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Efficiency of Combining Strains Ag87 (Bacillus megaterium) and Ag94 (Lysinibacillus sp.) as Phosphate Solubilizers and Growth Promoters in Maize

Increasing phosphorus (P) use efficiency in agricultural systems is urgent and essential to significantly reduce the global demand for this nutrient. Applying phosphate-solubilizing and plant growth-promoting bacteria in the rhizosphere represents a strategy worthy of attention. In this context, the...

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Autores principales: Massucato, Luana Rainieri, Almeida, Suelen Regina de Araújo, Silva, Mayara Barbosa, Mosela, Mirela, Zeffa, Douglas Mariani, Nogueira, Alison Fernando, de Lima Filho, Renato Barros, Mian, Silas, Higashi, Allan Yukio, Teixeira, Gustavo Manoel, Shimizu, Gabriel Danilo, Giacomin, Renata Mussoi, Fendrich, Ricardo Cancio, Faria, Marcos Ventura, Scapim, Carlos Alberto, Gonçalves, Leandro Simões Azeredo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9315647/
https://www.ncbi.nlm.nih.gov/pubmed/35889120
http://dx.doi.org/10.3390/microorganisms10071401
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author Massucato, Luana Rainieri
Almeida, Suelen Regina de Araújo
Silva, Mayara Barbosa
Mosela, Mirela
Zeffa, Douglas Mariani
Nogueira, Alison Fernando
de Lima Filho, Renato Barros
Mian, Silas
Higashi, Allan Yukio
Teixeira, Gustavo Manoel
Shimizu, Gabriel Danilo
Giacomin, Renata Mussoi
Fendrich, Ricardo Cancio
Faria, Marcos Ventura
Scapim, Carlos Alberto
Gonçalves, Leandro Simões Azeredo
author_facet Massucato, Luana Rainieri
Almeida, Suelen Regina de Araújo
Silva, Mayara Barbosa
Mosela, Mirela
Zeffa, Douglas Mariani
Nogueira, Alison Fernando
de Lima Filho, Renato Barros
Mian, Silas
Higashi, Allan Yukio
Teixeira, Gustavo Manoel
Shimizu, Gabriel Danilo
Giacomin, Renata Mussoi
Fendrich, Ricardo Cancio
Faria, Marcos Ventura
Scapim, Carlos Alberto
Gonçalves, Leandro Simões Azeredo
author_sort Massucato, Luana Rainieri
collection PubMed
description Increasing phosphorus (P) use efficiency in agricultural systems is urgent and essential to significantly reduce the global demand for this nutrient. Applying phosphate-solubilizing and plant growth-promoting bacteria in the rhizosphere represents a strategy worthy of attention. In this context, the present work aimed to select and validate bacterial strains capable of solubilizing phosphorous and promoting maize growth, aiming to develop a microbial inoculant to be used in Brazilian agriculture. Bacterial strains from the maize rhizosphere were evaluated based on their ability to solubilize phosphate and produce indole acetic acid. Based on these characteristics, 24 strains were selected to be further evaluated under laboratory, greenhouse, and field conditions. Among the selected strains, four (I04, I12, I13, and I17) showed a high potential to increase maize root growth and shoot P content. Strains I13 (Ag87) and I17 (Ag94) were identified by genomic sequencing as Bacillus megaterium and Lysinibacillus sp., respectively. These strains presented superior yield increments relative to the control treatment with 30% P. In addition, combining Ag87 and Ag94 resulted in even higher yield gains, indicating a synergistic effect that could be harnessed in a commercial inoculant for Brazilian agriculture.
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spelling pubmed-93156472022-07-27 Efficiency of Combining Strains Ag87 (Bacillus megaterium) and Ag94 (Lysinibacillus sp.) as Phosphate Solubilizers and Growth Promoters in Maize Massucato, Luana Rainieri Almeida, Suelen Regina de Araújo Silva, Mayara Barbosa Mosela, Mirela Zeffa, Douglas Mariani Nogueira, Alison Fernando de Lima Filho, Renato Barros Mian, Silas Higashi, Allan Yukio Teixeira, Gustavo Manoel Shimizu, Gabriel Danilo Giacomin, Renata Mussoi Fendrich, Ricardo Cancio Faria, Marcos Ventura Scapim, Carlos Alberto Gonçalves, Leandro Simões Azeredo Microorganisms Article Increasing phosphorus (P) use efficiency in agricultural systems is urgent and essential to significantly reduce the global demand for this nutrient. Applying phosphate-solubilizing and plant growth-promoting bacteria in the rhizosphere represents a strategy worthy of attention. In this context, the present work aimed to select and validate bacterial strains capable of solubilizing phosphorous and promoting maize growth, aiming to develop a microbial inoculant to be used in Brazilian agriculture. Bacterial strains from the maize rhizosphere were evaluated based on their ability to solubilize phosphate and produce indole acetic acid. Based on these characteristics, 24 strains were selected to be further evaluated under laboratory, greenhouse, and field conditions. Among the selected strains, four (I04, I12, I13, and I17) showed a high potential to increase maize root growth and shoot P content. Strains I13 (Ag87) and I17 (Ag94) were identified by genomic sequencing as Bacillus megaterium and Lysinibacillus sp., respectively. These strains presented superior yield increments relative to the control treatment with 30% P. In addition, combining Ag87 and Ag94 resulted in even higher yield gains, indicating a synergistic effect that could be harnessed in a commercial inoculant for Brazilian agriculture. MDPI 2022-07-12 /pmc/articles/PMC9315647/ /pubmed/35889120 http://dx.doi.org/10.3390/microorganisms10071401 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/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 (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Massucato, Luana Rainieri
Almeida, Suelen Regina de Araújo
Silva, Mayara Barbosa
Mosela, Mirela
Zeffa, Douglas Mariani
Nogueira, Alison Fernando
de Lima Filho, Renato Barros
Mian, Silas
Higashi, Allan Yukio
Teixeira, Gustavo Manoel
Shimizu, Gabriel Danilo
Giacomin, Renata Mussoi
Fendrich, Ricardo Cancio
Faria, Marcos Ventura
Scapim, Carlos Alberto
Gonçalves, Leandro Simões Azeredo
Efficiency of Combining Strains Ag87 (Bacillus megaterium) and Ag94 (Lysinibacillus sp.) as Phosphate Solubilizers and Growth Promoters in Maize
title Efficiency of Combining Strains Ag87 (Bacillus megaterium) and Ag94 (Lysinibacillus sp.) as Phosphate Solubilizers and Growth Promoters in Maize
title_full Efficiency of Combining Strains Ag87 (Bacillus megaterium) and Ag94 (Lysinibacillus sp.) as Phosphate Solubilizers and Growth Promoters in Maize
title_fullStr Efficiency of Combining Strains Ag87 (Bacillus megaterium) and Ag94 (Lysinibacillus sp.) as Phosphate Solubilizers and Growth Promoters in Maize
title_full_unstemmed Efficiency of Combining Strains Ag87 (Bacillus megaterium) and Ag94 (Lysinibacillus sp.) as Phosphate Solubilizers and Growth Promoters in Maize
title_short Efficiency of Combining Strains Ag87 (Bacillus megaterium) and Ag94 (Lysinibacillus sp.) as Phosphate Solubilizers and Growth Promoters in Maize
title_sort efficiency of combining strains ag87 (bacillus megaterium) and ag94 (lysinibacillus sp.) as phosphate solubilizers and growth promoters in maize
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9315647/
https://www.ncbi.nlm.nih.gov/pubmed/35889120
http://dx.doi.org/10.3390/microorganisms10071401
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