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Phosphate Deficiency Negatively Affects Early Steps of the Symbiosis between Common Bean and Rhizobia

Phosphate (Pi) deficiency reduces nodule formation and development in different legume species including common bean. Despite significant progress in the understanding of the genetic responses underlying the adaptation of nodules to Pi deficiency, it is still unclear whether this nutritional deficie...

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Autores principales: Isidra-Arellano, Mariel C., Reyero-Saavedra, María del Rocio, Sánchez-Correa, Maria del Socorro, Pingault, Lise, Sen, Sidharth, Joshi, Trupti, Girard, Lourdes, Castro-Guerrero, Norma A., Mendoza-Cozatl, David G., Libault, Marc, Valdés-López, Oswaldo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6210973/
https://www.ncbi.nlm.nih.gov/pubmed/30326664
http://dx.doi.org/10.3390/genes9100498
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author Isidra-Arellano, Mariel C.
Reyero-Saavedra, María del Rocio
Sánchez-Correa, Maria del Socorro
Pingault, Lise
Sen, Sidharth
Joshi, Trupti
Girard, Lourdes
Castro-Guerrero, Norma A.
Mendoza-Cozatl, David G.
Libault, Marc
Valdés-López, Oswaldo
author_facet Isidra-Arellano, Mariel C.
Reyero-Saavedra, María del Rocio
Sánchez-Correa, Maria del Socorro
Pingault, Lise
Sen, Sidharth
Joshi, Trupti
Girard, Lourdes
Castro-Guerrero, Norma A.
Mendoza-Cozatl, David G.
Libault, Marc
Valdés-López, Oswaldo
author_sort Isidra-Arellano, Mariel C.
collection PubMed
description Phosphate (Pi) deficiency reduces nodule formation and development in different legume species including common bean. Despite significant progress in the understanding of the genetic responses underlying the adaptation of nodules to Pi deficiency, it is still unclear whether this nutritional deficiency interferes with the molecular dialogue between legumes and rhizobia. If so, what part of the molecular dialogue is impaired? In this study, we provide evidence demonstrating that Pi deficiency negatively affects critical early molecular and physiological responses that are required for a successful symbiosis between common bean and rhizobia. We demonstrated that the infection thread formation and the expression of PvNSP2, PvNIN, and PvFLOT2, which are genes controlling the nodulation process were significantly reduced in Pi-deficient common bean seedlings. In addition, whole-genome transcriptional analysis revealed that the expression of hormones-related genes is compromised in Pi-deficient seedlings inoculated with rhizobia. Moreover, we showed that regardless of the presence or absence of rhizobia, the expression of PvRIC1 and PvRIC2, two genes participating in the autoregulation of nodule numbers, was higher in Pi-deficient seedlings compared to control seedlings. The data presented in this study provides a mechanistic model to better understand how Pi deficiency impacts the early steps of the symbiosis between common bean and rhizobia.
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spelling pubmed-62109732018-11-02 Phosphate Deficiency Negatively Affects Early Steps of the Symbiosis between Common Bean and Rhizobia Isidra-Arellano, Mariel C. Reyero-Saavedra, María del Rocio Sánchez-Correa, Maria del Socorro Pingault, Lise Sen, Sidharth Joshi, Trupti Girard, Lourdes Castro-Guerrero, Norma A. Mendoza-Cozatl, David G. Libault, Marc Valdés-López, Oswaldo Genes (Basel) Article Phosphate (Pi) deficiency reduces nodule formation and development in different legume species including common bean. Despite significant progress in the understanding of the genetic responses underlying the adaptation of nodules to Pi deficiency, it is still unclear whether this nutritional deficiency interferes with the molecular dialogue between legumes and rhizobia. If so, what part of the molecular dialogue is impaired? In this study, we provide evidence demonstrating that Pi deficiency negatively affects critical early molecular and physiological responses that are required for a successful symbiosis between common bean and rhizobia. We demonstrated that the infection thread formation and the expression of PvNSP2, PvNIN, and PvFLOT2, which are genes controlling the nodulation process were significantly reduced in Pi-deficient common bean seedlings. In addition, whole-genome transcriptional analysis revealed that the expression of hormones-related genes is compromised in Pi-deficient seedlings inoculated with rhizobia. Moreover, we showed that regardless of the presence or absence of rhizobia, the expression of PvRIC1 and PvRIC2, two genes participating in the autoregulation of nodule numbers, was higher in Pi-deficient seedlings compared to control seedlings. The data presented in this study provides a mechanistic model to better understand how Pi deficiency impacts the early steps of the symbiosis between common bean and rhizobia. MDPI 2018-10-15 /pmc/articles/PMC6210973/ /pubmed/30326664 http://dx.doi.org/10.3390/genes9100498 Text en © 2018 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Isidra-Arellano, Mariel C.
Reyero-Saavedra, María del Rocio
Sánchez-Correa, Maria del Socorro
Pingault, Lise
Sen, Sidharth
Joshi, Trupti
Girard, Lourdes
Castro-Guerrero, Norma A.
Mendoza-Cozatl, David G.
Libault, Marc
Valdés-López, Oswaldo
Phosphate Deficiency Negatively Affects Early Steps of the Symbiosis between Common Bean and Rhizobia
title Phosphate Deficiency Negatively Affects Early Steps of the Symbiosis between Common Bean and Rhizobia
title_full Phosphate Deficiency Negatively Affects Early Steps of the Symbiosis between Common Bean and Rhizobia
title_fullStr Phosphate Deficiency Negatively Affects Early Steps of the Symbiosis between Common Bean and Rhizobia
title_full_unstemmed Phosphate Deficiency Negatively Affects Early Steps of the Symbiosis between Common Bean and Rhizobia
title_short Phosphate Deficiency Negatively Affects Early Steps of the Symbiosis between Common Bean and Rhizobia
title_sort phosphate deficiency negatively affects early steps of the symbiosis between common bean and rhizobia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6210973/
https://www.ncbi.nlm.nih.gov/pubmed/30326664
http://dx.doi.org/10.3390/genes9100498
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