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A Microbial-Based Biostimulant Enhances Sweet Pepper Performance by Metabolic Reprogramming of Phytohormone Profile and Secondary Metabolism

Microbial-based biostimulants can improve crop productivity by modulating cell metabolic pathways including hormonal balance. However, little is known about the microbial-mediated molecular changes causing yield increase. The present study elucidates the metabolomic modulation occurring in pepper (C...

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Autores principales: Bonini, Paolo, Rouphael, Youssef, Miras-Moreno, Begoña, Lee, Byungha, Cardarelli, Mariateresa, Erice, Gorka, Cirino, Veronica, Lucini, Luigi, Colla, Giuseppe
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7674627/
https://www.ncbi.nlm.nih.gov/pubmed/33224160
http://dx.doi.org/10.3389/fpls.2020.567388
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author Bonini, Paolo
Rouphael, Youssef
Miras-Moreno, Begoña
Lee, Byungha
Cardarelli, Mariateresa
Erice, Gorka
Cirino, Veronica
Lucini, Luigi
Colla, Giuseppe
author_facet Bonini, Paolo
Rouphael, Youssef
Miras-Moreno, Begoña
Lee, Byungha
Cardarelli, Mariateresa
Erice, Gorka
Cirino, Veronica
Lucini, Luigi
Colla, Giuseppe
author_sort Bonini, Paolo
collection PubMed
description Microbial-based biostimulants can improve crop productivity by modulating cell metabolic pathways including hormonal balance. However, little is known about the microbial-mediated molecular changes causing yield increase. The present study elucidates the metabolomic modulation occurring in pepper (Capsicum annuum L.) leaves at the vegetative and reproductive phenological stages, in response to microbial-based biostimulants. The arbuscular mycorrhizal fungi Rhizoglomus irregularis and Funneliformis mosseae, as well as Trichoderma koningii, were used in this work. The application of endophytic fungi significantly increased total fruit yield by 23.7% compared to that of untreated plants. Multivariate statistics indicated that the biostimulant treatment substantially altered the shape of the metabolic profile of pepper. Compared to the untreated control, the plants treated with microbial biostimulants presented with modified gibberellin, auxin, and cytokinin patterns. The biostimulant treatment also induced secondary metabolism and caused carotenoids, saponins, and phenolic compounds to accumulate in the plants. Differential metabolomic signatures indicated diverse and concerted biochemical responses in the plants following the colonization of their roots by beneficial microorganisms. The above findings demonstrated a clear link between microbial-mediated yield increase and a strong up-regulation of hormonal and secondary metabolic pathways associated with growth stimulation and crop defense to environmental stresses.
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spelling pubmed-76746272020-11-19 A Microbial-Based Biostimulant Enhances Sweet Pepper Performance by Metabolic Reprogramming of Phytohormone Profile and Secondary Metabolism Bonini, Paolo Rouphael, Youssef Miras-Moreno, Begoña Lee, Byungha Cardarelli, Mariateresa Erice, Gorka Cirino, Veronica Lucini, Luigi Colla, Giuseppe Front Plant Sci Plant Science Microbial-based biostimulants can improve crop productivity by modulating cell metabolic pathways including hormonal balance. However, little is known about the microbial-mediated molecular changes causing yield increase. The present study elucidates the metabolomic modulation occurring in pepper (Capsicum annuum L.) leaves at the vegetative and reproductive phenological stages, in response to microbial-based biostimulants. The arbuscular mycorrhizal fungi Rhizoglomus irregularis and Funneliformis mosseae, as well as Trichoderma koningii, were used in this work. The application of endophytic fungi significantly increased total fruit yield by 23.7% compared to that of untreated plants. Multivariate statistics indicated that the biostimulant treatment substantially altered the shape of the metabolic profile of pepper. Compared to the untreated control, the plants treated with microbial biostimulants presented with modified gibberellin, auxin, and cytokinin patterns. The biostimulant treatment also induced secondary metabolism and caused carotenoids, saponins, and phenolic compounds to accumulate in the plants. Differential metabolomic signatures indicated diverse and concerted biochemical responses in the plants following the colonization of their roots by beneficial microorganisms. The above findings demonstrated a clear link between microbial-mediated yield increase and a strong up-regulation of hormonal and secondary metabolic pathways associated with growth stimulation and crop defense to environmental stresses. Frontiers Media S.A. 2020-11-05 /pmc/articles/PMC7674627/ /pubmed/33224160 http://dx.doi.org/10.3389/fpls.2020.567388 Text en Copyright © 2020 Bonini, Rouphael, Miras-Moreno, Lee, Cardarelli, Erice, Cirino, Lucini and Colla. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Bonini, Paolo
Rouphael, Youssef
Miras-Moreno, Begoña
Lee, Byungha
Cardarelli, Mariateresa
Erice, Gorka
Cirino, Veronica
Lucini, Luigi
Colla, Giuseppe
A Microbial-Based Biostimulant Enhances Sweet Pepper Performance by Metabolic Reprogramming of Phytohormone Profile and Secondary Metabolism
title A Microbial-Based Biostimulant Enhances Sweet Pepper Performance by Metabolic Reprogramming of Phytohormone Profile and Secondary Metabolism
title_full A Microbial-Based Biostimulant Enhances Sweet Pepper Performance by Metabolic Reprogramming of Phytohormone Profile and Secondary Metabolism
title_fullStr A Microbial-Based Biostimulant Enhances Sweet Pepper Performance by Metabolic Reprogramming of Phytohormone Profile and Secondary Metabolism
title_full_unstemmed A Microbial-Based Biostimulant Enhances Sweet Pepper Performance by Metabolic Reprogramming of Phytohormone Profile and Secondary Metabolism
title_short A Microbial-Based Biostimulant Enhances Sweet Pepper Performance by Metabolic Reprogramming of Phytohormone Profile and Secondary Metabolism
title_sort microbial-based biostimulant enhances sweet pepper performance by metabolic reprogramming of phytohormone profile and secondary metabolism
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7674627/
https://www.ncbi.nlm.nih.gov/pubmed/33224160
http://dx.doi.org/10.3389/fpls.2020.567388
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