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PMID: 24121017 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Infection of cats with atypical feline coronaviruses harbouring a truncated form of the canine type I non-structural ORF3 gene.

Le Poder S, Pham-Hung d'Alexandry d'Orangiani AL, Duarte L, Fournier A, Horhogea C, Pinhas C, Vabret A, Eloit M

Abstract

Feline and canine coronaviruses (FCoV and CCoV, respectively) are common pathogens of cats and dogs sometimes leading to lethal infections named feline infectious peritonitis (FIP) and canine pantropic coronavirus infection. FCoV and CCoV are each subdivided into two serotypes, FCoV-I/II and CCoV-I/II. A phylogenetic relationship is evident between, on one hand, CCoV-I/FCoV-I, and on the other hand, CCoV-II/FCoV-II, suggesting that interspecies transmission can occur. The aim of the present study was to evaluate the prevalence of coronavirus (CoV)-infected cats according to their contact with dogs and to genetically analyse the CoV strains infecting cats. From 2003 to 2009, we collected 88 faecal samples from healthy cats and 11 ascitic fluids from FIP cats. We investigated the possible contact with dog in the household and collected dogs samples if appropriate. Out of 99 cat samples, 26 were coronavirus positive, with six cats living with at least one dog, thus showing that contact with dogs does not appear as a predisposing factor for cats CoV infections. Molecular and phylogenetic analyses of FCoV strains were conducted using partial N and S sequences. Six divergent strains were identified with the N gene clustering with CCoV-I whereas the 3' end of S was related to FCoV-I. Further analysis on those six samples was attempted by researching the presence of the ORF3 gene, the latter being peculiar to CCoV-I to date. We succeeded to amplify the ORF3 gene in five samples out of six. Thus, our data strongly suggest the circulation of atypical FCoV strains harbouring the CCoV-I ORF3 gene among cats. Moreover, the ORF3 genes recovered from the feline strains exhibited shared deletions, never described before, suggesting that these deletions could be critical in the adaptation of these strains to the feline host.

Keywords
Canine coronavirus type I Feline coronavirus Non-structural ORF3 gene Phylogenetic analysis
MeSH 主题词
Animals Ascitic Fluid/virology Base Sequence Cat Diseases/virology Cats Coronavirus, Canine/classification,genetics Coronavirus, Feline/classification,genetics Dog Diseases/virology Dogs Feces/virology Feline Infectious Peritonitis/genetics,transmission,virology Genetic Variation Genotype Molecular Sequence Data Open Reading Frames/genetics Phylogeny RNA, Viral/genetics,isolation & purification Sequence Alignment Sequence Analysis, DNA/veterinary
化学物质
RNA, Viral
作者与单位
共 8 位作者,点击展开单位 / ORCID
Le Poder Sophie
Université Paris-Est, Ecole Nationale Vétérinaire d'Alfort, UMR 1161 virologie INRA ENVA ANSES, Maisons-Alfort F-94704, France. Electronic address: [email protected].
Pham-Hung d'Alexandry d'Orangiani Anne-Laure
Duarte Lidia
Fournier Annie
Horhogea Cristina
Pinhas Carine
Vabret Astrid
Eloit Marc
Article Info
Journal
Infection, genetics and evolution : journal of molecular epidemiology and evolutionary genetics in infectious diseases
Abbr.
Infect Genet Evol
ISSN
1567-7257
Corresponding email
Published
2013-12-00
电子出版
2013-00-09
页码
488-94
Language
English
Country/Region
Netherlands
NLM ID
101084138
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