Novel hepaci- and pegi-like viruses in native Australian wildlife and non-human primates.

Virus Evol

School of Life and Environmental Sciences and School of Medical Sciences, Marie Bashir Institute for Infectious Diseases and Biosecurity, The University of Sydney, Sydney 2006, Australia.

Published: July 2020

AI Article Synopsis

  • There are RNA viruses that can make humans and animals sick, like Zika and dengue.
  • Scientists found new types of these viruses in Australian wildlife, including marsupials, birds, and a gecko.
  • The study showed that these viruses have been evolving along with their animal hosts, but they can sometimes jump from one species to another.

Article Abstract

The family of positive-sense RNA viruses contains important pathogens of humans and other animals, including Zika virus, dengue virus, and hepatitis C virus. The are currently divided into four genera-, , , and -each with a diverse host range. Members of the genus are associated with an array of animal species, including humans, non-human primates, other mammalian species, as well as birds and fish, while the closely related pegiviruses have been identified in a variety of mammalian taxa, also including humans. Using a combination of total RNA and whole-genome sequencing we identified four novel hepaci-like viruses and one novel variant of a known hepacivirus in five species of Australian wildlife. The hosts infected comprised native Australian marsupials and birds, as well as a native gecko (). From these data we identified a distinct marsupial clade of hepaci-like viruses that also included an engorged tick collected while feeding on Australian long-nosed bandicoots (). Distinct lineages of hepaci-like viruses associated with geckos and birds were also identified. By mining the SRA database we similarly identified three new hepaci-like viruses from avian and primate hosts, as well as two novel pegi-like viruses associated with primates. The phylogenetic history of the hepaci- and pegi-like viruses as a whole, combined with co-phylogenetic analysis, provided support for virus-host co-divergence over the course of vertebrate evolution, although with frequent cross-species virus transmission. Overall, our work highlights the diversity of the and genera as well as the uncertain phylogenetic distinction between.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7673076PMC
http://dx.doi.org/10.1093/ve/veaa064DOI Listing

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