evaluated on Genotype classification and genetic variation. Analysis of 24 Chinese PCV2 strains revealed high genetic variation and a genotype shift to PCV2d, with different genotypes coexisting in Chinese pig herds.
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