Cargando…

The First Genomic and Proteomic Characterization of a Deep-Sea Sulfate Reducer: Insights into the Piezophilic Lifestyle of Desulfovibrio piezophilus

Desulfovibrio piezophilus strain C1TLV30(T) is a piezophilic anaerobe that was isolated from wood falls in the Mediterranean deep-sea. D. piezophilus represents a unique model for studying the adaptation of sulfate-reducing bacteria to hydrostatic pressure. Here, we report the 3.6 Mbp genome sequenc...

Descripción completa

Detalles Bibliográficos
Autores principales: Pradel, Nathalie, Ji, Boyang, Gimenez, Grégory, Talla, Emmanuel, Lenoble, Patricia, Garel, Marc, Tamburini, Christian, Fourquet, Patrick, Lebrun, Régine, Bertin, Philippe, Denis, Yann, Pophillat, Matthieu, Barbe, Valérie, Ollivier, Bernard, Dolla, Alain
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3559428/
https://www.ncbi.nlm.nih.gov/pubmed/23383081
http://dx.doi.org/10.1371/journal.pone.0055130
_version_ 1782257578141548544
author Pradel, Nathalie
Ji, Boyang
Gimenez, Grégory
Talla, Emmanuel
Lenoble, Patricia
Garel, Marc
Tamburini, Christian
Fourquet, Patrick
Lebrun, Régine
Bertin, Philippe
Denis, Yann
Pophillat, Matthieu
Barbe, Valérie
Ollivier, Bernard
Dolla, Alain
author_facet Pradel, Nathalie
Ji, Boyang
Gimenez, Grégory
Talla, Emmanuel
Lenoble, Patricia
Garel, Marc
Tamburini, Christian
Fourquet, Patrick
Lebrun, Régine
Bertin, Philippe
Denis, Yann
Pophillat, Matthieu
Barbe, Valérie
Ollivier, Bernard
Dolla, Alain
author_sort Pradel, Nathalie
collection PubMed
description Desulfovibrio piezophilus strain C1TLV30(T) is a piezophilic anaerobe that was isolated from wood falls in the Mediterranean deep-sea. D. piezophilus represents a unique model for studying the adaptation of sulfate-reducing bacteria to hydrostatic pressure. Here, we report the 3.6 Mbp genome sequence of this piezophilic bacterium. An analysis of the genome revealed the presence of seven genomic islands as well as gene clusters that are most likely linked to life at a high hydrostatic pressure. Comparative genomics and differential proteomics identified the transport of solutes and amino acids as well as amino acid metabolism as major cellular processes for the adaptation of this bacterium to hydrostatic pressure. In addition, the proteome profiles showed that the abundance of key enzymes that are involved in sulfate reduction was dependent on hydrostatic pressure. A comparative analysis of orthologs from the non-piezophilic marine bacterium D. salexigens and D. piezophilus identified aspartic acid, glutamic acid, lysine, asparagine, serine and tyrosine as the amino acids preferentially replaced by arginine, histidine, alanine and threonine in the piezophilic strain. This work reveals the adaptation strategies developed by a sulfate reducer to a deep-sea lifestyle.
format Online
Article
Text
id pubmed-3559428
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-35594282013-02-04 The First Genomic and Proteomic Characterization of a Deep-Sea Sulfate Reducer: Insights into the Piezophilic Lifestyle of Desulfovibrio piezophilus Pradel, Nathalie Ji, Boyang Gimenez, Grégory Talla, Emmanuel Lenoble, Patricia Garel, Marc Tamburini, Christian Fourquet, Patrick Lebrun, Régine Bertin, Philippe Denis, Yann Pophillat, Matthieu Barbe, Valérie Ollivier, Bernard Dolla, Alain PLoS One Research Article Desulfovibrio piezophilus strain C1TLV30(T) is a piezophilic anaerobe that was isolated from wood falls in the Mediterranean deep-sea. D. piezophilus represents a unique model for studying the adaptation of sulfate-reducing bacteria to hydrostatic pressure. Here, we report the 3.6 Mbp genome sequence of this piezophilic bacterium. An analysis of the genome revealed the presence of seven genomic islands as well as gene clusters that are most likely linked to life at a high hydrostatic pressure. Comparative genomics and differential proteomics identified the transport of solutes and amino acids as well as amino acid metabolism as major cellular processes for the adaptation of this bacterium to hydrostatic pressure. In addition, the proteome profiles showed that the abundance of key enzymes that are involved in sulfate reduction was dependent on hydrostatic pressure. A comparative analysis of orthologs from the non-piezophilic marine bacterium D. salexigens and D. piezophilus identified aspartic acid, glutamic acid, lysine, asparagine, serine and tyrosine as the amino acids preferentially replaced by arginine, histidine, alanine and threonine in the piezophilic strain. This work reveals the adaptation strategies developed by a sulfate reducer to a deep-sea lifestyle. Public Library of Science 2013-01-30 /pmc/articles/PMC3559428/ /pubmed/23383081 http://dx.doi.org/10.1371/journal.pone.0055130 Text en © 2013 Pradel 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
Pradel, Nathalie
Ji, Boyang
Gimenez, Grégory
Talla, Emmanuel
Lenoble, Patricia
Garel, Marc
Tamburini, Christian
Fourquet, Patrick
Lebrun, Régine
Bertin, Philippe
Denis, Yann
Pophillat, Matthieu
Barbe, Valérie
Ollivier, Bernard
Dolla, Alain
The First Genomic and Proteomic Characterization of a Deep-Sea Sulfate Reducer: Insights into the Piezophilic Lifestyle of Desulfovibrio piezophilus
title The First Genomic and Proteomic Characterization of a Deep-Sea Sulfate Reducer: Insights into the Piezophilic Lifestyle of Desulfovibrio piezophilus
title_full The First Genomic and Proteomic Characterization of a Deep-Sea Sulfate Reducer: Insights into the Piezophilic Lifestyle of Desulfovibrio piezophilus
title_fullStr The First Genomic and Proteomic Characterization of a Deep-Sea Sulfate Reducer: Insights into the Piezophilic Lifestyle of Desulfovibrio piezophilus
title_full_unstemmed The First Genomic and Proteomic Characterization of a Deep-Sea Sulfate Reducer: Insights into the Piezophilic Lifestyle of Desulfovibrio piezophilus
title_short The First Genomic and Proteomic Characterization of a Deep-Sea Sulfate Reducer: Insights into the Piezophilic Lifestyle of Desulfovibrio piezophilus
title_sort first genomic and proteomic characterization of a deep-sea sulfate reducer: insights into the piezophilic lifestyle of desulfovibrio piezophilus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3559428/
https://www.ncbi.nlm.nih.gov/pubmed/23383081
http://dx.doi.org/10.1371/journal.pone.0055130
work_keys_str_mv AT pradelnathalie thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT jiboyang thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT gimenezgregory thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT tallaemmanuel thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT lenoblepatricia thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT garelmarc thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT tamburinichristian thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT fourquetpatrick thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT lebrunregine thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT bertinphilippe thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT denisyann thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT pophillatmatthieu thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT barbevalerie thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT ollivierbernard thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT dollaalain thefirstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT pradelnathalie firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT jiboyang firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT gimenezgregory firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT tallaemmanuel firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT lenoblepatricia firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT garelmarc firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT tamburinichristian firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT fourquetpatrick firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT lebrunregine firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT bertinphilippe firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT denisyann firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT pophillatmatthieu firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT barbevalerie firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT ollivierbernard firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus
AT dollaalain firstgenomicandproteomiccharacterizationofadeepseasulfatereducerinsightsintothepiezophiliclifestyleofdesulfovibriopiezophilus