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Sugarcane apoplast fluid modulates the global transcriptional profile of the diazotrophic bacteria Paraburkholderia tropica strain Ppe8

The stalk apoplast fluid of sugarcane contains different sugars, organic acids and amino acids that may supply the demand for carbohydrates by endophytic bacteria including diazotrophs P. tropica (syn. B. tropica) strain Ppe8, isolated from sugarcane, is part of the bacterial consortium recommended...

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Autores principales: da Silva, Paula Renata Alves, Vidal, Márcia Soares, Soares, Cleiton de Paula, Polese, Valéria, Tadra-Sfeir, Michelle Zibetti, de Souza, Emanuel Maltempi, Simões-Araújo, Jean Luiz, Baldani, José Ivo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6294378/
https://www.ncbi.nlm.nih.gov/pubmed/30550601
http://dx.doi.org/10.1371/journal.pone.0207863
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author da Silva, Paula Renata Alves
Vidal, Márcia Soares
Soares, Cleiton de Paula
Polese, Valéria
Tadra-Sfeir, Michelle Zibetti
de Souza, Emanuel Maltempi
Simões-Araújo, Jean Luiz
Baldani, José Ivo
author_facet da Silva, Paula Renata Alves
Vidal, Márcia Soares
Soares, Cleiton de Paula
Polese, Valéria
Tadra-Sfeir, Michelle Zibetti
de Souza, Emanuel Maltempi
Simões-Araújo, Jean Luiz
Baldani, José Ivo
author_sort da Silva, Paula Renata Alves
collection PubMed
description The stalk apoplast fluid of sugarcane contains different sugars, organic acids and amino acids that may supply the demand for carbohydrates by endophytic bacteria including diazotrophs P. tropica (syn. B. tropica) strain Ppe8, isolated from sugarcane, is part of the bacterial consortium recommended as inoculant to sugarcane. However, little information has been accumulated regarding this plant-bacterium interaction considering that it colonizes internal sugarcane tissues. Here, we made use of the RNA-Seq transcriptomic analysis to study the influence of sugarcane stalk apoplast fluid on Ppe8 gene expression. The bacterium was grown in JMV liquid medium (100 ml), divided equally and then supplemented with 50 ml of fresh JMV medium or 50 ml of apoplast fluid extracted from sugarcane variety RB867515. Total RNA was extracted 2 hours later, the rRNAs were depleted and mRNAs used to construct libraries to sequence the fragments using Ion Torrent technology. The mapping and statistical analysis were carried out with CLC Genomics Workbench software. The RNA-seq data was validated by RT-qPCR using the reference genes fliP1, paaF, and groL. The data analysis showed that 544 genes were repressed and 153 genes were induced in the presence of apoplast fluid. Genes that induce plant defense responses, genes related to chemotaxis and movements were repressed in the presence of apoplast fluid, indicating that strain Ppe8 recognizes the apoplast fluid as a plant component. The expression of genes involved in bacterial metabolism was regulated (up and down), suggesting that the metabolism of strain Ppe8 is modulated by the apoplast fluid. These results suggest that Ppe8 alters its gene expression pattern in the presence of apoplast fluid mainly in order to use compounds present in the fluid as well as to avoid the induction of plant defense mechanisms. This is a pioneer study showing the role played by the sugarcane apoplast fluid on the global modulation of genes in P. tropica strain Ppe8.
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spelling pubmed-62943782018-12-28 Sugarcane apoplast fluid modulates the global transcriptional profile of the diazotrophic bacteria Paraburkholderia tropica strain Ppe8 da Silva, Paula Renata Alves Vidal, Márcia Soares Soares, Cleiton de Paula Polese, Valéria Tadra-Sfeir, Michelle Zibetti de Souza, Emanuel Maltempi Simões-Araújo, Jean Luiz Baldani, José Ivo PLoS One Research Article The stalk apoplast fluid of sugarcane contains different sugars, organic acids and amino acids that may supply the demand for carbohydrates by endophytic bacteria including diazotrophs P. tropica (syn. B. tropica) strain Ppe8, isolated from sugarcane, is part of the bacterial consortium recommended as inoculant to sugarcane. However, little information has been accumulated regarding this plant-bacterium interaction considering that it colonizes internal sugarcane tissues. Here, we made use of the RNA-Seq transcriptomic analysis to study the influence of sugarcane stalk apoplast fluid on Ppe8 gene expression. The bacterium was grown in JMV liquid medium (100 ml), divided equally and then supplemented with 50 ml of fresh JMV medium or 50 ml of apoplast fluid extracted from sugarcane variety RB867515. Total RNA was extracted 2 hours later, the rRNAs were depleted and mRNAs used to construct libraries to sequence the fragments using Ion Torrent technology. The mapping and statistical analysis were carried out with CLC Genomics Workbench software. The RNA-seq data was validated by RT-qPCR using the reference genes fliP1, paaF, and groL. The data analysis showed that 544 genes were repressed and 153 genes were induced in the presence of apoplast fluid. Genes that induce plant defense responses, genes related to chemotaxis and movements were repressed in the presence of apoplast fluid, indicating that strain Ppe8 recognizes the apoplast fluid as a plant component. The expression of genes involved in bacterial metabolism was regulated (up and down), suggesting that the metabolism of strain Ppe8 is modulated by the apoplast fluid. These results suggest that Ppe8 alters its gene expression pattern in the presence of apoplast fluid mainly in order to use compounds present in the fluid as well as to avoid the induction of plant defense mechanisms. This is a pioneer study showing the role played by the sugarcane apoplast fluid on the global modulation of genes in P. tropica strain Ppe8. Public Library of Science 2018-12-14 /pmc/articles/PMC6294378/ /pubmed/30550601 http://dx.doi.org/10.1371/journal.pone.0207863 Text en © 2018 Silva 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
da Silva, Paula Renata Alves
Vidal, Márcia Soares
Soares, Cleiton de Paula
Polese, Valéria
Tadra-Sfeir, Michelle Zibetti
de Souza, Emanuel Maltempi
Simões-Araújo, Jean Luiz
Baldani, José Ivo
Sugarcane apoplast fluid modulates the global transcriptional profile of the diazotrophic bacteria Paraburkholderia tropica strain Ppe8
title Sugarcane apoplast fluid modulates the global transcriptional profile of the diazotrophic bacteria Paraburkholderia tropica strain Ppe8
title_full Sugarcane apoplast fluid modulates the global transcriptional profile of the diazotrophic bacteria Paraburkholderia tropica strain Ppe8
title_fullStr Sugarcane apoplast fluid modulates the global transcriptional profile of the diazotrophic bacteria Paraburkholderia tropica strain Ppe8
title_full_unstemmed Sugarcane apoplast fluid modulates the global transcriptional profile of the diazotrophic bacteria Paraburkholderia tropica strain Ppe8
title_short Sugarcane apoplast fluid modulates the global transcriptional profile of the diazotrophic bacteria Paraburkholderia tropica strain Ppe8
title_sort sugarcane apoplast fluid modulates the global transcriptional profile of the diazotrophic bacteria paraburkholderia tropica strain ppe8
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6294378/
https://www.ncbi.nlm.nih.gov/pubmed/30550601
http://dx.doi.org/10.1371/journal.pone.0207863
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