A smooth tubercle bacillus from Ethiopia ...
Type de document :
Article dans une revue scientifique: Article original
Titre :
A smooth tubercle bacillus from Ethiopia phylogenetically close to the Mycobacterium tuberculosis complex
Auteur(s) :
Yenew, Bazezew [Auteur]
Ghodousi, Arash [Auteur]
Diriba, Getu [Auteur]
Tesfaye, Ephrem [Auteur]
Cabibbe, Andrea Maurizio [Auteur]
Amare, Misikir [Auteur]
Moga, Shewki [Auteur]
Alemu, Ayinalem [Auteur]
Dagne, Binyam [Auteur]
Sinshaw, Waganeh [Auteur]
Mollalign, Hilina [Auteur]
Meaza, Abyot [Auteur]
Tadesse, Mengistu [Auteur]
Gamtesa, Dinka Fikadu [Auteur]
Abebaw, Yeshiwork [Auteur]
Seid, Getachew [Auteur]
Zerihun, Betselot [Auteur]
Getu, Melak [Auteur]
Chiacchiaretta, Matteo [Auteur]
Gaudin, Cyril [Auteur]
Marceau, Michael [Auteur]
Didelot, Xavier [Auteur]
Tolera, Getachew [Auteur]
Abdella, Saro [Auteur]
Kebede, Abebaw [Auteur]
Getahun, Muluwork [Auteur]
Mehammed, Zemedu [Auteur]
Supply, Philip [Auteur]
Centre d’Infection et d’Immunité de Lille - INSERM U 1019 - UMR 9017 - UMR 8204 [CIIL]
Cirillo, Daniela Maria [Auteur]
Ghodousi, Arash [Auteur]
Diriba, Getu [Auteur]
Tesfaye, Ephrem [Auteur]
Cabibbe, Andrea Maurizio [Auteur]
Amare, Misikir [Auteur]
Moga, Shewki [Auteur]
Alemu, Ayinalem [Auteur]
Dagne, Binyam [Auteur]
Sinshaw, Waganeh [Auteur]
Mollalign, Hilina [Auteur]
Meaza, Abyot [Auteur]
Tadesse, Mengistu [Auteur]
Gamtesa, Dinka Fikadu [Auteur]
Abebaw, Yeshiwork [Auteur]
Seid, Getachew [Auteur]
Zerihun, Betselot [Auteur]
Getu, Melak [Auteur]
Chiacchiaretta, Matteo [Auteur]
Gaudin, Cyril [Auteur]
Marceau, Michael [Auteur]
Didelot, Xavier [Auteur]
Tolera, Getachew [Auteur]
Abdella, Saro [Auteur]
Kebede, Abebaw [Auteur]
Getahun, Muluwork [Auteur]
Mehammed, Zemedu [Auteur]
Supply, Philip [Auteur]
Centre d’Infection et d’Immunité de Lille - INSERM U 1019 - UMR 9017 - UMR 8204 [CIIL]
Cirillo, Daniela Maria [Auteur]
Titre de la revue :
Nature Communications
Pagination :
7519
Éditeur :
Nature Publishing Group
Date de publication :
2023-11-18
ISSN :
2041-1723
Discipline(s) HAL :
Sciences du Vivant [q-bio]
Résumé en anglais : [en]
Abstract The Mycobacterium tuberculosis complex (MTBC) includes several human- and animal-adapted pathogens. It is thought to have originated in East Africa from a recombinogenic Mycobacterium canettii -like ancestral pool. ...
Lire la suite >Abstract The Mycobacterium tuberculosis complex (MTBC) includes several human- and animal-adapted pathogens. It is thought to have originated in East Africa from a recombinogenic Mycobacterium canettii -like ancestral pool. Here, we describe the discovery of a clinical tuberculosis strain isolated in Ethiopia that shares archetypal phenotypic and genomic features of M. canettii strains, but represents a phylogenetic branch much closer to the MTBC clade than to the M. canettii strains. Analysis of genomic traces of horizontal gene transfer in this isolate and previously identified M. canettii strains indicates a persistent albeit decreased recombinogenic lifestyle near the emergence of the MTBC. Our findings support that the MTBC emergence from its putative free-living M. canettii -like progenitor is evolutionarily very recent, and suggest the existence of a continuum of further extant derivatives from ancestral stages, close to the root of the MTBC, along the Great Rift Valley.Lire moins >
Lire la suite >Abstract The Mycobacterium tuberculosis complex (MTBC) includes several human- and animal-adapted pathogens. It is thought to have originated in East Africa from a recombinogenic Mycobacterium canettii -like ancestral pool. Here, we describe the discovery of a clinical tuberculosis strain isolated in Ethiopia that shares archetypal phenotypic and genomic features of M. canettii strains, but represents a phylogenetic branch much closer to the MTBC clade than to the M. canettii strains. Analysis of genomic traces of horizontal gene transfer in this isolate and previously identified M. canettii strains indicates a persistent albeit decreased recombinogenic lifestyle near the emergence of the MTBC. Our findings support that the MTBC emergence from its putative free-living M. canettii -like progenitor is evolutionarily very recent, and suggest the existence of a continuum of further extant derivatives from ancestral stages, close to the root of the MTBC, along the Great Rift Valley.Lire moins >
Langue :
Anglais
Comité de lecture :
Oui
Audience :
Internationale
Vulgarisation :
Non
Source :
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