A novel interaction between plant-beneficial rhizobacteria and roots: colonization induces corn resistance against the root herbivore Diabrotica speciosa.

A number of soil-borne microorganisms, such as mycorrhizal fungi and rhizobacteria, establish mutualistic interactions with plants, which can indirectly affect other organisms. Knowledge of the plant-mediated effects of mutualistic microorganisms is limited to aboveground insects, whereas there is l...

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Main Authors: Franciele Santos, Maria Fernanda G V Peñaflor, Paul W Paré, Patrícia A Sanches, Aline C Kamiya, Mateus Tonelli, Cristiane Nardi, José Mauricio S Bento
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:https://doi.org/10.1371/journal.pone.0113280
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spelling doaj-0309fb5623b94464a49d94d6143677e42021-03-03T20:11:23ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01911e11328010.1371/journal.pone.0113280A novel interaction between plant-beneficial rhizobacteria and roots: colonization induces corn resistance against the root herbivore Diabrotica speciosa.Franciele SantosMaria Fernanda G V PeñaflorPaul W ParéPatrícia A SanchesAline C KamiyaMateus TonelliCristiane NardiJosé Mauricio S BentoA number of soil-borne microorganisms, such as mycorrhizal fungi and rhizobacteria, establish mutualistic interactions with plants, which can indirectly affect other organisms. Knowledge of the plant-mediated effects of mutualistic microorganisms is limited to aboveground insects, whereas there is little understanding of what role beneficial soil bacteria may play in plant defense against root herbivory. Here, we establish that colonization by the beneficial rhizobacterium Azospirillum brasilense affects the host selection and performance of the insect Diabrotica speciosa. Root larvae preferentially orient toward the roots of non-inoculated plants versus inoculated roots and gain less weight when feeding on inoculated plants. As inoculation by A. brasilense induces higher emissions of (E)-β-caryophyllene compared with non-inoculated plants, it is plausible that the non-preference of D. speciosa for inoculated plants is related to this sesquiterpene, which is well known to mediate belowground insect-plant interactions. To the best of our knowledge, this is the first study showing that a beneficial rhizobacterium inoculant indirectly alters belowground plant-insect interactions. The role of A. brasilense as part of an integrative pest management (IPM) program for the protection of corn against the South American corn rootworm, D. speciosa, is considered.https://doi.org/10.1371/journal.pone.0113280
collection DOAJ
language English
format Article
sources DOAJ
author Franciele Santos
Maria Fernanda G V Peñaflor
Paul W Paré
Patrícia A Sanches
Aline C Kamiya
Mateus Tonelli
Cristiane Nardi
José Mauricio S Bento
spellingShingle Franciele Santos
Maria Fernanda G V Peñaflor
Paul W Paré
Patrícia A Sanches
Aline C Kamiya
Mateus Tonelli
Cristiane Nardi
José Mauricio S Bento
A novel interaction between plant-beneficial rhizobacteria and roots: colonization induces corn resistance against the root herbivore Diabrotica speciosa.
PLoS ONE
author_facet Franciele Santos
Maria Fernanda G V Peñaflor
Paul W Paré
Patrícia A Sanches
Aline C Kamiya
Mateus Tonelli
Cristiane Nardi
José Mauricio S Bento
author_sort Franciele Santos
title A novel interaction between plant-beneficial rhizobacteria and roots: colonization induces corn resistance against the root herbivore Diabrotica speciosa.
title_short A novel interaction between plant-beneficial rhizobacteria and roots: colonization induces corn resistance against the root herbivore Diabrotica speciosa.
title_full A novel interaction between plant-beneficial rhizobacteria and roots: colonization induces corn resistance against the root herbivore Diabrotica speciosa.
title_fullStr A novel interaction between plant-beneficial rhizobacteria and roots: colonization induces corn resistance against the root herbivore Diabrotica speciosa.
title_full_unstemmed A novel interaction between plant-beneficial rhizobacteria and roots: colonization induces corn resistance against the root herbivore Diabrotica speciosa.
title_sort novel interaction between plant-beneficial rhizobacteria and roots: colonization induces corn resistance against the root herbivore diabrotica speciosa.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description A number of soil-borne microorganisms, such as mycorrhizal fungi and rhizobacteria, establish mutualistic interactions with plants, which can indirectly affect other organisms. Knowledge of the plant-mediated effects of mutualistic microorganisms is limited to aboveground insects, whereas there is little understanding of what role beneficial soil bacteria may play in plant defense against root herbivory. Here, we establish that colonization by the beneficial rhizobacterium Azospirillum brasilense affects the host selection and performance of the insect Diabrotica speciosa. Root larvae preferentially orient toward the roots of non-inoculated plants versus inoculated roots and gain less weight when feeding on inoculated plants. As inoculation by A. brasilense induces higher emissions of (E)-β-caryophyllene compared with non-inoculated plants, it is plausible that the non-preference of D. speciosa for inoculated plants is related to this sesquiterpene, which is well known to mediate belowground insect-plant interactions. To the best of our knowledge, this is the first study showing that a beneficial rhizobacterium inoculant indirectly alters belowground plant-insect interactions. The role of A. brasilense as part of an integrative pest management (IPM) program for the protection of corn against the South American corn rootworm, D. speciosa, is considered.
url https://doi.org/10.1371/journal.pone.0113280
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