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A Genome-Wide Screen Identifies Genes in Rhizosphere-Associated Pseudomonas Required to Evade Plant Defenses

Pseudomonas fluorescens and related plant root (“rhizosphere”)-associated species contribute to plant health by modulating defenses and facilitating nutrient uptake. To identify bacterial fitness determinants in the rhizosphere of the model plant Arabidopsis thaliana, we performed a high-throughput...

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Autores principales: Liu, Zhexian, Beskrovnaya, Polina, Melnyk, Ryan A., Hossain, Sarzana S., Khorasani, Sophie, O’Sullivan, Lucy R., Wiesmann, Christina L., Bush, Jen, Richard, Joël D., Haney, Cara H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6222131/
https://www.ncbi.nlm.nih.gov/pubmed/30401768
http://dx.doi.org/10.1128/mBio.00433-18
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author Liu, Zhexian
Beskrovnaya, Polina
Melnyk, Ryan A.
Hossain, Sarzana S.
Khorasani, Sophie
O’Sullivan, Lucy R.
Wiesmann, Christina L.
Bush, Jen
Richard, Joël D.
Haney, Cara H.
author_facet Liu, Zhexian
Beskrovnaya, Polina
Melnyk, Ryan A.
Hossain, Sarzana S.
Khorasani, Sophie
O’Sullivan, Lucy R.
Wiesmann, Christina L.
Bush, Jen
Richard, Joël D.
Haney, Cara H.
author_sort Liu, Zhexian
collection PubMed
description Pseudomonas fluorescens and related plant root (“rhizosphere”)-associated species contribute to plant health by modulating defenses and facilitating nutrient uptake. To identify bacterial fitness determinants in the rhizosphere of the model plant Arabidopsis thaliana, we performed a high-throughput transposon sequencing (Tn-Seq) screen using the biocontrol and growth-promoting strain Pseudomonas sp. WCS365. The screen, which was performed in parallel on wild-type and immunocompromised Arabidopsis plants, identified 231 genes that increased fitness in the rhizosphere of wild-type plants. A subset of these genes decreased fitness in the rhizosphere of immunocompromised plants. We hypothesized that these genes might be involved in avoiding plant defenses and verified 7 Pseudomonas sp. WCS365 candidate genes by generating clean deletions. We found that two of these deletion mutants, ΔmorA (encoding a putative diguanylate cyclase/phosphodiesterase) and ΔspuC (encoding a putrescine aminotransferase), formed enhanced biofilms and inhibited plant growth. We found that mutants ΔspuC and ΔmorA induced pattern-triggered immunity (PTI) as measured by induction of an Arabidopsis PTI reporter and FLS2/BAK1-dependent inhibition of plant growth. We show that MorA acts as a phosphodiesterase to inhibit biofilm formation, suggesting a possible role in biofilm dispersal. We found that both putrescine and its precursor arginine promote biofilm formation that is enhanced in the ΔspuC mutant, which cannot break down putrescine, suggesting that putrescine might serve as a signaling molecule in the rhizosphere. Collectively, this work identified novel bacterial factors required to evade plant defenses in the rhizosphere.
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spelling pubmed-62221312018-11-09 A Genome-Wide Screen Identifies Genes in Rhizosphere-Associated Pseudomonas Required to Evade Plant Defenses Liu, Zhexian Beskrovnaya, Polina Melnyk, Ryan A. Hossain, Sarzana S. Khorasani, Sophie O’Sullivan, Lucy R. Wiesmann, Christina L. Bush, Jen Richard, Joël D. Haney, Cara H. mBio Research Article Pseudomonas fluorescens and related plant root (“rhizosphere”)-associated species contribute to plant health by modulating defenses and facilitating nutrient uptake. To identify bacterial fitness determinants in the rhizosphere of the model plant Arabidopsis thaliana, we performed a high-throughput transposon sequencing (Tn-Seq) screen using the biocontrol and growth-promoting strain Pseudomonas sp. WCS365. The screen, which was performed in parallel on wild-type and immunocompromised Arabidopsis plants, identified 231 genes that increased fitness in the rhizosphere of wild-type plants. A subset of these genes decreased fitness in the rhizosphere of immunocompromised plants. We hypothesized that these genes might be involved in avoiding plant defenses and verified 7 Pseudomonas sp. WCS365 candidate genes by generating clean deletions. We found that two of these deletion mutants, ΔmorA (encoding a putative diguanylate cyclase/phosphodiesterase) and ΔspuC (encoding a putrescine aminotransferase), formed enhanced biofilms and inhibited plant growth. We found that mutants ΔspuC and ΔmorA induced pattern-triggered immunity (PTI) as measured by induction of an Arabidopsis PTI reporter and FLS2/BAK1-dependent inhibition of plant growth. We show that MorA acts as a phosphodiesterase to inhibit biofilm formation, suggesting a possible role in biofilm dispersal. We found that both putrescine and its precursor arginine promote biofilm formation that is enhanced in the ΔspuC mutant, which cannot break down putrescine, suggesting that putrescine might serve as a signaling molecule in the rhizosphere. Collectively, this work identified novel bacterial factors required to evade plant defenses in the rhizosphere. American Society for Microbiology 2018-11-06 /pmc/articles/PMC6222131/ /pubmed/30401768 http://dx.doi.org/10.1128/mBio.00433-18 Text en Copyright © 2018 Liu et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Liu, Zhexian
Beskrovnaya, Polina
Melnyk, Ryan A.
Hossain, Sarzana S.
Khorasani, Sophie
O’Sullivan, Lucy R.
Wiesmann, Christina L.
Bush, Jen
Richard, Joël D.
Haney, Cara H.
A Genome-Wide Screen Identifies Genes in Rhizosphere-Associated Pseudomonas Required to Evade Plant Defenses
title A Genome-Wide Screen Identifies Genes in Rhizosphere-Associated Pseudomonas Required to Evade Plant Defenses
title_full A Genome-Wide Screen Identifies Genes in Rhizosphere-Associated Pseudomonas Required to Evade Plant Defenses
title_fullStr A Genome-Wide Screen Identifies Genes in Rhizosphere-Associated Pseudomonas Required to Evade Plant Defenses
title_full_unstemmed A Genome-Wide Screen Identifies Genes in Rhizosphere-Associated Pseudomonas Required to Evade Plant Defenses
title_short A Genome-Wide Screen Identifies Genes in Rhizosphere-Associated Pseudomonas Required to Evade Plant Defenses
title_sort genome-wide screen identifies genes in rhizosphere-associated pseudomonas required to evade plant defenses
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6222131/
https://www.ncbi.nlm.nih.gov/pubmed/30401768
http://dx.doi.org/10.1128/mBio.00433-18
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