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The Cyst-Dividing Bacterium Ramlibacter tataouinensis TTB310 Genome Reveals a Well-Stocked Toolbox for Adaptation to a Desert Environment
Ramlibacter tataouinensis TTB310(T) (strain TTB310), a betaproteobacterium isolated from a semi-arid region of South Tunisia (Tataouine), is characterized by the presence of both spherical and rod-shaped cells in pure culture. Cell division of strain TTB310 occurs by the binary fission of spherical...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2011
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3164672/ https://www.ncbi.nlm.nih.gov/pubmed/21912644 http://dx.doi.org/10.1371/journal.pone.0023784 |
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author | De Luca, Gilles Barakat, Mohamed Ortet, Philippe Fochesato, Sylvain Jourlin-Castelli, Cécile Ansaldi, Mireille Py, Béatrice Fichant, Gwennaele Coutinho, Pedro M. Voulhoux, Romé Bastien, Olivier Maréchal, Eric Henrissat, Bernard Quentin, Yves Noirot, Philippe Filloux, Alain Méjean, Vincent DuBow, Michael S. Barras, Frédéric Barbe, Valérie Weissenbach, Jean Mihalcescu, Irina Verméglio, André Achouak, Wafa Heulin, Thierry |
author_facet | De Luca, Gilles Barakat, Mohamed Ortet, Philippe Fochesato, Sylvain Jourlin-Castelli, Cécile Ansaldi, Mireille Py, Béatrice Fichant, Gwennaele Coutinho, Pedro M. Voulhoux, Romé Bastien, Olivier Maréchal, Eric Henrissat, Bernard Quentin, Yves Noirot, Philippe Filloux, Alain Méjean, Vincent DuBow, Michael S. Barras, Frédéric Barbe, Valérie Weissenbach, Jean Mihalcescu, Irina Verméglio, André Achouak, Wafa Heulin, Thierry |
author_sort | De Luca, Gilles |
collection | PubMed |
description | Ramlibacter tataouinensis TTB310(T) (strain TTB310), a betaproteobacterium isolated from a semi-arid region of South Tunisia (Tataouine), is characterized by the presence of both spherical and rod-shaped cells in pure culture. Cell division of strain TTB310 occurs by the binary fission of spherical “cyst-like” cells (“cyst-cyst” division). The rod-shaped cells formed at the periphery of a colony (consisting mainly of cysts) are highly motile and colonize a new environment, where they form a new colony by reversion to cyst-like cells. This unique cell cycle of strain TTB310, with desiccation tolerant cyst-like cells capable of division and desiccation sensitive motile rods capable of dissemination, appears to be a novel adaptation for life in a hot and dry desert environment. In order to gain insights into strain TTB310's underlying genetic repertoire and possible mechanisms responsible for its unusual lifestyle, the genome of strain TTB310 was completely sequenced and subsequently annotated. The complete genome consists of a single circular chromosome of 4,070,194 bp with an average G+C content of 70.0%, the highest among the Betaproteobacteria sequenced to date, with total of 3,899 predicted coding sequences covering 92% of the genome. We found that strain TTB310 has developed a highly complex network of two-component systems, which may utilize responses to light and perhaps a rudimentary circadian hourglass to anticipate water availability at the dew time in the middle/end of the desert winter nights and thus direct the growth window to cyclic water availability times. Other interesting features of the strain TTB310 genome that appear to be important for desiccation tolerance, including intermediary metabolism compounds such as trehalose or polyhydroxyalkanoate, and signal transduction pathways, are presented and discussed. |
format | Online Article Text |
id | pubmed-3164672 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2011 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-31646722011-09-12 The Cyst-Dividing Bacterium Ramlibacter tataouinensis TTB310 Genome Reveals a Well-Stocked Toolbox for Adaptation to a Desert Environment De Luca, Gilles Barakat, Mohamed Ortet, Philippe Fochesato, Sylvain Jourlin-Castelli, Cécile Ansaldi, Mireille Py, Béatrice Fichant, Gwennaele Coutinho, Pedro M. Voulhoux, Romé Bastien, Olivier Maréchal, Eric Henrissat, Bernard Quentin, Yves Noirot, Philippe Filloux, Alain Méjean, Vincent DuBow, Michael S. Barras, Frédéric Barbe, Valérie Weissenbach, Jean Mihalcescu, Irina Verméglio, André Achouak, Wafa Heulin, Thierry PLoS One Research Article Ramlibacter tataouinensis TTB310(T) (strain TTB310), a betaproteobacterium isolated from a semi-arid region of South Tunisia (Tataouine), is characterized by the presence of both spherical and rod-shaped cells in pure culture. Cell division of strain TTB310 occurs by the binary fission of spherical “cyst-like” cells (“cyst-cyst” division). The rod-shaped cells formed at the periphery of a colony (consisting mainly of cysts) are highly motile and colonize a new environment, where they form a new colony by reversion to cyst-like cells. This unique cell cycle of strain TTB310, with desiccation tolerant cyst-like cells capable of division and desiccation sensitive motile rods capable of dissemination, appears to be a novel adaptation for life in a hot and dry desert environment. In order to gain insights into strain TTB310's underlying genetic repertoire and possible mechanisms responsible for its unusual lifestyle, the genome of strain TTB310 was completely sequenced and subsequently annotated. The complete genome consists of a single circular chromosome of 4,070,194 bp with an average G+C content of 70.0%, the highest among the Betaproteobacteria sequenced to date, with total of 3,899 predicted coding sequences covering 92% of the genome. We found that strain TTB310 has developed a highly complex network of two-component systems, which may utilize responses to light and perhaps a rudimentary circadian hourglass to anticipate water availability at the dew time in the middle/end of the desert winter nights and thus direct the growth window to cyclic water availability times. Other interesting features of the strain TTB310 genome that appear to be important for desiccation tolerance, including intermediary metabolism compounds such as trehalose or polyhydroxyalkanoate, and signal transduction pathways, are presented and discussed. Public Library of Science 2011-09-01 /pmc/articles/PMC3164672/ /pubmed/21912644 http://dx.doi.org/10.1371/journal.pone.0023784 Text en De Luca 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 De Luca, Gilles Barakat, Mohamed Ortet, Philippe Fochesato, Sylvain Jourlin-Castelli, Cécile Ansaldi, Mireille Py, Béatrice Fichant, Gwennaele Coutinho, Pedro M. Voulhoux, Romé Bastien, Olivier Maréchal, Eric Henrissat, Bernard Quentin, Yves Noirot, Philippe Filloux, Alain Méjean, Vincent DuBow, Michael S. Barras, Frédéric Barbe, Valérie Weissenbach, Jean Mihalcescu, Irina Verméglio, André Achouak, Wafa Heulin, Thierry The Cyst-Dividing Bacterium Ramlibacter tataouinensis TTB310 Genome Reveals a Well-Stocked Toolbox for Adaptation to a Desert Environment |
title | The Cyst-Dividing Bacterium Ramlibacter tataouinensis TTB310 Genome Reveals a Well-Stocked Toolbox for Adaptation to a Desert Environment |
title_full | The Cyst-Dividing Bacterium Ramlibacter tataouinensis TTB310 Genome Reveals a Well-Stocked Toolbox for Adaptation to a Desert Environment |
title_fullStr | The Cyst-Dividing Bacterium Ramlibacter tataouinensis TTB310 Genome Reveals a Well-Stocked Toolbox for Adaptation to a Desert Environment |
title_full_unstemmed | The Cyst-Dividing Bacterium Ramlibacter tataouinensis TTB310 Genome Reveals a Well-Stocked Toolbox for Adaptation to a Desert Environment |
title_short | The Cyst-Dividing Bacterium Ramlibacter tataouinensis TTB310 Genome Reveals a Well-Stocked Toolbox for Adaptation to a Desert Environment |
title_sort | cyst-dividing bacterium ramlibacter tataouinensis ttb310 genome reveals a well-stocked toolbox for adaptation to a desert environment |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3164672/ https://www.ncbi.nlm.nih.gov/pubmed/21912644 http://dx.doi.org/10.1371/journal.pone.0023784 |
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