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Patterns and Processes of Mycobacterium bovis Evolution Revealed by Phylogenomic Analyses

Mycobacterium bovis is an important animal pathogen worldwide that parasitizes wild and domesticated vertebrate livestock as well as humans. A comparison of the five M. bovis complete genomes from the United Kingdom, South Korea, Brazil, and the United States revealed four novel large-scale structur...

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Autores principales: Patané, José S.L., Martins, Joaquim, Castelão, Ana Beatriz, Nishibe, Christiane, Montera, Luciana, Bigi, Fabiana, Zumárraga, Martin J., Cataldi, Angel A., Junior, Antônio Fonseca, Roxo, Eliana, Osório, Ana Luiza A.R., Jorge, Klaudia S., Thacker, Tyler C., Almeida, Nalvo F., Araújo, Flabio R., Setubal, João C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5381553/
https://www.ncbi.nlm.nih.gov/pubmed/28201585
http://dx.doi.org/10.1093/gbe/evx022
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author Patané, José S.L.
Martins, Joaquim
Castelão, Ana Beatriz
Nishibe, Christiane
Montera, Luciana
Bigi, Fabiana
Zumárraga, Martin J.
Cataldi, Angel A.
Junior, Antônio Fonseca
Roxo, Eliana
Osório, Ana Luiza A.R.
Jorge, Klaudia S.
Thacker, Tyler C.
Almeida, Nalvo F.
Araújo, Flabio R.
Setubal, João C.
author_facet Patané, José S.L.
Martins, Joaquim
Castelão, Ana Beatriz
Nishibe, Christiane
Montera, Luciana
Bigi, Fabiana
Zumárraga, Martin J.
Cataldi, Angel A.
Junior, Antônio Fonseca
Roxo, Eliana
Osório, Ana Luiza A.R.
Jorge, Klaudia S.
Thacker, Tyler C.
Almeida, Nalvo F.
Araújo, Flabio R.
Setubal, João C.
author_sort Patané, José S.L.
collection PubMed
description Mycobacterium bovis is an important animal pathogen worldwide that parasitizes wild and domesticated vertebrate livestock as well as humans. A comparison of the five M. bovis complete genomes from the United Kingdom, South Korea, Brazil, and the United States revealed four novel large-scale structural variations of at least 2,000 bp. A comparative phylogenomic study including 2,483 core genes of 38 taxa from eight countries showed conflicting phylogenetic signal among sites. By minimizing this effect, we obtained a tree that better agrees with sampling locality. Results supported a relatively basal position of African strains (all isolated from Homo sapiens), confirming that Africa was an important region for early diversification and that humans were one of the earliest hosts. Selection analyses revealed that functional categories such as “Lipid transport and metabolism,” “Cell cycle control, cell division, chromosome partitioning” and “Cell motility” were significant for the evolution of the group, besides other categories previously described, showing importance of genes associated with virulence and cholesterol metabolism in the evolution of M. bovis. PE/PPE genes, many of which are known to be associated with virulence, were major targets for large-scale polymorphisms, homologous recombination, and positive selection, evincing for the first time a plethora of evolutionary forces possibly contributing to differential adaptability in M. bovis. By assuming different priors, US strains originated and started to diversify around 150–5,210 ya. By further analyzing the largest set of US genomes to date (76 in total), obtained from 14 host species, we detected that hosts were not clustered in clades (except for a few cases), with some faster-evolving strains being detected, suggesting fast and ongoing reinfections across host species, and therefore, the possibility of new bovine tuberculosis outbreaks.
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spelling pubmed-53815532017-11-07 Patterns and Processes of Mycobacterium bovis Evolution Revealed by Phylogenomic Analyses Patané, José S.L. Martins, Joaquim Castelão, Ana Beatriz Nishibe, Christiane Montera, Luciana Bigi, Fabiana Zumárraga, Martin J. Cataldi, Angel A. Junior, Antônio Fonseca Roxo, Eliana Osório, Ana Luiza A.R. Jorge, Klaudia S. Thacker, Tyler C. Almeida, Nalvo F. Araújo, Flabio R. Setubal, João C. Genome Biol Evol Research Article Mycobacterium bovis is an important animal pathogen worldwide that parasitizes wild and domesticated vertebrate livestock as well as humans. A comparison of the five M. bovis complete genomes from the United Kingdom, South Korea, Brazil, and the United States revealed four novel large-scale structural variations of at least 2,000 bp. A comparative phylogenomic study including 2,483 core genes of 38 taxa from eight countries showed conflicting phylogenetic signal among sites. By minimizing this effect, we obtained a tree that better agrees with sampling locality. Results supported a relatively basal position of African strains (all isolated from Homo sapiens), confirming that Africa was an important region for early diversification and that humans were one of the earliest hosts. Selection analyses revealed that functional categories such as “Lipid transport and metabolism,” “Cell cycle control, cell division, chromosome partitioning” and “Cell motility” were significant for the evolution of the group, besides other categories previously described, showing importance of genes associated with virulence and cholesterol metabolism in the evolution of M. bovis. PE/PPE genes, many of which are known to be associated with virulence, were major targets for large-scale polymorphisms, homologous recombination, and positive selection, evincing for the first time a plethora of evolutionary forces possibly contributing to differential adaptability in M. bovis. By assuming different priors, US strains originated and started to diversify around 150–5,210 ya. By further analyzing the largest set of US genomes to date (76 in total), obtained from 14 host species, we detected that hosts were not clustered in clades (except for a few cases), with some faster-evolving strains being detected, suggesting fast and ongoing reinfections across host species, and therefore, the possibility of new bovine tuberculosis outbreaks. Oxford University Press 2017-03-01 /pmc/articles/PMC5381553/ /pubmed/28201585 http://dx.doi.org/10.1093/gbe/evx022 Text en © The Author(s) 2017. Published by Oxford University Press on behalf of the Society for Molecular Biology and Evolution. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Research Article
Patané, José S.L.
Martins, Joaquim
Castelão, Ana Beatriz
Nishibe, Christiane
Montera, Luciana
Bigi, Fabiana
Zumárraga, Martin J.
Cataldi, Angel A.
Junior, Antônio Fonseca
Roxo, Eliana
Osório, Ana Luiza A.R.
Jorge, Klaudia S.
Thacker, Tyler C.
Almeida, Nalvo F.
Araújo, Flabio R.
Setubal, João C.
Patterns and Processes of Mycobacterium bovis Evolution Revealed by Phylogenomic Analyses
title Patterns and Processes of Mycobacterium bovis Evolution Revealed by Phylogenomic Analyses
title_full Patterns and Processes of Mycobacterium bovis Evolution Revealed by Phylogenomic Analyses
title_fullStr Patterns and Processes of Mycobacterium bovis Evolution Revealed by Phylogenomic Analyses
title_full_unstemmed Patterns and Processes of Mycobacterium bovis Evolution Revealed by Phylogenomic Analyses
title_short Patterns and Processes of Mycobacterium bovis Evolution Revealed by Phylogenomic Analyses
title_sort patterns and processes of mycobacterium bovis evolution revealed by phylogenomic analyses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5381553/
https://www.ncbi.nlm.nih.gov/pubmed/28201585
http://dx.doi.org/10.1093/gbe/evx022
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