Cargando…

Adaptation in Toxic Environments: Arsenic Genomic Islands in the Bacterial Genus Thiomonas

Acid mine drainage (AMD) is a highly toxic environment for most living organisms due to the presence of many lethal elements including arsenic (As). Thiomonas (Tm.) bacteria are found ubiquitously in AMD and can withstand these extreme conditions, in part because they are able to oxidize arsenite. I...

Descripción completa

Detalles Bibliográficos
Autores principales: Freel, Kelle C., Krueger, Martin C., Farasin, Julien, Brochier-Armanet, Céline, Barbe, Valérie, Andrès, Jeremy, Cholley, Pierre-Etienne, Dillies, Marie-Agnès, Jagla, Bernd, Koechler, Sandrine, Leva, Yann, Magdelenat, Ghislaine, Plewniak, Frédéric, Proux, Caroline, Coppée, Jean-Yves, Bertin, Philippe N., Heipieper, Hermann J., Arsène-Ploetze, Florence
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4589449/
https://www.ncbi.nlm.nih.gov/pubmed/26422469
http://dx.doi.org/10.1371/journal.pone.0139011
_version_ 1782392793873776640
author Freel, Kelle C.
Krueger, Martin C.
Farasin, Julien
Brochier-Armanet, Céline
Barbe, Valérie
Andrès, Jeremy
Cholley, Pierre-Etienne
Dillies, Marie-Agnès
Jagla, Bernd
Koechler, Sandrine
Leva, Yann
Magdelenat, Ghislaine
Plewniak, Frédéric
Proux, Caroline
Coppée, Jean-Yves
Bertin, Philippe N.
Heipieper, Hermann J.
Arsène-Ploetze, Florence
author_facet Freel, Kelle C.
Krueger, Martin C.
Farasin, Julien
Brochier-Armanet, Céline
Barbe, Valérie
Andrès, Jeremy
Cholley, Pierre-Etienne
Dillies, Marie-Agnès
Jagla, Bernd
Koechler, Sandrine
Leva, Yann
Magdelenat, Ghislaine
Plewniak, Frédéric
Proux, Caroline
Coppée, Jean-Yves
Bertin, Philippe N.
Heipieper, Hermann J.
Arsène-Ploetze, Florence
author_sort Freel, Kelle C.
collection PubMed
description Acid mine drainage (AMD) is a highly toxic environment for most living organisms due to the presence of many lethal elements including arsenic (As). Thiomonas (Tm.) bacteria are found ubiquitously in AMD and can withstand these extreme conditions, in part because they are able to oxidize arsenite. In order to further improve our knowledge concerning the adaptive capacities of these bacteria, we sequenced and assembled the genome of six isolates derived from the Carnoulès AMD, and compared them to the genomes of Tm. arsenitoxydans 3As (isolated from the same site) and Tm. intermedia K12 (isolated from a sewage pipe). A detailed analysis of the Tm. sp. CB2 genome revealed various rearrangements had occurred in comparison to what was observed in 3As and K12 and over 20 genomic islands (GEIs) were found in each of these three genomes. We performed a detailed comparison of the two arsenic-related islands found in CB2, carrying the genes required for arsenite oxidation and As resistance, with those found in K12, 3As, and five other Thiomonas strains also isolated from Carnoulès (CB1, CB3, CB6, ACO3 and ACO7). Our results suggest that these arsenic-related islands have evolved differentially in these closely related Thiomonas strains, leading to divergent capacities to survive in As rich environments.
format Online
Article
Text
id pubmed-4589449
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-45894492015-10-02 Adaptation in Toxic Environments: Arsenic Genomic Islands in the Bacterial Genus Thiomonas Freel, Kelle C. Krueger, Martin C. Farasin, Julien Brochier-Armanet, Céline Barbe, Valérie Andrès, Jeremy Cholley, Pierre-Etienne Dillies, Marie-Agnès Jagla, Bernd Koechler, Sandrine Leva, Yann Magdelenat, Ghislaine Plewniak, Frédéric Proux, Caroline Coppée, Jean-Yves Bertin, Philippe N. Heipieper, Hermann J. Arsène-Ploetze, Florence PLoS One Research Article Acid mine drainage (AMD) is a highly toxic environment for most living organisms due to the presence of many lethal elements including arsenic (As). Thiomonas (Tm.) bacteria are found ubiquitously in AMD and can withstand these extreme conditions, in part because they are able to oxidize arsenite. In order to further improve our knowledge concerning the adaptive capacities of these bacteria, we sequenced and assembled the genome of six isolates derived from the Carnoulès AMD, and compared them to the genomes of Tm. arsenitoxydans 3As (isolated from the same site) and Tm. intermedia K12 (isolated from a sewage pipe). A detailed analysis of the Tm. sp. CB2 genome revealed various rearrangements had occurred in comparison to what was observed in 3As and K12 and over 20 genomic islands (GEIs) were found in each of these three genomes. We performed a detailed comparison of the two arsenic-related islands found in CB2, carrying the genes required for arsenite oxidation and As resistance, with those found in K12, 3As, and five other Thiomonas strains also isolated from Carnoulès (CB1, CB3, CB6, ACO3 and ACO7). Our results suggest that these arsenic-related islands have evolved differentially in these closely related Thiomonas strains, leading to divergent capacities to survive in As rich environments. Public Library of Science 2015-09-30 /pmc/articles/PMC4589449/ /pubmed/26422469 http://dx.doi.org/10.1371/journal.pone.0139011 Text en © 2015 Freel 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
Freel, Kelle C.
Krueger, Martin C.
Farasin, Julien
Brochier-Armanet, Céline
Barbe, Valérie
Andrès, Jeremy
Cholley, Pierre-Etienne
Dillies, Marie-Agnès
Jagla, Bernd
Koechler, Sandrine
Leva, Yann
Magdelenat, Ghislaine
Plewniak, Frédéric
Proux, Caroline
Coppée, Jean-Yves
Bertin, Philippe N.
Heipieper, Hermann J.
Arsène-Ploetze, Florence
Adaptation in Toxic Environments: Arsenic Genomic Islands in the Bacterial Genus Thiomonas
title Adaptation in Toxic Environments: Arsenic Genomic Islands in the Bacterial Genus Thiomonas
title_full Adaptation in Toxic Environments: Arsenic Genomic Islands in the Bacterial Genus Thiomonas
title_fullStr Adaptation in Toxic Environments: Arsenic Genomic Islands in the Bacterial Genus Thiomonas
title_full_unstemmed Adaptation in Toxic Environments: Arsenic Genomic Islands in the Bacterial Genus Thiomonas
title_short Adaptation in Toxic Environments: Arsenic Genomic Islands in the Bacterial Genus Thiomonas
title_sort adaptation in toxic environments: arsenic genomic islands in the bacterial genus thiomonas
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4589449/
https://www.ncbi.nlm.nih.gov/pubmed/26422469
http://dx.doi.org/10.1371/journal.pone.0139011
work_keys_str_mv AT freelkellec adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT kruegermartinc adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT farasinjulien adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT brochierarmanetceline adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT barbevalerie adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT andresjeremy adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT cholleypierreetienne adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT dilliesmarieagnes adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT jaglabernd adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT koechlersandrine adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT levayann adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT magdelenatghislaine adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT plewniakfrederic adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT prouxcaroline adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT coppeejeanyves adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT bertinphilippen adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT heipieperhermannj adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas
AT arseneploetzeflorence adaptationintoxicenvironmentsarsenicgenomicislandsinthebacterialgenusthiomonas