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Comparison of intra- and inter-host genetic diversity in rabies virus during experimental cross-species transmission

The development of high-throughput genome sequencing enables accurate measurements of levels of sub-consensus intra-host virus genetic diversity and analysis of the role played by natural selection during cross-species transmission. We analysed the natural and experimental evolution of rabies virus...

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Autores principales: Bonnaud, Emilie M., Troupin, Cécile, Dacheux, Laurent, Holmes, Edward C., Monchatre-Leroy, Elodie, Tanguy, Marion, Bouchier, Christiane, Cliquet, Florence, Barrat, Jacques, Bourhy, Hervé
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6615636/
https://www.ncbi.nlm.nih.gov/pubmed/31220188
http://dx.doi.org/10.1371/journal.ppat.1007799
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author Bonnaud, Emilie M.
Troupin, Cécile
Dacheux, Laurent
Holmes, Edward C.
Monchatre-Leroy, Elodie
Tanguy, Marion
Bouchier, Christiane
Cliquet, Florence
Barrat, Jacques
Bourhy, Hervé
author_facet Bonnaud, Emilie M.
Troupin, Cécile
Dacheux, Laurent
Holmes, Edward C.
Monchatre-Leroy, Elodie
Tanguy, Marion
Bouchier, Christiane
Cliquet, Florence
Barrat, Jacques
Bourhy, Hervé
author_sort Bonnaud, Emilie M.
collection PubMed
description The development of high-throughput genome sequencing enables accurate measurements of levels of sub-consensus intra-host virus genetic diversity and analysis of the role played by natural selection during cross-species transmission. We analysed the natural and experimental evolution of rabies virus (RABV), an important example of a virus that is able to make multiple host jumps. In particular, we (i) analyzed RABV evolution during experimental host switching with the goal of identifying possible genetic markers of host adaptation, (ii) compared the mutational changes observed during passage with those observed in natura, and (iii) determined whether the colonization of new hosts or tissues requires adaptive evolution in the virus. To address these aims, animal infection models (dog and fox) and primary cell culture models (embryo brain cells of dog and fox) were developed and viral variation was studied in detail through deep genome sequencing. Our analysis revealed a strong unidirectional host evolutionary effect, as dog-adapted rabies virus was able to replicate in fox and fox cells relatively easily, while dogs or neuronal dog cells were not easily susceptible to fox adapted-RABV. This suggests that dog RABV may be able to adapt to some hosts more easily than other host variants, or that when RABV switched from dogs to red foxes it lost its ability to adapt easily to other species. Although no difference in patterns of mutation variation between different host organs was observed, mutations were common following both in vitro and in vivo passage. However, only a small number of these mutations also appeared in natura, suggesting that adaptation during successful cross-species virus transmission is a complex, multifactorial evolutionary process.
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spelling pubmed-66156362019-07-25 Comparison of intra- and inter-host genetic diversity in rabies virus during experimental cross-species transmission Bonnaud, Emilie M. Troupin, Cécile Dacheux, Laurent Holmes, Edward C. Monchatre-Leroy, Elodie Tanguy, Marion Bouchier, Christiane Cliquet, Florence Barrat, Jacques Bourhy, Hervé PLoS Pathog Research Article The development of high-throughput genome sequencing enables accurate measurements of levels of sub-consensus intra-host virus genetic diversity and analysis of the role played by natural selection during cross-species transmission. We analysed the natural and experimental evolution of rabies virus (RABV), an important example of a virus that is able to make multiple host jumps. In particular, we (i) analyzed RABV evolution during experimental host switching with the goal of identifying possible genetic markers of host adaptation, (ii) compared the mutational changes observed during passage with those observed in natura, and (iii) determined whether the colonization of new hosts or tissues requires adaptive evolution in the virus. To address these aims, animal infection models (dog and fox) and primary cell culture models (embryo brain cells of dog and fox) were developed and viral variation was studied in detail through deep genome sequencing. Our analysis revealed a strong unidirectional host evolutionary effect, as dog-adapted rabies virus was able to replicate in fox and fox cells relatively easily, while dogs or neuronal dog cells were not easily susceptible to fox adapted-RABV. This suggests that dog RABV may be able to adapt to some hosts more easily than other host variants, or that when RABV switched from dogs to red foxes it lost its ability to adapt easily to other species. Although no difference in patterns of mutation variation between different host organs was observed, mutations were common following both in vitro and in vivo passage. However, only a small number of these mutations also appeared in natura, suggesting that adaptation during successful cross-species virus transmission is a complex, multifactorial evolutionary process. Public Library of Science 2019-06-20 /pmc/articles/PMC6615636/ /pubmed/31220188 http://dx.doi.org/10.1371/journal.ppat.1007799 Text en © 2019 Bonnaud et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Bonnaud, Emilie M.
Troupin, Cécile
Dacheux, Laurent
Holmes, Edward C.
Monchatre-Leroy, Elodie
Tanguy, Marion
Bouchier, Christiane
Cliquet, Florence
Barrat, Jacques
Bourhy, Hervé
Comparison of intra- and inter-host genetic diversity in rabies virus during experimental cross-species transmission
title Comparison of intra- and inter-host genetic diversity in rabies virus during experimental cross-species transmission
title_full Comparison of intra- and inter-host genetic diversity in rabies virus during experimental cross-species transmission
title_fullStr Comparison of intra- and inter-host genetic diversity in rabies virus during experimental cross-species transmission
title_full_unstemmed Comparison of intra- and inter-host genetic diversity in rabies virus during experimental cross-species transmission
title_short Comparison of intra- and inter-host genetic diversity in rabies virus during experimental cross-species transmission
title_sort comparison of intra- and inter-host genetic diversity in rabies virus during experimental cross-species transmission
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6615636/
https://www.ncbi.nlm.nih.gov/pubmed/31220188
http://dx.doi.org/10.1371/journal.ppat.1007799
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