Emergence of Pathogenic Coronaviruses in Cats by Homologous Recombination between Feline and Canine Coronaviruses

Возникновение патогенных коронавирусов у кошек в результате гомологичной рекомбинации между коронавирусами кошек и собак
Ken Maeda, Takehisa SOMA, Masami Mochizuki, Yutaka Terada, Nobutaka Matsui, Keita Noguchi, Ryusei Kuwata, Hiroshi Shimoda
2014-09-02

canine coronavirusfeline coronavirushomologous recombinationrecombination sitestype II FCoV emergence
Type II feline coronavirus (FCoV) emerged via double recombination between type I FCoV and type II canine coronavirus (CCoV). In this study, two type I FCoVs, three type II FCoVs and ten type II CCoVs were genetically compared. The results showed that three Japanese type II FCoVs, M91-267, KUK-H/L and Tokyo/cat/130627, also emerged by homologous recombination between type I FCoV and type II CCoV and their parent viruses were genetically different from one another. In addition, the 3'-terminal recombination sites of M91-267, KUK-H/L and Tokyo/cat/130627 were different from one another within the genes encoding membrane and spike proteins, and the 5'-terminal recombination sites were also located at different regions of ORF1. These results indicate that at least three Japanese type II FCoVs emerged independently. Sera from a cat experimentally infected with type I FCoV was unable to neutralize type II CCoV infection, indicating that cats persistently infected with type I FCoV may be superinfected with type II CCoV. Our previous study reported that few Japanese cats have antibody against type II FCoV. All of these observations suggest that type II FCoV emerged inside the cat body and is unable to readily spread among cats, indicating that these recombination events for emergence of pathogenic coronaviruses occur frequently.
1
Antibodies induced by type I feline coronavirus infection did not neutralize type II canine coronavirus, suggesting potential superinfection of persistently infected cats.
2
Low prevalence of antibodies against type II feline coronavirus and limited spread among cats suggest emergence occurs within individual cats, potentially frequently.
3
The three recombinant feline coronaviruses had different recombination sites in ORF1 and in the membrane- and spike-protein genes.
4
Three Japanese type II feline coronaviruses independently emerged through recombination, each involving genetically distinct parental viruses.
5
Type II feline coronavirus emerged through homologous double recombination between type I feline coronavirus and type II canine coronavirus.

Type II feline coronaviruses (FCoVs) emerging through homologous recombination between type I FCoV and type II canine coronavirus (CCoV) in cats

The independent emergence, recombination sites, parental genetic relationships, and potential transmission of pathogenic type II FCoVs

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2014-09-02
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Ken Maeda
Takehisa SOMA
Masami Mochizuki
Yutaka Terada
Nobutaka Matsui
Keita Noguchi
Ryusei Kuwata
Hiroshi Shimoda
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