Genetic analysis of feline parvovirus reveals predominance of feline parvovirus -G1 group among cats in China.

China evolution feline parvovirus genotyping

Journal

The Journal of veterinary medical science
ISSN: 1347-7439
Titre abrégé: J Vet Med Sci
Pays: Japan
ID NLM: 9105360

Informations de publication

Date de publication:
15 Jul 2024
Historique:
medline: 16 7 2024
pubmed: 16 7 2024
entrez: 15 7 2024
Statut: aheadofprint

Résumé

Feline parvovirus (FPV) or feline panleukopenia virus is a highly contagious, life-threatening infectious virus in cats. Although FPV vaccination is routinely practiced in China, clinical diseases continue to occur. The investigation of genotypes and viral evolution can contribute to the prevention, diagnosis, and treatment of FPV. Therefore, this study aimed to provide an up-to-date understanding of the epidemiological, genotypic, and phylogenetic characteristics of FPV. In total, 152 rectal swabs were collected from diseased cats. All swab samples were tested for FPV using molecular methods. Amplification of the complete viral protein 2 (VP2) gene was performed for further analysis and to infer the genotypic and evolutionary characteristics of FPV. Of the 152 samples, FPV DNA was detected in 17 (17/152, 11.18%). Cats with FPV showed variable clinical signs such as dehydration, anorexia, fever, vomiting, and blood-stained diarrhea. Furthermore, VP2 sequences were identified in 17 PCR-positive cats, confirming the presence of FPV. Phylogenetic and nucleotide pairwise identity analyses revealed high genetic similarity among FPV sequences (99.6-100%) and clustered them into the FPV-G1 group. Amino acid analysis indicated a novel mutation (Ala91Ser) in all VP2 gene sequences amplified in this study. Our study provides baseline epidemiological data for the better prevention of FPV with respect to vaccination strategies. Genotypic and phylogenetic analyses confirm that FPV-G1 was the predominant FPV group in infected cats in Kunshan. Therefore, a rigorous countrywide investigation of the genotypic and evolutionary characteristics of FPV is warranted.

Identifiants

pubmed: 39010245
doi: 10.1292/jvms.24-0138
doi:

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Auteurs

Ruoyi Wang (R)

Global Health Research Center (GHRC), Duke Kunshan University.
Division of Natural & Applied Sciences (DNAS), Duke Kunshan University.

Di Gao (D)

MSD Animal Health.

Pu Chen (P)

MSD Animal Health.

Marwa Mouzahim (M)

Global Health Research Center (GHRC), Duke Kunshan University.
Division of Natural & Applied Sciences (DNAS), Duke Kunshan University.

Shaban Muhammad (S)

Global Health Research Center (GHRC), Duke Kunshan University.
Division of Natural & Applied Sciences (DNAS), Duke Kunshan University.

Yu Weidong (Y)

Play Pi Kangkang Pet Hospital.

Qiu Zhongqi (Q)

Simba Pet Hospital (Tinglin Park branch).

Aysun Yilmaz (A)

Department of Virology, Veterinary Faculty, Istanbul University-Cerrahpasa.

Huseyin Yilmaz (H)

Department of Virology, Veterinary Faculty, Istanbul University-Cerrahpasa.

Sajid Umar (S)

Global Health Research Center (GHRC), Duke Kunshan University.
Division of Natural & Applied Sciences (DNAS), Duke Kunshan University.

Classifications MeSH