A large, highly prolific swine farm in Hungary had a 2-year history of neurologic
disease among newly weaned (25- to 35-day-old) pigs, with clinical signs of
posterior paraplegia and a high mortality rate. Affected pigs that were
necropsied had encephalomyelitis and neural necrosis. Porcine astrovirus type 3
was identified by reverse transcription PCR and in situ hybridization in brain
and spinal cord samples in 6 animals from this farm. Among tissues tested by
quantitative RT-PCR, the highest viral loads were detected in brain stem and
spinal cord. Similar porcine astrovirus type 3 was also detected in archived
brain and spinal cord samples from another 2 geographically distant farms. Viral
RNA was predominantly restricted to neurons, particularly in the brain stem,
cerebellum (Purkinje cells), and cervical spinal cord. Astrovirus was generally
undetectable in feces but present in respiratory samples, indicating a possible
respiratory infection. Astrovirus could cause common, neuroinvasive epidemic
disease.
Picobirnaviruses (PBVs) are small, non-enveloped viruses with a bisegmented double-stranded RNA genome. Their pathogenic potential, ecology, and evolutionary features are largely unexplored. Here, we describe the molecular analysis of porcine PBVs identified in the intestinal content of dead pigs. Six of 13 positive samples were cloned and then subjected to single-strand conformation polymorphism analysis and nucleotide sequencing. All clones belonged to genogroup I PBVs and almost all clones clustered on separate branches from human strains. A single strain shared a notably close genetic relationship with a Hungarian human PBV strain (89.9 nt and 96.4 % aa identity). Genetic diversity was also observed among strains identified in mixed infections. Single point mutations and deleterious mutations within highly related strains suggested that PBVs exist as quasispecies in the swine alimentary tract. Clones with complete sequence identities originating from different animals suggested effective animal-to-animal transmission of the virus. Our findings indicate that infection with genogroup I PBVs is common in pigs.
In this study, a novel parvovirus (strain swine/Zsana3/2013/HUN, KT965075) was detected in domestic pigs and genetically characterized by viral metagenomics and PCR methods. The novel parvovirus was distantly related to the human bufaviruses and was detected in 19 (90.5 %) of the 21 and five (33.3 %) of the 15 faecal samples collected from animals with and without cases of posterior paraplegia of unknown etiology from five affected farms and one control farm in Hungary, respectively. Swine/Zsana3/2013/HUN is highly prevalent in domestic pigs and potentially represents a novel parvovirus species in the subfamily Parvovirinae.
Porcine enteroviruses (PEVs) are members of the family Picornaviridae, genus Enterovirus. Until now, only three different PEV genotypes (PEV-9 and -10, and PEV-3H/PEV-14) have been detected in domestic pigs, and there is no information about the presence of PEVs in wild animals. Here, we identify and characterize the complete genomes of PEV originated from 5 of 10 (50%) of wild boar (Sus scrofa) piglets by RT-PCR and pyrosequencing. Wild boar/WBD/2011/HUN (JN807387) PEV showed only 67% amino acid identity in VP1 compared to the most closely related prototype PEV-3H/PEV-14. Wild boar enterovirus represents a novel PEV genotype, provisionally called PEV-15.
All of the known porcine sapeloviruses (PSVs) currently belong to a single genotype in the genus Sapelovirus (family Picornaviridae). Here, the complete genome of a second, possibly recombinant, genotype of PSV strain SZ1M-F/PSV/HUN2013 (MN807752) from a faecal sample of a paraplegic pig in Hungary was characterized using viral metagenomics and RT-PCR. This sapelovirus strain showed only 64 % nucleotide identity in the VP1 region to its closest PSV-1 relative. Complete VP1 sequence-based epidemiological investigations of PSVs circulating in Hungary showed the presence of diverse strains found in high prevalence in enteric and respiratory samples collected from both asymptomatic and paraplegic pigs from 12 swine farms. Virus isolation attempts using PK-15 cell cultures were successful in 3/8 cases for the classic but not the novel PSV genotype. Sequence comparisons of faeces and isolate strains derived VP1 showed that cultured PSV strains not always represent the dominant PSVs found in vivo.
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