Cargando…

New Insights into Bacillus-Primed Plant Responses to a Necrotrophic Pathogen Derived from the Tomato-Botrytis Pathosystem

Induced systemic resistance (ISR) is one of the most studied mechanisms of plant–microbe interaction and is considered a very promising alternative for integrated pest management programs. In our study, we explored the plant defense response induced by Bacillus velezensis BBC047 in relation to its a...

Descripción completa

Detalles Bibliográficos
Autores principales: Morales, Paloma, González, Máximo, Salvatierra-Martínez, Ricardo, Araya, Michael, Ostria-Gallardo, Enrique, Stoll, Alexandra
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416759/
https://www.ncbi.nlm.nih.gov/pubmed/36013965
http://dx.doi.org/10.3390/microorganisms10081547
_version_ 1784776554462576640
author Morales, Paloma
González, Máximo
Salvatierra-Martínez, Ricardo
Araya, Michael
Ostria-Gallardo, Enrique
Stoll, Alexandra
author_facet Morales, Paloma
González, Máximo
Salvatierra-Martínez, Ricardo
Araya, Michael
Ostria-Gallardo, Enrique
Stoll, Alexandra
author_sort Morales, Paloma
collection PubMed
description Induced systemic resistance (ISR) is one of the most studied mechanisms of plant–microbe interaction and is considered a very promising alternative for integrated pest management programs. In our study, we explored the plant defense response induced by Bacillus velezensis BBC047 in relation to its application before or after Botrytis cinerea infection of tomato plants. The inoculation of BBC047 did not considerably alter the gene expression of the tomato tissues, whereas infection with B. cinerea in BBC047-primed plants induced expression of LRR and NBS-LRR receptors, which are highly related to the ISR response. As expected, B. cinerea infection generated molecular patterns typical of a defense response to pathogen infection as the overexpression of pathogenesis-related proteins (PRs) in leaflets distant to the point of infection. The curative treatment (P + F + B) allowed us to gain insights into plant response to an inverted priming. In this treatment, B. cinerea caused the m tissue damage, extending nearly entirely across the entire infected leaves. Additionally, genes generally associated with early SAR response (<16 h) were overexpressed, and apparently, the beneficial strain was not perceived as such. Therefore, we infer that the plant defense to the curative treatment represents a higher degree of biological stress triggered by the incorporation of strain BBC047 as second arriving microorganism. We highlight the importance the phytosanitary status of plants prior to inoculation of beneficial microorganism for the biocontrol of pathogens.
format Online
Article
Text
id pubmed-9416759
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-94167592022-08-27 New Insights into Bacillus-Primed Plant Responses to a Necrotrophic Pathogen Derived from the Tomato-Botrytis Pathosystem Morales, Paloma González, Máximo Salvatierra-Martínez, Ricardo Araya, Michael Ostria-Gallardo, Enrique Stoll, Alexandra Microorganisms Article Induced systemic resistance (ISR) is one of the most studied mechanisms of plant–microbe interaction and is considered a very promising alternative for integrated pest management programs. In our study, we explored the plant defense response induced by Bacillus velezensis BBC047 in relation to its application before or after Botrytis cinerea infection of tomato plants. The inoculation of BBC047 did not considerably alter the gene expression of the tomato tissues, whereas infection with B. cinerea in BBC047-primed plants induced expression of LRR and NBS-LRR receptors, which are highly related to the ISR response. As expected, B. cinerea infection generated molecular patterns typical of a defense response to pathogen infection as the overexpression of pathogenesis-related proteins (PRs) in leaflets distant to the point of infection. The curative treatment (P + F + B) allowed us to gain insights into plant response to an inverted priming. In this treatment, B. cinerea caused the m tissue damage, extending nearly entirely across the entire infected leaves. Additionally, genes generally associated with early SAR response (<16 h) were overexpressed, and apparently, the beneficial strain was not perceived as such. Therefore, we infer that the plant defense to the curative treatment represents a higher degree of biological stress triggered by the incorporation of strain BBC047 as second arriving microorganism. We highlight the importance the phytosanitary status of plants prior to inoculation of beneficial microorganism for the biocontrol of pathogens. MDPI 2022-07-30 /pmc/articles/PMC9416759/ /pubmed/36013965 http://dx.doi.org/10.3390/microorganisms10081547 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Morales, Paloma
González, Máximo
Salvatierra-Martínez, Ricardo
Araya, Michael
Ostria-Gallardo, Enrique
Stoll, Alexandra
New Insights into Bacillus-Primed Plant Responses to a Necrotrophic Pathogen Derived from the Tomato-Botrytis Pathosystem
title New Insights into Bacillus-Primed Plant Responses to a Necrotrophic Pathogen Derived from the Tomato-Botrytis Pathosystem
title_full New Insights into Bacillus-Primed Plant Responses to a Necrotrophic Pathogen Derived from the Tomato-Botrytis Pathosystem
title_fullStr New Insights into Bacillus-Primed Plant Responses to a Necrotrophic Pathogen Derived from the Tomato-Botrytis Pathosystem
title_full_unstemmed New Insights into Bacillus-Primed Plant Responses to a Necrotrophic Pathogen Derived from the Tomato-Botrytis Pathosystem
title_short New Insights into Bacillus-Primed Plant Responses to a Necrotrophic Pathogen Derived from the Tomato-Botrytis Pathosystem
title_sort new insights into bacillus-primed plant responses to a necrotrophic pathogen derived from the tomato-botrytis pathosystem
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9416759/
https://www.ncbi.nlm.nih.gov/pubmed/36013965
http://dx.doi.org/10.3390/microorganisms10081547
work_keys_str_mv AT moralespaloma newinsightsintobacillusprimedplantresponsestoanecrotrophicpathogenderivedfromthetomatobotrytispathosystem
AT gonzalezmaximo newinsightsintobacillusprimedplantresponsestoanecrotrophicpathogenderivedfromthetomatobotrytispathosystem
AT salvatierramartinezricardo newinsightsintobacillusprimedplantresponsestoanecrotrophicpathogenderivedfromthetomatobotrytispathosystem
AT arayamichael newinsightsintobacillusprimedplantresponsestoanecrotrophicpathogenderivedfromthetomatobotrytispathosystem
AT ostriagallardoenrique newinsightsintobacillusprimedplantresponsestoanecrotrophicpathogenderivedfromthetomatobotrytispathosystem
AT stollalexandra newinsightsintobacillusprimedplantresponsestoanecrotrophicpathogenderivedfromthetomatobotrytispathosystem