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The Bifidobacterium dentium Bd1 Genome Sequence Reflects Its Genetic Adaptation to the Human Oral Cavity
Bifidobacteria, one of the relatively dominant components of the human intestinal microbiota, are considered one of the key groups of beneficial intestinal bacteria (probiotic bacteria). However, in addition to health-promoting taxa, the genus Bifidobacterium also includes Bifidobacterium dentium, a...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
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Public Library of Science
2009
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2788695/ https://www.ncbi.nlm.nih.gov/pubmed/20041198 http://dx.doi.org/10.1371/journal.pgen.1000785 |
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author | Ventura, Marco Turroni, Francesca Zomer, Aldert Foroni, Elena Giubellini, Vanessa Bottacini, Francesca Canchaya, Carlos Claesson, Marcus J. He, Fei Mantzourani, Maria Mulas, Laura Ferrarini, Alberto Gao, Beile Delledonne, Massimo Henrissat, Bernard Coutinho, Pedro Oggioni, Marco Gupta, Radhey S. Zhang, Ziding Beighton, David Fitzgerald, Gerald F. O'Toole, Paul W. van Sinderen, Douwe |
author_facet | Ventura, Marco Turroni, Francesca Zomer, Aldert Foroni, Elena Giubellini, Vanessa Bottacini, Francesca Canchaya, Carlos Claesson, Marcus J. He, Fei Mantzourani, Maria Mulas, Laura Ferrarini, Alberto Gao, Beile Delledonne, Massimo Henrissat, Bernard Coutinho, Pedro Oggioni, Marco Gupta, Radhey S. Zhang, Ziding Beighton, David Fitzgerald, Gerald F. O'Toole, Paul W. van Sinderen, Douwe |
author_sort | Ventura, Marco |
collection | PubMed |
description | Bifidobacteria, one of the relatively dominant components of the human intestinal microbiota, are considered one of the key groups of beneficial intestinal bacteria (probiotic bacteria). However, in addition to health-promoting taxa, the genus Bifidobacterium also includes Bifidobacterium dentium, an opportunistic cariogenic pathogen. The genetic basis for the ability of B. dentium to survive in the oral cavity and contribute to caries development is not understood. The genome of B. dentium Bd1, a strain isolated from dental caries, was sequenced to completion to uncover a single circular 2,636,368 base pair chromosome with 2,143 predicted open reading frames. Annotation of the genome sequence revealed multiple ways in which B. dentium has adapted to the oral environment through specialized nutrient acquisition, defences against antimicrobials, and gene products that increase fitness and competitiveness within the oral niche. B. dentium Bd1 was shown to metabolize a wide variety of carbohydrates, consistent with genome-based predictions, while colonization and persistence factors implicated in tissue adhesion, acid tolerance, and the metabolism of human saliva-derived compounds were also identified. Global transcriptome analysis demonstrated that many of the genes encoding these predicted traits are highly expressed under relevant physiological conditions. This is the first report to identify, through various genomic approaches, specific genetic adaptations of a Bifidobacterium taxon, Bifidobacterium dentium Bd1, to a lifestyle as a cariogenic microorganism in the oral cavity. In silico analysis and comparative genomic hybridization experiments clearly reveal a high level of genome conservation among various B. dentium strains. The data indicate that the genome of this opportunistic cariogen has evolved through a very limited number of horizontal gene acquisition events, highlighting the narrow boundaries that separate commensals from opportunistic pathogens. |
format | Text |
id | pubmed-2788695 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2009 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-27886952009-12-30 The Bifidobacterium dentium Bd1 Genome Sequence Reflects Its Genetic Adaptation to the Human Oral Cavity Ventura, Marco Turroni, Francesca Zomer, Aldert Foroni, Elena Giubellini, Vanessa Bottacini, Francesca Canchaya, Carlos Claesson, Marcus J. He, Fei Mantzourani, Maria Mulas, Laura Ferrarini, Alberto Gao, Beile Delledonne, Massimo Henrissat, Bernard Coutinho, Pedro Oggioni, Marco Gupta, Radhey S. Zhang, Ziding Beighton, David Fitzgerald, Gerald F. O'Toole, Paul W. van Sinderen, Douwe PLoS Genet Research Article Bifidobacteria, one of the relatively dominant components of the human intestinal microbiota, are considered one of the key groups of beneficial intestinal bacteria (probiotic bacteria). However, in addition to health-promoting taxa, the genus Bifidobacterium also includes Bifidobacterium dentium, an opportunistic cariogenic pathogen. The genetic basis for the ability of B. dentium to survive in the oral cavity and contribute to caries development is not understood. The genome of B. dentium Bd1, a strain isolated from dental caries, was sequenced to completion to uncover a single circular 2,636,368 base pair chromosome with 2,143 predicted open reading frames. Annotation of the genome sequence revealed multiple ways in which B. dentium has adapted to the oral environment through specialized nutrient acquisition, defences against antimicrobials, and gene products that increase fitness and competitiveness within the oral niche. B. dentium Bd1 was shown to metabolize a wide variety of carbohydrates, consistent with genome-based predictions, while colonization and persistence factors implicated in tissue adhesion, acid tolerance, and the metabolism of human saliva-derived compounds were also identified. Global transcriptome analysis demonstrated that many of the genes encoding these predicted traits are highly expressed under relevant physiological conditions. This is the first report to identify, through various genomic approaches, specific genetic adaptations of a Bifidobacterium taxon, Bifidobacterium dentium Bd1, to a lifestyle as a cariogenic microorganism in the oral cavity. In silico analysis and comparative genomic hybridization experiments clearly reveal a high level of genome conservation among various B. dentium strains. The data indicate that the genome of this opportunistic cariogen has evolved through a very limited number of horizontal gene acquisition events, highlighting the narrow boundaries that separate commensals from opportunistic pathogens. Public Library of Science 2009-12-24 /pmc/articles/PMC2788695/ /pubmed/20041198 http://dx.doi.org/10.1371/journal.pgen.1000785 Text en Ventura 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, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Ventura, Marco Turroni, Francesca Zomer, Aldert Foroni, Elena Giubellini, Vanessa Bottacini, Francesca Canchaya, Carlos Claesson, Marcus J. He, Fei Mantzourani, Maria Mulas, Laura Ferrarini, Alberto Gao, Beile Delledonne, Massimo Henrissat, Bernard Coutinho, Pedro Oggioni, Marco Gupta, Radhey S. Zhang, Ziding Beighton, David Fitzgerald, Gerald F. O'Toole, Paul W. van Sinderen, Douwe The Bifidobacterium dentium Bd1 Genome Sequence Reflects Its Genetic Adaptation to the Human Oral Cavity |
title | The Bifidobacterium dentium Bd1 Genome Sequence Reflects Its Genetic Adaptation to the Human Oral Cavity |
title_full | The Bifidobacterium dentium Bd1 Genome Sequence Reflects Its Genetic Adaptation to the Human Oral Cavity |
title_fullStr | The Bifidobacterium dentium Bd1 Genome Sequence Reflects Its Genetic Adaptation to the Human Oral Cavity |
title_full_unstemmed | The Bifidobacterium dentium Bd1 Genome Sequence Reflects Its Genetic Adaptation to the Human Oral Cavity |
title_short | The Bifidobacterium dentium Bd1 Genome Sequence Reflects Its Genetic Adaptation to the Human Oral Cavity |
title_sort | bifidobacterium dentium bd1 genome sequence reflects its genetic adaptation to the human oral cavity |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2788695/ https://www.ncbi.nlm.nih.gov/pubmed/20041198 http://dx.doi.org/10.1371/journal.pgen.1000785 |
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