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Holistic view of biological nitrogen fixation and phosphorus mobilization in Azotobacter chroococcum NCIMB 8003

Nitrogen (N) and phosphorus (P) deficiencies are two of the most agronomic problems that cause significant decrease in crop yield and quality. N and P chemical fertilizers are widely used in current agriculture, causing environmental problems and increasing production costs. Therefore, the developme...

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Autores principales: Biełło, Karolina A., Lucena, Carlos, López-Tenllado, Francisco J., Hidalgo-Carrillo, Jesús, Rodríguez-Caballero, Gema, Cabello, Purificación, Sáez, Lara P., Luque-Almagro, Víctor, Roldán, María Dolores, Moreno-Vivián, Conrado, Olaya-Abril, Alfonso
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9945222/
https://www.ncbi.nlm.nih.gov/pubmed/36846808
http://dx.doi.org/10.3389/fmicb.2023.1129721
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author Biełło, Karolina A.
Lucena, Carlos
López-Tenllado, Francisco J.
Hidalgo-Carrillo, Jesús
Rodríguez-Caballero, Gema
Cabello, Purificación
Sáez, Lara P.
Luque-Almagro, Víctor
Roldán, María Dolores
Moreno-Vivián, Conrado
Olaya-Abril, Alfonso
author_facet Biełło, Karolina A.
Lucena, Carlos
López-Tenllado, Francisco J.
Hidalgo-Carrillo, Jesús
Rodríguez-Caballero, Gema
Cabello, Purificación
Sáez, Lara P.
Luque-Almagro, Víctor
Roldán, María Dolores
Moreno-Vivián, Conrado
Olaya-Abril, Alfonso
author_sort Biełło, Karolina A.
collection PubMed
description Nitrogen (N) and phosphorus (P) deficiencies are two of the most agronomic problems that cause significant decrease in crop yield and quality. N and P chemical fertilizers are widely used in current agriculture, causing environmental problems and increasing production costs. Therefore, the development of alternative strategies to reduce the use of chemical fertilizers while maintaining N and P inputs are being investigated. Although dinitrogen is an abundant gas in the atmosphere, it requires biological nitrogen fixation (BNF) to be transformed into ammonium, a nitrogen source assimilable by living organisms. This process is bioenergetically expensive and, therefore, highly regulated. Factors like availability of other essential elements, as phosphorus, strongly influence BNF. However, the molecular mechanisms of these interactions are unclear. In this work, a physiological characterization of BNF and phosphorus mobilization (PM) from an insoluble form (Ca(3)(PO(4))(2)) in Azotobacter chroococcum NCIMB 8003 was carried out. These processes were analyzed by quantitative proteomics in order to detect their molecular requirements and interactions. BNF led to a metabolic change beyond the proteins strictly necessary to carry out the process, including the metabolism related to other elements, like phosphorus. Also, changes in cell mobility, heme group synthesis and oxidative stress responses were observed. This study also revealed two phosphatases that seem to have the main role in PM, an exopolyphosphatase and a non-specific alkaline phosphatase PhoX. When both BNF and PM processes take place simultaneously, the synthesis of nitrogenous bases and L-methionine were also affected. Thus, although the interdependence is still unknown, possible biotechnological applications of these processes should take into account the indicated factors.
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spelling pubmed-99452222023-02-23 Holistic view of biological nitrogen fixation and phosphorus mobilization in Azotobacter chroococcum NCIMB 8003 Biełło, Karolina A. Lucena, Carlos López-Tenllado, Francisco J. Hidalgo-Carrillo, Jesús Rodríguez-Caballero, Gema Cabello, Purificación Sáez, Lara P. Luque-Almagro, Víctor Roldán, María Dolores Moreno-Vivián, Conrado Olaya-Abril, Alfonso Front Microbiol Microbiology Nitrogen (N) and phosphorus (P) deficiencies are two of the most agronomic problems that cause significant decrease in crop yield and quality. N and P chemical fertilizers are widely used in current agriculture, causing environmental problems and increasing production costs. Therefore, the development of alternative strategies to reduce the use of chemical fertilizers while maintaining N and P inputs are being investigated. Although dinitrogen is an abundant gas in the atmosphere, it requires biological nitrogen fixation (BNF) to be transformed into ammonium, a nitrogen source assimilable by living organisms. This process is bioenergetically expensive and, therefore, highly regulated. Factors like availability of other essential elements, as phosphorus, strongly influence BNF. However, the molecular mechanisms of these interactions are unclear. In this work, a physiological characterization of BNF and phosphorus mobilization (PM) from an insoluble form (Ca(3)(PO(4))(2)) in Azotobacter chroococcum NCIMB 8003 was carried out. These processes were analyzed by quantitative proteomics in order to detect their molecular requirements and interactions. BNF led to a metabolic change beyond the proteins strictly necessary to carry out the process, including the metabolism related to other elements, like phosphorus. Also, changes in cell mobility, heme group synthesis and oxidative stress responses were observed. This study also revealed two phosphatases that seem to have the main role in PM, an exopolyphosphatase and a non-specific alkaline phosphatase PhoX. When both BNF and PM processes take place simultaneously, the synthesis of nitrogenous bases and L-methionine were also affected. Thus, although the interdependence is still unknown, possible biotechnological applications of these processes should take into account the indicated factors. Frontiers Media S.A. 2023-02-08 /pmc/articles/PMC9945222/ /pubmed/36846808 http://dx.doi.org/10.3389/fmicb.2023.1129721 Text en Copyright © 2023 Biełło, Lucena, López-Tenllado, Hidalgo-Carrillo, Rodríguez-Caballero, Cabello, Sáez, Luque-Almagro, Roldán, Moreno-Vivián and Olaya-Abril. 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
Biełło, Karolina A.
Lucena, Carlos
López-Tenllado, Francisco J.
Hidalgo-Carrillo, Jesús
Rodríguez-Caballero, Gema
Cabello, Purificación
Sáez, Lara P.
Luque-Almagro, Víctor
Roldán, María Dolores
Moreno-Vivián, Conrado
Olaya-Abril, Alfonso
Holistic view of biological nitrogen fixation and phosphorus mobilization in Azotobacter chroococcum NCIMB 8003
title Holistic view of biological nitrogen fixation and phosphorus mobilization in Azotobacter chroococcum NCIMB 8003
title_full Holistic view of biological nitrogen fixation and phosphorus mobilization in Azotobacter chroococcum NCIMB 8003
title_fullStr Holistic view of biological nitrogen fixation and phosphorus mobilization in Azotobacter chroococcum NCIMB 8003
title_full_unstemmed Holistic view of biological nitrogen fixation and phosphorus mobilization in Azotobacter chroococcum NCIMB 8003
title_short Holistic view of biological nitrogen fixation and phosphorus mobilization in Azotobacter chroococcum NCIMB 8003
title_sort holistic view of biological nitrogen fixation and phosphorus mobilization in azotobacter chroococcum ncimb 8003
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9945222/
https://www.ncbi.nlm.nih.gov/pubmed/36846808
http://dx.doi.org/10.3389/fmicb.2023.1129721
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