Cargando…

Pan-genome analysis identifies intersecting roles for Pseudomonas specialized metabolites in potato pathogen inhibition

Agricultural soil harbors a diverse microbiome that can form beneficial relationships with plants, including the inhibition of plant pathogens. Pseudomonas spp. are one of the most abundant bacterial genera in the soil and rhizosphere and play important roles in promoting plant health. However, the...

Descripción completa

Detalles Bibliográficos
Autores principales: Pacheco-Moreno, Alba, Stefanato, Francesca L, Ford, Jonathan J, Trippel, Christine, Uszkoreit, Simon, Ferrafiat, Laura, Grenga, Lucia, Dickens, Ruth, Kelly, Nathan, Kingdon, Alexander DH, Ambrosetti, Liana, Nepogodiev, Sergey A, Findlay, Kim C, Cheema, Jitender, Trick, Martin, Chandra, Govind, Tomalin, Graham, Malone, Jacob G, Truman, Andrew W
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8719888/
https://www.ncbi.nlm.nih.gov/pubmed/34792466
http://dx.doi.org/10.7554/eLife.71900
_version_ 1784625033239330816
author Pacheco-Moreno, Alba
Stefanato, Francesca L
Ford, Jonathan J
Trippel, Christine
Uszkoreit, Simon
Ferrafiat, Laura
Grenga, Lucia
Dickens, Ruth
Kelly, Nathan
Kingdon, Alexander DH
Ambrosetti, Liana
Nepogodiev, Sergey A
Findlay, Kim C
Cheema, Jitender
Trick, Martin
Chandra, Govind
Tomalin, Graham
Malone, Jacob G
Truman, Andrew W
author_facet Pacheco-Moreno, Alba
Stefanato, Francesca L
Ford, Jonathan J
Trippel, Christine
Uszkoreit, Simon
Ferrafiat, Laura
Grenga, Lucia
Dickens, Ruth
Kelly, Nathan
Kingdon, Alexander DH
Ambrosetti, Liana
Nepogodiev, Sergey A
Findlay, Kim C
Cheema, Jitender
Trick, Martin
Chandra, Govind
Tomalin, Graham
Malone, Jacob G
Truman, Andrew W
author_sort Pacheco-Moreno, Alba
collection PubMed
description Agricultural soil harbors a diverse microbiome that can form beneficial relationships with plants, including the inhibition of plant pathogens. Pseudomonas spp. are one of the most abundant bacterial genera in the soil and rhizosphere and play important roles in promoting plant health. However, the genetic determinants of this beneficial activity are only partially understood. Here, we genetically and phenotypically characterize the Pseudomonas fluorescens population in a commercial potato field, where we identify strong correlations between specialized metabolite biosynthesis and antagonism of the potato pathogens Streptomyces scabies and Phytophthora infestans. Genetic and chemical analyses identified hydrogen cyanide and cyclic lipopeptides as key specialized metabolites associated with S. scabies inhibition, which was supported by in planta biocontrol experiments. We show that a single potato field contains a hugely diverse and dynamic population of Pseudomonas bacteria, whose capacity to produce specialized metabolites is shaped both by plant colonization and defined environmental inputs.
format Online
Article
Text
id pubmed-8719888
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher eLife Sciences Publications, Ltd
record_format MEDLINE/PubMed
spelling pubmed-87198882022-01-05 Pan-genome analysis identifies intersecting roles for Pseudomonas specialized metabolites in potato pathogen inhibition Pacheco-Moreno, Alba Stefanato, Francesca L Ford, Jonathan J Trippel, Christine Uszkoreit, Simon Ferrafiat, Laura Grenga, Lucia Dickens, Ruth Kelly, Nathan Kingdon, Alexander DH Ambrosetti, Liana Nepogodiev, Sergey A Findlay, Kim C Cheema, Jitender Trick, Martin Chandra, Govind Tomalin, Graham Malone, Jacob G Truman, Andrew W eLife Genetics and Genomics Agricultural soil harbors a diverse microbiome that can form beneficial relationships with plants, including the inhibition of plant pathogens. Pseudomonas spp. are one of the most abundant bacterial genera in the soil and rhizosphere and play important roles in promoting plant health. However, the genetic determinants of this beneficial activity are only partially understood. Here, we genetically and phenotypically characterize the Pseudomonas fluorescens population in a commercial potato field, where we identify strong correlations between specialized metabolite biosynthesis and antagonism of the potato pathogens Streptomyces scabies and Phytophthora infestans. Genetic and chemical analyses identified hydrogen cyanide and cyclic lipopeptides as key specialized metabolites associated with S. scabies inhibition, which was supported by in planta biocontrol experiments. We show that a single potato field contains a hugely diverse and dynamic population of Pseudomonas bacteria, whose capacity to produce specialized metabolites is shaped both by plant colonization and defined environmental inputs. eLife Sciences Publications, Ltd 2021-11-18 /pmc/articles/PMC8719888/ /pubmed/34792466 http://dx.doi.org/10.7554/eLife.71900 Text en © 2021, Pacheco-Moreno et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Genetics and Genomics
Pacheco-Moreno, Alba
Stefanato, Francesca L
Ford, Jonathan J
Trippel, Christine
Uszkoreit, Simon
Ferrafiat, Laura
Grenga, Lucia
Dickens, Ruth
Kelly, Nathan
Kingdon, Alexander DH
Ambrosetti, Liana
Nepogodiev, Sergey A
Findlay, Kim C
Cheema, Jitender
Trick, Martin
Chandra, Govind
Tomalin, Graham
Malone, Jacob G
Truman, Andrew W
Pan-genome analysis identifies intersecting roles for Pseudomonas specialized metabolites in potato pathogen inhibition
title Pan-genome analysis identifies intersecting roles for Pseudomonas specialized metabolites in potato pathogen inhibition
title_full Pan-genome analysis identifies intersecting roles for Pseudomonas specialized metabolites in potato pathogen inhibition
title_fullStr Pan-genome analysis identifies intersecting roles for Pseudomonas specialized metabolites in potato pathogen inhibition
title_full_unstemmed Pan-genome analysis identifies intersecting roles for Pseudomonas specialized metabolites in potato pathogen inhibition
title_short Pan-genome analysis identifies intersecting roles for Pseudomonas specialized metabolites in potato pathogen inhibition
title_sort pan-genome analysis identifies intersecting roles for pseudomonas specialized metabolites in potato pathogen inhibition
topic Genetics and Genomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8719888/
https://www.ncbi.nlm.nih.gov/pubmed/34792466
http://dx.doi.org/10.7554/eLife.71900
work_keys_str_mv AT pachecomorenoalba pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT stefanatofrancescal pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT fordjonathanj pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT trippelchristine pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT uszkoreitsimon pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT ferrafiatlaura pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT grengalucia pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT dickensruth pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT kellynathan pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT kingdonalexanderdh pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT ambrosettiliana pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT nepogodievsergeya pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT findlaykimc pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT cheemajitender pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT trickmartin pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT chandragovind pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT tomalingraham pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT malonejacobg pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition
AT trumanandreww pangenomeanalysisidentifiesintersectingrolesforpseudomonasspecializedmetabolitesinpotatopathogeninhibition