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Host Phylogeny Determines Viral Persistence and Replication in Novel Hosts

tetano

Editor, Senior Moderator
Plos Pathogens

Host Phylogeny Determines Viral Persistence and Replication in Novel Hosts

Ben Longdon1,2*, Jarrod D. Hadfield1, Claire L. Webster1,2, Darren J. Obbard1,2#, Francis M. Jiggins3#

1 Institute of Evolutionary Biology, University of Edinburgh, Ashworth Labs, Edinburgh, United Kingdom, 2 Centre for Immunity, Infection and Evolution, University of Edinburgh, Ashworth Labs, Edinburgh, United Kingdom, 3 Department of Genetics, University of Cambridge, Cambridge, United Kingdom
Abstract Top

Pathogens switching to new hosts can result in the emergence of new infectious diseases, and determining which species are likely to be sources of such host shifts is essential to understanding disease threats to both humans and wildlife. However, the factors that determine whether a pathogen can infect a novel host are poorly understood. We have examined the ability of three host-specific RNA-viruses (Drosophila sigma viruses from the family Rhabdoviridae) to persist and replicate in 51 different species of Drosophilidae. Using a novel analytical approach we found that the host phylogeny could explain most of the variation in viral replication and persistence between different host species. This effect is partly driven by viruses reaching a higher titre in those novel hosts most closely related to the original host. However, there is also a strong effect of host phylogeny that is independent of the distance from the original host, with viral titres being similar in groups of related hosts. Most of this effect could be explained by variation in general susceptibility to all three sigma viruses, as there is a strong phylogenetic correlation in the titres of the three viruses. These results suggest that the source of new emerging diseases may often be predictable from the host phylogeny, but that the effect may be more complex than simply causing most host shifts to occur between closely related hosts.

http://www.plospathogens.org/article/info:doi/10.1371/journal.ppat.1002260
 
Re: Host Phylogeny Determines Viral Persistence and Replication in Novel Hosts

Scientists show how animal diseases can jump to humans

SCOTTISH scientists have uncovered fresh evidence of how viruses, such as flu, jump between species, and hope this could help predict the arrival of new diseases in future.
Researchers from Edinburgh University found the ability of different parasites to switch between animals and humans was linked to how closely they were related - and how susceptible they were to the type of bug making the jump.

It is hoped the fresh insight into the phenomenon - seen in illnesses such as bird and swine flu - could help predict the emergence of new diseases and allow for better planning.

The Edinburgh researchers, working with colleagues at Cambridge University, explored how relationships between species might determine the spread of a group of diseases known as RNA viruses, which includes HIV, flu and Sars.

The team infected more than 50 different species of flies with different viruses. This revealed that species of fly which were closely related to a virus's usual target species were more susceptible to the infections than distantly related flies and groups of flies that were closely related were similarly susceptible to the same viruses.

http://news.scotsman.com/scotland/Scientists-show-how-animal-diseases.6841146.jp
 
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