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Enhance of tomato production and induction of changes on the organic profile mediated by Rhizobium biofortification

INTRODUCTION: The extensive use of chemical fertilizers has served as a response to the increasing need for crop production in recent decades. While it addresses the demand for food, it has resulted in a decline in crop productivity and a heightened negative environmental impact. In contrast, plant...

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Autores principales: Gen-Jiménez, Adriana, Flores-Félix, José David, Rincón-Molina, Clara Ivette, Manzano-Gomez, Luis Alberto, Rogel, Marco Antonio, Ruíz-Valdiviezo, Víctor Manuel, Rincón-Molina, Francisco Alexander, Rincón-Rosales, Reiner
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10433389/
https://www.ncbi.nlm.nih.gov/pubmed/37601341
http://dx.doi.org/10.3389/fmicb.2023.1235930
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author Gen-Jiménez, Adriana
Flores-Félix, José David
Rincón-Molina, Clara Ivette
Manzano-Gomez, Luis Alberto
Rogel, Marco Antonio
Ruíz-Valdiviezo, Víctor Manuel
Rincón-Molina, Francisco Alexander
Rincón-Rosales, Reiner
author_facet Gen-Jiménez, Adriana
Flores-Félix, José David
Rincón-Molina, Clara Ivette
Manzano-Gomez, Luis Alberto
Rogel, Marco Antonio
Ruíz-Valdiviezo, Víctor Manuel
Rincón-Molina, Francisco Alexander
Rincón-Rosales, Reiner
author_sort Gen-Jiménez, Adriana
collection PubMed
description INTRODUCTION: The extensive use of chemical fertilizers has served as a response to the increasing need for crop production in recent decades. While it addresses the demand for food, it has resulted in a decline in crop productivity and a heightened negative environmental impact. In contrast, plant probiotic bacteria (PPB) offer a promising alternative to mitigate the negative consequences of chemical fertilizers. PPB can enhance nutrient availability, promote plant growth, and improve nutrient uptake efficiency, thereby reducing the reliance on chemical fertilizers. METHODS: This study aimed to evaluate the impact of native Rhizobium strains, specifically Rhizobium calliandrae LBP2-1, Rhizobium mayense NSJP1-1, and Rhizobium jaguaris SJP1- 2, on the growth, quality, and rhizobacterial community of tomato crops. Various mechanisms promoting plant growth were investigated, including phosphate solubilization, siderophore production, indole acetic acid synthesis, and cellulose and cellulase production. Additionally, the study involved the assessment of biofilm formation and root colonization by GFP-tagged strains, conducted a microcosm experiment, and analyzed the microbial community using metagenomics of rhizospheric soil. RESULTS: The results showed that the rhizobial strains LBP2-1, NSJP1-1 and SJP1-2 had the ability to solubilize dicalcium phosphate, produce siderophores, synthesize indole acetic acid, cellulose production, biofilm production, and root colonization. Inoculation of tomato plants with native Rhizobium strains influenced growth, fruit quality, and plant microbiome composition. Metagenomic analysis showed increased Proteobacteria abundance and altered alpha diversity indices, indicating changes in rhizospheric bacterial community. DISCUSSION: Our findings demonstrate the potential that native Rhizobium strains have to be used as a plant probiotic in agricultural crops for the generation of safe food and high nutritional value.
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spelling pubmed-104333892023-08-18 Enhance of tomato production and induction of changes on the organic profile mediated by Rhizobium biofortification Gen-Jiménez, Adriana Flores-Félix, José David Rincón-Molina, Clara Ivette Manzano-Gomez, Luis Alberto Rogel, Marco Antonio Ruíz-Valdiviezo, Víctor Manuel Rincón-Molina, Francisco Alexander Rincón-Rosales, Reiner Front Microbiol Microbiology INTRODUCTION: The extensive use of chemical fertilizers has served as a response to the increasing need for crop production in recent decades. While it addresses the demand for food, it has resulted in a decline in crop productivity and a heightened negative environmental impact. In contrast, plant probiotic bacteria (PPB) offer a promising alternative to mitigate the negative consequences of chemical fertilizers. PPB can enhance nutrient availability, promote plant growth, and improve nutrient uptake efficiency, thereby reducing the reliance on chemical fertilizers. METHODS: This study aimed to evaluate the impact of native Rhizobium strains, specifically Rhizobium calliandrae LBP2-1, Rhizobium mayense NSJP1-1, and Rhizobium jaguaris SJP1- 2, on the growth, quality, and rhizobacterial community of tomato crops. Various mechanisms promoting plant growth were investigated, including phosphate solubilization, siderophore production, indole acetic acid synthesis, and cellulose and cellulase production. Additionally, the study involved the assessment of biofilm formation and root colonization by GFP-tagged strains, conducted a microcosm experiment, and analyzed the microbial community using metagenomics of rhizospheric soil. RESULTS: The results showed that the rhizobial strains LBP2-1, NSJP1-1 and SJP1-2 had the ability to solubilize dicalcium phosphate, produce siderophores, synthesize indole acetic acid, cellulose production, biofilm production, and root colonization. Inoculation of tomato plants with native Rhizobium strains influenced growth, fruit quality, and plant microbiome composition. Metagenomic analysis showed increased Proteobacteria abundance and altered alpha diversity indices, indicating changes in rhizospheric bacterial community. DISCUSSION: Our findings demonstrate the potential that native Rhizobium strains have to be used as a plant probiotic in agricultural crops for the generation of safe food and high nutritional value. Frontiers Media S.A. 2023-08-02 /pmc/articles/PMC10433389/ /pubmed/37601341 http://dx.doi.org/10.3389/fmicb.2023.1235930 Text en Copyright © 2023 Gen-Jiménez, Flores-Félix, Rincón-Molina, Manzano-Gomez, Rogel, Ruíz-Valdiviezo, Rincón-Molina and Rincón-Rosales. https://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 Microbiology
Gen-Jiménez, Adriana
Flores-Félix, José David
Rincón-Molina, Clara Ivette
Manzano-Gomez, Luis Alberto
Rogel, Marco Antonio
Ruíz-Valdiviezo, Víctor Manuel
Rincón-Molina, Francisco Alexander
Rincón-Rosales, Reiner
Enhance of tomato production and induction of changes on the organic profile mediated by Rhizobium biofortification
title Enhance of tomato production and induction of changes on the organic profile mediated by Rhizobium biofortification
title_full Enhance of tomato production and induction of changes on the organic profile mediated by Rhizobium biofortification
title_fullStr Enhance of tomato production and induction of changes on the organic profile mediated by Rhizobium biofortification
title_full_unstemmed Enhance of tomato production and induction of changes on the organic profile mediated by Rhizobium biofortification
title_short Enhance of tomato production and induction of changes on the organic profile mediated by Rhizobium biofortification
title_sort enhance of tomato production and induction of changes on the organic profile mediated by rhizobium biofortification
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10433389/
https://www.ncbi.nlm.nih.gov/pubmed/37601341
http://dx.doi.org/10.3389/fmicb.2023.1235930
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