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The Genome of the Toluene-Degrading Pseudomonas veronii Strain 1YdBTEX2 and Its Differential Gene Expression in Contaminated Sand

The natural restoration of soils polluted by aromatic hydrocarbons such as benzene, toluene, ethylbenzene and m- and p-xylene (BTEX) may be accelerated by inoculation of specific biodegraders (bioaugmentation). Bioaugmentation mainly involves introducing bacteria that deploy their metabolic properti...

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Autores principales: Morales, Marian, Sentchilo, Vladimir, Bertelli, Claire, Komljenovic, Andrea, Kryuchkova-Mostacci, Nadezda, Bourdilloud, Audrey, Linke, Burkhard, Goesmann, Alexander, Harshman, Keith, Segers, Francisca, Delapierre, Fabien, Fiorucci, Damien, Seppey, Mathieu, Trofimenco, Evgeniya, Berra, Pauline, El Taher, Athimed, Loiseau, Chloé, Roggero, Dejan, Sulfiotti, Madeleine, Etienne, Angela, Ruiz Buendia, Gustavo, Pillard, Loïc, Escoriza, Angelique, Moritz, Roxane, Schneider, Cedric, Alfonso, Esteban, Ben Jeddou, Fatma, Selmoni, Oliver, Resch, Gregory, Greub, Gilbert, Emery, Olivier, Dubey, Manupriyam, Pillonel, Trestan, Robinson-Rechavi, Marc, van der Meer, Jan Roelof
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5094676/
https://www.ncbi.nlm.nih.gov/pubmed/27812150
http://dx.doi.org/10.1371/journal.pone.0165850
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author Morales, Marian
Sentchilo, Vladimir
Bertelli, Claire
Komljenovic, Andrea
Kryuchkova-Mostacci, Nadezda
Bourdilloud, Audrey
Linke, Burkhard
Goesmann, Alexander
Harshman, Keith
Segers, Francisca
Delapierre, Fabien
Fiorucci, Damien
Seppey, Mathieu
Trofimenco, Evgeniya
Berra, Pauline
El Taher, Athimed
Loiseau, Chloé
Roggero, Dejan
Sulfiotti, Madeleine
Etienne, Angela
Ruiz Buendia, Gustavo
Pillard, Loïc
Escoriza, Angelique
Moritz, Roxane
Schneider, Cedric
Alfonso, Esteban
Ben Jeddou, Fatma
Selmoni, Oliver
Resch, Gregory
Greub, Gilbert
Emery, Olivier
Dubey, Manupriyam
Pillonel, Trestan
Robinson-Rechavi, Marc
van der Meer, Jan Roelof
author_facet Morales, Marian
Sentchilo, Vladimir
Bertelli, Claire
Komljenovic, Andrea
Kryuchkova-Mostacci, Nadezda
Bourdilloud, Audrey
Linke, Burkhard
Goesmann, Alexander
Harshman, Keith
Segers, Francisca
Delapierre, Fabien
Fiorucci, Damien
Seppey, Mathieu
Trofimenco, Evgeniya
Berra, Pauline
El Taher, Athimed
Loiseau, Chloé
Roggero, Dejan
Sulfiotti, Madeleine
Etienne, Angela
Ruiz Buendia, Gustavo
Pillard, Loïc
Escoriza, Angelique
Moritz, Roxane
Schneider, Cedric
Alfonso, Esteban
Ben Jeddou, Fatma
Selmoni, Oliver
Resch, Gregory
Greub, Gilbert
Emery, Olivier
Dubey, Manupriyam
Pillonel, Trestan
Robinson-Rechavi, Marc
van der Meer, Jan Roelof
author_sort Morales, Marian
collection PubMed
description The natural restoration of soils polluted by aromatic hydrocarbons such as benzene, toluene, ethylbenzene and m- and p-xylene (BTEX) may be accelerated by inoculation of specific biodegraders (bioaugmentation). Bioaugmentation mainly involves introducing bacteria that deploy their metabolic properties and adaptation potential to survive and propagate in the contaminated environment by degrading the pollutant. In order to better understand the adaptive response of cells during a transition to contaminated material, we analyzed here the genome and short-term (1 h) changes in genome-wide gene expression of the BTEX-degrading bacterium Pseudomonas veronii 1YdBTEX2 in non-sterile soil and liquid medium, both in presence or absence of toluene. We obtained a gapless genome sequence of P. veronii 1YdBTEX2 covering three individual replicons with a total size of 8 Mb, two of which are largely unrelated to current known bacterial replicons. One-hour exposure to toluene, both in soil and liquid, triggered massive transcription (up to 208-fold induction) of multiple gene clusters, such as toluene degradation pathway(s), chemotaxis and toluene efflux pumps. This clearly underlines their key role in the adaptive response to toluene. In comparison to liquid medium, cells in soil drastically changed expression of genes involved in membrane functioning (e.g., lipid composition, lipid metabolism, cell fatty acid synthesis), osmotic stress response (e.g., polyamine or trehalose synthesis, uptake of potassium) and putrescine metabolism, highlighting the immediate response mechanisms of P. veronii 1YdBTEX2 for successful establishment in polluted soil.
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spelling pubmed-50946762016-11-18 The Genome of the Toluene-Degrading Pseudomonas veronii Strain 1YdBTEX2 and Its Differential Gene Expression in Contaminated Sand Morales, Marian Sentchilo, Vladimir Bertelli, Claire Komljenovic, Andrea Kryuchkova-Mostacci, Nadezda Bourdilloud, Audrey Linke, Burkhard Goesmann, Alexander Harshman, Keith Segers, Francisca Delapierre, Fabien Fiorucci, Damien Seppey, Mathieu Trofimenco, Evgeniya Berra, Pauline El Taher, Athimed Loiseau, Chloé Roggero, Dejan Sulfiotti, Madeleine Etienne, Angela Ruiz Buendia, Gustavo Pillard, Loïc Escoriza, Angelique Moritz, Roxane Schneider, Cedric Alfonso, Esteban Ben Jeddou, Fatma Selmoni, Oliver Resch, Gregory Greub, Gilbert Emery, Olivier Dubey, Manupriyam Pillonel, Trestan Robinson-Rechavi, Marc van der Meer, Jan Roelof PLoS One Research Article The natural restoration of soils polluted by aromatic hydrocarbons such as benzene, toluene, ethylbenzene and m- and p-xylene (BTEX) may be accelerated by inoculation of specific biodegraders (bioaugmentation). Bioaugmentation mainly involves introducing bacteria that deploy their metabolic properties and adaptation potential to survive and propagate in the contaminated environment by degrading the pollutant. In order to better understand the adaptive response of cells during a transition to contaminated material, we analyzed here the genome and short-term (1 h) changes in genome-wide gene expression of the BTEX-degrading bacterium Pseudomonas veronii 1YdBTEX2 in non-sterile soil and liquid medium, both in presence or absence of toluene. We obtained a gapless genome sequence of P. veronii 1YdBTEX2 covering three individual replicons with a total size of 8 Mb, two of which are largely unrelated to current known bacterial replicons. One-hour exposure to toluene, both in soil and liquid, triggered massive transcription (up to 208-fold induction) of multiple gene clusters, such as toluene degradation pathway(s), chemotaxis and toluene efflux pumps. This clearly underlines their key role in the adaptive response to toluene. In comparison to liquid medium, cells in soil drastically changed expression of genes involved in membrane functioning (e.g., lipid composition, lipid metabolism, cell fatty acid synthesis), osmotic stress response (e.g., polyamine or trehalose synthesis, uptake of potassium) and putrescine metabolism, highlighting the immediate response mechanisms of P. veronii 1YdBTEX2 for successful establishment in polluted soil. Public Library of Science 2016-11-03 /pmc/articles/PMC5094676/ /pubmed/27812150 http://dx.doi.org/10.1371/journal.pone.0165850 Text en © 2016 Morales 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Morales, Marian
Sentchilo, Vladimir
Bertelli, Claire
Komljenovic, Andrea
Kryuchkova-Mostacci, Nadezda
Bourdilloud, Audrey
Linke, Burkhard
Goesmann, Alexander
Harshman, Keith
Segers, Francisca
Delapierre, Fabien
Fiorucci, Damien
Seppey, Mathieu
Trofimenco, Evgeniya
Berra, Pauline
El Taher, Athimed
Loiseau, Chloé
Roggero, Dejan
Sulfiotti, Madeleine
Etienne, Angela
Ruiz Buendia, Gustavo
Pillard, Loïc
Escoriza, Angelique
Moritz, Roxane
Schneider, Cedric
Alfonso, Esteban
Ben Jeddou, Fatma
Selmoni, Oliver
Resch, Gregory
Greub, Gilbert
Emery, Olivier
Dubey, Manupriyam
Pillonel, Trestan
Robinson-Rechavi, Marc
van der Meer, Jan Roelof
The Genome of the Toluene-Degrading Pseudomonas veronii Strain 1YdBTEX2 and Its Differential Gene Expression in Contaminated Sand
title The Genome of the Toluene-Degrading Pseudomonas veronii Strain 1YdBTEX2 and Its Differential Gene Expression in Contaminated Sand
title_full The Genome of the Toluene-Degrading Pseudomonas veronii Strain 1YdBTEX2 and Its Differential Gene Expression in Contaminated Sand
title_fullStr The Genome of the Toluene-Degrading Pseudomonas veronii Strain 1YdBTEX2 and Its Differential Gene Expression in Contaminated Sand
title_full_unstemmed The Genome of the Toluene-Degrading Pseudomonas veronii Strain 1YdBTEX2 and Its Differential Gene Expression in Contaminated Sand
title_short The Genome of the Toluene-Degrading Pseudomonas veronii Strain 1YdBTEX2 and Its Differential Gene Expression in Contaminated Sand
title_sort genome of the toluene-degrading pseudomonas veronii strain 1ydbtex2 and its differential gene expression in contaminated sand
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5094676/
https://www.ncbi.nlm.nih.gov/pubmed/27812150
http://dx.doi.org/10.1371/journal.pone.0165850
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