ArticleVirus evolution2023
Understanding the divergent evolution and epidemiology of H3N8 influenza viruses in dogs and horses.
Article in Virus evolution, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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Who cites it
12 citing papers in PubMed, 18 citations in OpenAlex.
- Exposure of dogs to influenza A and B viruses.One health (Amsterdam, Netherlands) · 2026Article
- Serological and Molecular Surveillance of Influenza A Virus in Dogs and Cats in Central Chile.Zoonoses and public health · 2026Article
- Equine influenza virus at 70: What horses taught us about flu.PLoS pathogens · 2026Article
- Mammalian adaptation and zoonotic risk of influenza A viruses in companion animals.Journal of veterinary science · 2025Review
- Virulence Evolution: Thinking Outside of the Host.Evolutionary applications · 2025Article
- A veterinary virapalooza: a summary of the 2024 American Society for Virology (ASV) Veterinary/Zoonotic Virology Satellite Symposium and online H5N1 panel discussion.Journal of virology · 2025Review
- The evolution and epidemiology of H3N2 canine influenza virus after 20 years in dogs.Epidemiology and infection · 2025Article
- Equine Influenza: Epidemiology, Pathogenesis, and Strategies for Prevention and Control.Viruses · 2025Review
- Evaluating machine learning approaches for host prediction using H3 influenza genomic data.PloS one · 2025Article
- Genetic characterization of an H3N2 canine influenza virus strain in China in 2023-acquisition of novel human-like amino acid substitutions.Frontiers in veterinary science · 2025Article
- Upper Respiratory Tract Disease in a Dog Infected by a Highly Pathogenic Avian A/H5N1 Virus.Microorganisms · 2024Article
- A meta-analysis highlights the idiosyncratic nature of tradeoffs in laboratory models of virus evolution.Virus evolution · 2024Article
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Authors and funding
11 authors at 6 institutions in 3 countries.
Funding
Abstract
Cross-species virus transmission events can lead to dire public health emergencies in the form of epidemics and pandemics. One example in animals is the emergence of the H3N8 equine influenza virus (EIV), first isolated in 1963 in Miami, FL, USA, after emerging among horses in South America. In the early 21st century, the American lineage of EIV diverged into two 'Florida' clades that persist today, while an EIV transferred to dogs around 1999 and gave rise to the H3N8 canine influenza virus (CIV), first reported in 2004. Here, we compare CIV in dogs and EIV in horses to reveal their host-specific evolution, to determine the sources and connections between significant outbreaks, and to gain insight into the factors controlling their different evolutionary fates. H3N8 CIV only circulated in North America, was geographically restricted after the first few years, and went extinct in 2016. Of the two EIV Florida clades, clade 1 circulates widely and shows frequent transfers between the USA and South America, Europe and elsewhere, while clade 2 was globally distributed early after it emerged, but since about 2018 has only been detected in Central Asia. Any potential zoonotic threat of these viruses to humans can only be determined with an understanding of its natural history and evolution. Our comparative analysis of these three viral lineages reveals distinct patterns and rates of sequence variation yet with similar overall evolution between clades, suggesting epidemiological intervention strategies for possible eradication of H3N8 EIV.
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