scholarly journals Genetic analysis of porcine parvoviruses detected in South Korean wild boars

Author(s):  
Gyu-Nam Park ◽  
Sok Song ◽  
Ra Mi Cha ◽  
SeEun Choe ◽  
Jihye Shin ◽  
...  
2021 ◽  
Author(s):  
Gyu-Nam Park ◽  
Sok Song ◽  
Ra Mi Cha ◽  
SeEun Choe ◽  
Jihye Shin ◽  
...  

Abstract Porcine parvovirus 1 (PPV1) is a major cause of reproductive failure in pigs; to date, six novel porcine parvoviruses (PPV2–PPV7) have been identified. Here, we detected 11 PPV1, five PPV3, three PPV4, six PPV5, five PPV6, and one PPV7 strain in Korean wild boars. PPV1, -3, and -5, and PPV6, from Korean wild boars harbor conserved motifs within the Ca2+ binding loop and the catalytic center of the PLA1 motif. Intra-recombination among PPV7 strains was also identified. Genetic characterization revealed that PPV1 from Korean wild boars may be similar to virulent PPV strains.


Pathogens ◽  
2020 ◽  
Vol 9 (4) ◽  
pp. 244 ◽  
Author(s):  
SeEun Choe ◽  
Ra Mi Cha ◽  
Dae-Sung Yu ◽  
Ki-Sun Kim ◽  
Sok Song ◽  
...  

There has been a rapid increase in the number of classical swine fever (CSF) sero-positive wild boars captured near the demilitarized zone (DMZ), located the border with North Korea. In 2015–2016, few CSFV-positive antibody boars were detected; however, the number has increased steeply since 2017. Most occurred in the northern region of Gyeonggi before spreading slowly to Gangwon (west to east) in 2018–2019. Multi-distance spatial cluster analysis provided an indirect estimate of the time taken for CSFV to spread among wild boars: 46.7, 2.6, and 2.49 days/km. The average CSF serum neutralization antibody titer was 4–10 (log 2), and CSFV Ab B-ELISA PI values ranged from 65.5 to 111.5, regardless of the age and sex of wild boars. Full genome analysis revealed that 16 CSFV strains isolated from wild boars between 2017 and 2019 were identical to the YC16CS strain (sub-genotype 2.1d) isolated from an outbreak in breeding pigs near the border with North Korea in 2016. The rapid increase in CSF in wild boars may be due to a continuously circulating infection within hub area and increased population density. The distribution pattern of CSFV in Korean wild boars moves from west to southeast, affected by external factors, including small-scale hunting, geographical features and highways.


Viruses ◽  
2020 ◽  
Vol 12 (6) ◽  
pp. 680 ◽  
Author(s):  
SeEun Choe ◽  
Gyu-Nam Park ◽  
Ra Mi Cha ◽  
Bang-Hun Hyun ◽  
Bong-Kyun Park ◽  
...  

Atypical porcine pestivirus (APPV), currently classified as pestivirus K, causes congenital tremor (CT) type A-II in piglets. Eighteen APPV strains were identified from 2297 South Korean wild boars captured in 2019. Phylogenetic analysis of the structural protein E2 and nonstructural proteins NS3 and Npro classified the APPV viruses, including reference strains, into Clades I, II and III. Clade I was divided into four subclades; however, the strains belonging to the four subclades differed slightly, depending on the tree analysis, the NS3, E2, and Npro genes. The maximum-likelihood method was assigned to South Korean wild boar APPV strains to various subclades within the three trees: subclades I.1 and I.2 in the E2 tree, subclade I.1 in the Npro tree, and subclades I.1 and I.4 in the NS3 ML tree. In conclusion, APPV among South Korean wild boars belonging to Clade I may be circulating at a higher level than among the South Korean domestic pig populations.


Mammalia ◽  
2019 ◽  
Vol 83 (5) ◽  
pp. 483-486
Author(s):  
Alessia Mariacher ◽  
Rita Fanelli ◽  
Luisa Garofalo ◽  
Gabriella Perfetti ◽  
Rita Lorenzini ◽  
...  

Abstract In recent years, several cases of predation on hunting dogs have been reported in Italy. These cases caused uproar among owners and the wolf was singled out as the culprit. The remains of a dog allegedly killed by wolves were submitted for forensic analysis. Wolf predation was ruled out based on gross findings and wild boar aggression was suspected instead. Genetic analysis of salivary swab samples confirmed that wild boars fed on the dog. As poaching is one of the main threats to wolf conservation, it is essential to identify correctly the predator in cases of attacks on domestic animals.


Pathogens ◽  
2020 ◽  
Vol 9 (6) ◽  
pp. 457
Author(s):  
Sok Song ◽  
Gyu-Nam Park ◽  
SeEun Choe ◽  
Ra Mi Cha ◽  
Song-Yi Kim ◽  
...  

In Korea, three genotypes of porcine circovirus type 2 (PCV2a, PCV2b, and PCV2d) have been identified on domestic pig farms, while two genotypes (PCV2a and PCV2b) have been identified in wild boar populations. Here, we investigated genotype diversity and genotypic shift in 91 PCV2 isolates from 1340 wild boars captured in South Korea between 2013 and 2017. Phylogenetic analyses based on the complete ORF2 showed that the 91 PCV2 strains were detected as four genotypes by qPCR screening assay: PCV2a (2.2%, 2/91), PCV2b (16.5%, 15/91), PCV2d (80.2%, 73/91), and PCV2h (1.1%, 1/91). Only one intergenotype recombinant event was detected between PCV2 ORF2 in wild boars (PCV2b) and domestic pigs (PCV2a). Amino acid positions 86–89 within ORF2, which distinguishes the different genotypes, were conserved in all PCV2 genotypes isolated from South Korean wild boars, including TNKI in PCV2a/PCV2h, SNPR in PCV2b, and SNPL in PCV2d. The estimated nucleotide substitution rates in the ORF2 region of viruses from South Korean wild boars and domestic pigs were 5.8145 × 10−4 and 4.5838 × 10−4 substitutions per site per year (s/s/y), respectively. The times to the most recent common ancestor (tMRCA) for South Korean domestic pig PCV2 were 1937 (PCV2a), 1972 (PCV2b), 1999 (PCV2d-1), and 2000 (PCV2d-2). By contrast, the tMRCA for South Korean wild boar PCV2b and PCV2d were 1989 and 2001, respectively. Thus, the PCV2d genotype is prevalent among South Korean wild boars and domestic pigs.


1997 ◽  
Vol 61 (6) ◽  
pp. 491-496 ◽  
Author(s):  
K. HIDAKA ◽  
I. IUCHI ◽  
M. TOMITA ◽  
Y. WATANABE ◽  
Y. MINATOGAWA ◽  
...  

Pathology ◽  
2003 ◽  
Vol 35 (2) ◽  
pp. 141-144 ◽  
Author(s):  
Hiroya Kato ◽  
Sukenari Koyabu ◽  
Shigenori Aoki ◽  
Takuya Tamai ◽  
Masahiro Sugawa ◽  
...  

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