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Show me your secret(ed) weapons: a multifaceted approach reveals a wide arsenal of type III‐secreted effectors in the cucurbit pathogenic bacterium Acidovorax citrulli and novel effectors in the Acidovorax genus

The cucurbit pathogenic bacterium Acidovorax citrulli requires a functional type III secretion system (T3SS) for pathogenicity. In this bacterium, as with Xanthomonas and Ralstonia spp., an AraC‐type transcriptional regulator, HrpX, regulates expression of genes encoding T3SS components and type III...

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Autores principales: Jiménez‐Guerrero, Irene, Pérez‐Montaño, Francisco, Da Silva, Gustavo Mateus, Wagner, Naama, Shkedy, Dafna, Zhao, Mei, Pizarro, Lorena, Bar, Maya, Walcott, Ron, Sessa, Guido, Pupko, Tal, Burdman, Saul
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6913199/
https://www.ncbi.nlm.nih.gov/pubmed/31643123
http://dx.doi.org/10.1111/mpp.12877
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author Jiménez‐Guerrero, Irene
Pérez‐Montaño, Francisco
Da Silva, Gustavo Mateus
Wagner, Naama
Shkedy, Dafna
Zhao, Mei
Pizarro, Lorena
Bar, Maya
Walcott, Ron
Sessa, Guido
Pupko, Tal
Burdman, Saul
author_facet Jiménez‐Guerrero, Irene
Pérez‐Montaño, Francisco
Da Silva, Gustavo Mateus
Wagner, Naama
Shkedy, Dafna
Zhao, Mei
Pizarro, Lorena
Bar, Maya
Walcott, Ron
Sessa, Guido
Pupko, Tal
Burdman, Saul
author_sort Jiménez‐Guerrero, Irene
collection PubMed
description The cucurbit pathogenic bacterium Acidovorax citrulli requires a functional type III secretion system (T3SS) for pathogenicity. In this bacterium, as with Xanthomonas and Ralstonia spp., an AraC‐type transcriptional regulator, HrpX, regulates expression of genes encoding T3SS components and type III‐secreted effectors (T3Es). The annotation of a sequenced A. citrulli strain revealed 11 T3E genes. Assuming that this could be an underestimation, we aimed to uncover the T3E arsenal of the A. citrulli model strain, M6. Thorough sequence analysis revealed 51 M6 genes whose products are similar to known T3Es. Furthermore, we combined machine learning and transcriptomics to identify novel T3Es. The machine‐learning approach ranked all A. citrulli M6 genes according to their propensity to encode T3Es. RNA‐Seq revealed differential gene expression between wild‐type M6 and a mutant defective in HrpX: 159 and 28 genes showed significantly reduced and increased expression in the mutant relative to wild‐type M6, respectively. Data combined from these approaches led to the identification of seven novel T3E candidates that were further validated using a T3SS‐dependent translocation assay. These T3E genes encode hypothetical proteins that seem to be restricted to plant pathogenic Acidovorax species. Transient expression in Nicotiana benthamiana revealed that two of these T3Es localize to the cell nucleus and one interacts with the endoplasmic reticulum. This study places A. citrulli among the ‘richest’ bacterial pathogens in terms of T3E cargo. It also revealed novel T3Es that appear to be involved in the pathoadaptive evolution of plant pathogenic Acidovorax species.
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spelling pubmed-69131992019-12-23 Show me your secret(ed) weapons: a multifaceted approach reveals a wide arsenal of type III‐secreted effectors in the cucurbit pathogenic bacterium Acidovorax citrulli and novel effectors in the Acidovorax genus Jiménez‐Guerrero, Irene Pérez‐Montaño, Francisco Da Silva, Gustavo Mateus Wagner, Naama Shkedy, Dafna Zhao, Mei Pizarro, Lorena Bar, Maya Walcott, Ron Sessa, Guido Pupko, Tal Burdman, Saul Mol Plant Pathol Original Articles The cucurbit pathogenic bacterium Acidovorax citrulli requires a functional type III secretion system (T3SS) for pathogenicity. In this bacterium, as with Xanthomonas and Ralstonia spp., an AraC‐type transcriptional regulator, HrpX, regulates expression of genes encoding T3SS components and type III‐secreted effectors (T3Es). The annotation of a sequenced A. citrulli strain revealed 11 T3E genes. Assuming that this could be an underestimation, we aimed to uncover the T3E arsenal of the A. citrulli model strain, M6. Thorough sequence analysis revealed 51 M6 genes whose products are similar to known T3Es. Furthermore, we combined machine learning and transcriptomics to identify novel T3Es. The machine‐learning approach ranked all A. citrulli M6 genes according to their propensity to encode T3Es. RNA‐Seq revealed differential gene expression between wild‐type M6 and a mutant defective in HrpX: 159 and 28 genes showed significantly reduced and increased expression in the mutant relative to wild‐type M6, respectively. Data combined from these approaches led to the identification of seven novel T3E candidates that were further validated using a T3SS‐dependent translocation assay. These T3E genes encode hypothetical proteins that seem to be restricted to plant pathogenic Acidovorax species. Transient expression in Nicotiana benthamiana revealed that two of these T3Es localize to the cell nucleus and one interacts with the endoplasmic reticulum. This study places A. citrulli among the ‘richest’ bacterial pathogens in terms of T3E cargo. It also revealed novel T3Es that appear to be involved in the pathoadaptive evolution of plant pathogenic Acidovorax species. John Wiley and Sons Inc. 2019-10-23 /pmc/articles/PMC6913199/ /pubmed/31643123 http://dx.doi.org/10.1111/mpp.12877 Text en © 2019 The Authors. Molecular Plant Pathology published by British Society for Plant Pathology and John Wiley & Sons Ltd This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Articles
Jiménez‐Guerrero, Irene
Pérez‐Montaño, Francisco
Da Silva, Gustavo Mateus
Wagner, Naama
Shkedy, Dafna
Zhao, Mei
Pizarro, Lorena
Bar, Maya
Walcott, Ron
Sessa, Guido
Pupko, Tal
Burdman, Saul
Show me your secret(ed) weapons: a multifaceted approach reveals a wide arsenal of type III‐secreted effectors in the cucurbit pathogenic bacterium Acidovorax citrulli and novel effectors in the Acidovorax genus
title Show me your secret(ed) weapons: a multifaceted approach reveals a wide arsenal of type III‐secreted effectors in the cucurbit pathogenic bacterium Acidovorax citrulli and novel effectors in the Acidovorax genus
title_full Show me your secret(ed) weapons: a multifaceted approach reveals a wide arsenal of type III‐secreted effectors in the cucurbit pathogenic bacterium Acidovorax citrulli and novel effectors in the Acidovorax genus
title_fullStr Show me your secret(ed) weapons: a multifaceted approach reveals a wide arsenal of type III‐secreted effectors in the cucurbit pathogenic bacterium Acidovorax citrulli and novel effectors in the Acidovorax genus
title_full_unstemmed Show me your secret(ed) weapons: a multifaceted approach reveals a wide arsenal of type III‐secreted effectors in the cucurbit pathogenic bacterium Acidovorax citrulli and novel effectors in the Acidovorax genus
title_short Show me your secret(ed) weapons: a multifaceted approach reveals a wide arsenal of type III‐secreted effectors in the cucurbit pathogenic bacterium Acidovorax citrulli and novel effectors in the Acidovorax genus
title_sort show me your secret(ed) weapons: a multifaceted approach reveals a wide arsenal of type iii‐secreted effectors in the cucurbit pathogenic bacterium acidovorax citrulli and novel effectors in the acidovorax genus
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6913199/
https://www.ncbi.nlm.nih.gov/pubmed/31643123
http://dx.doi.org/10.1111/mpp.12877
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