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The Rsm regulon of plant growth-promoting Pseudomonas fluorescens SS101: role of small RNAs in regulation of lipopeptide biosynthesis

The rhizobacterium Pseudomonas fluorescens SS101 inhibits growth of oomycete and fungal pathogens, and induces resistance in plants against pathogens and insects. To unravel regulatory pathways of secondary metabolite production in SS101, we conducted a genome-wide search for sRNAs and performed tra...

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Autores principales: Song, Chunxu, van der Voort, Menno, van de Mortel, Judith, Hassan, Karl A, Elbourne, Liam D H, Paulsen, Ian T, Loper, Joyce E, Raaijmakers, Jos M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BlackWell Publishing Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4353343/
https://www.ncbi.nlm.nih.gov/pubmed/25488342
http://dx.doi.org/10.1111/1751-7915.12190
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author Song, Chunxu
van der Voort, Menno
van de Mortel, Judith
Hassan, Karl A
Elbourne, Liam D H
Paulsen, Ian T
Loper, Joyce E
Raaijmakers, Jos M
author_facet Song, Chunxu
van der Voort, Menno
van de Mortel, Judith
Hassan, Karl A
Elbourne, Liam D H
Paulsen, Ian T
Loper, Joyce E
Raaijmakers, Jos M
author_sort Song, Chunxu
collection PubMed
description The rhizobacterium Pseudomonas fluorescens SS101 inhibits growth of oomycete and fungal pathogens, and induces resistance in plants against pathogens and insects. To unravel regulatory pathways of secondary metabolite production in SS101, we conducted a genome-wide search for sRNAs and performed transcriptomic analyses to identify genes associated with the Rsm (repressor of secondary metabolites) regulon. In silico analysis led to the identification of 16 putative sRNAs in the SS101 genome. In frame deletion of the sRNAs rsmY and rsmZ showed that the Rsm system regulates the biosynthesis of the lipopeptide massetolide A and involves the two repressor proteins RsmA and RsmE, with the LuxR-type transcriptional regulator MassAR as their most likely target. Transcriptome analyses of the rsmYZ mutant further revealed that genes associated with iron acquisition, motility and chemotaxis were significantly upregulated, whereas genes of the type VI secretion system were downregulated. Comparative transcriptomic analyses showed that most, but not all, of the genes controlled by RsmY/RsmZ are also controlled by the GacS/GacA two-component system. We conclude that the Rsm regulon of P. fluorescens SS101 plays a critical role in the regulation of lipopeptide biosynthesis and controls the expression of other genes involved in motility, competition and survival in the plant rhizosphere.
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spelling pubmed-43533432015-03-12 The Rsm regulon of plant growth-promoting Pseudomonas fluorescens SS101: role of small RNAs in regulation of lipopeptide biosynthesis Song, Chunxu van der Voort, Menno van de Mortel, Judith Hassan, Karl A Elbourne, Liam D H Paulsen, Ian T Loper, Joyce E Raaijmakers, Jos M Microb Biotechnol Research Articles The rhizobacterium Pseudomonas fluorescens SS101 inhibits growth of oomycete and fungal pathogens, and induces resistance in plants against pathogens and insects. To unravel regulatory pathways of secondary metabolite production in SS101, we conducted a genome-wide search for sRNAs and performed transcriptomic analyses to identify genes associated with the Rsm (repressor of secondary metabolites) regulon. In silico analysis led to the identification of 16 putative sRNAs in the SS101 genome. In frame deletion of the sRNAs rsmY and rsmZ showed that the Rsm system regulates the biosynthesis of the lipopeptide massetolide A and involves the two repressor proteins RsmA and RsmE, with the LuxR-type transcriptional regulator MassAR as their most likely target. Transcriptome analyses of the rsmYZ mutant further revealed that genes associated with iron acquisition, motility and chemotaxis were significantly upregulated, whereas genes of the type VI secretion system were downregulated. Comparative transcriptomic analyses showed that most, but not all, of the genes controlled by RsmY/RsmZ are also controlled by the GacS/GacA two-component system. We conclude that the Rsm regulon of P. fluorescens SS101 plays a critical role in the regulation of lipopeptide biosynthesis and controls the expression of other genes involved in motility, competition and survival in the plant rhizosphere. BlackWell Publishing Ltd 2015-03 2014-12-09 /pmc/articles/PMC4353343/ /pubmed/25488342 http://dx.doi.org/10.1111/1751-7915.12190 Text en Journal compilation © 2015 John Wiley & Sons Ltd and Society for Applied Microbiology http://creativecommons.org/licenses/by/4.0/ This is an open access article under the terms of the Creative Commons Attribution License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Song, Chunxu
van der Voort, Menno
van de Mortel, Judith
Hassan, Karl A
Elbourne, Liam D H
Paulsen, Ian T
Loper, Joyce E
Raaijmakers, Jos M
The Rsm regulon of plant growth-promoting Pseudomonas fluorescens SS101: role of small RNAs in regulation of lipopeptide biosynthesis
title The Rsm regulon of plant growth-promoting Pseudomonas fluorescens SS101: role of small RNAs in regulation of lipopeptide biosynthesis
title_full The Rsm regulon of plant growth-promoting Pseudomonas fluorescens SS101: role of small RNAs in regulation of lipopeptide biosynthesis
title_fullStr The Rsm regulon of plant growth-promoting Pseudomonas fluorescens SS101: role of small RNAs in regulation of lipopeptide biosynthesis
title_full_unstemmed The Rsm regulon of plant growth-promoting Pseudomonas fluorescens SS101: role of small RNAs in regulation of lipopeptide biosynthesis
title_short The Rsm regulon of plant growth-promoting Pseudomonas fluorescens SS101: role of small RNAs in regulation of lipopeptide biosynthesis
title_sort rsm regulon of plant growth-promoting pseudomonas fluorescens ss101: role of small rnas in regulation of lipopeptide biosynthesis
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4353343/
https://www.ncbi.nlm.nih.gov/pubmed/25488342
http://dx.doi.org/10.1111/1751-7915.12190
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