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New Pseudomonas Bacterial Strains: Biological Activity and Characteristic Properties of Metabolites

This paper investigates the antagonistic and plant growth promotion activity of the new indigenous bacteria antagonist strains P. chlororaphis BZR 245-F and Pseudomonas sp. BZR 523-2. It was found that on the 10th day of cultivation, BZR 245-F and BZR 523-2 exhibit an antagonistic activity against F...

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Autores principales: Sidorova, Tatiana M., Tomashevich, Natalia S., Allahverdyan, Valeria V., Tupertsev, Boris S., Kostyukevich, Yuri I., Asaturova, Anzhela M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10459626/
https://www.ncbi.nlm.nih.gov/pubmed/37630503
http://dx.doi.org/10.3390/microorganisms11081943
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author Sidorova, Tatiana M.
Tomashevich, Natalia S.
Allahverdyan, Valeria V.
Tupertsev, Boris S.
Kostyukevich, Yuri I.
Asaturova, Anzhela M.
author_facet Sidorova, Tatiana M.
Tomashevich, Natalia S.
Allahverdyan, Valeria V.
Tupertsev, Boris S.
Kostyukevich, Yuri I.
Asaturova, Anzhela M.
author_sort Sidorova, Tatiana M.
collection PubMed
description This paper investigates the antagonistic and plant growth promotion activity of the new indigenous bacteria antagonist strains P. chlororaphis BZR 245-F and Pseudomonas sp. BZR 523-2. It was found that on the 10th day of cultivation, BZR 245-F and BZR 523-2 exhibit an antagonistic activity against F. graminearum at the level of 59.6% and 15.1% and against F. oxysporum var. orthoceras at the level of 50.2% and 8.9%, respectively. Furthermore, the BZR 523-2 strain stimulated the growth of winter wheat seedlings more actively than the BZR 245-F strain. When processing seeds of winter wheat, Pseudomonas sp. BZR 523-2 indicators were higher than in the control: plant height increased by 10.3%, and root length increased by 18.6%. The complex characteristic properties of the metabolite were studied by bioautography and HPLC-MS. Bioautography proved the antifungal activity of phenazine nature compounds synthesized by the new bacterial strains. We qualitatively and quantitatively analyzed them by HPLC-MS analysis of the strain sample metabolites. In the BZR 245-F sample, we found more phenazine compounds of various types. Their total phenazine concentration in the BZR 245-F was more than five times greater than in the BZR 523-2. We defined crucial differences in the quantitative content of the other metabolites. Despite the difference between new indigenous bacteria antagonist strains, they can be used as producers of effective biopesticides for sustainable agriculture management.
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spelling pubmed-104596262023-08-27 New Pseudomonas Bacterial Strains: Biological Activity and Characteristic Properties of Metabolites Sidorova, Tatiana M. Tomashevich, Natalia S. Allahverdyan, Valeria V. Tupertsev, Boris S. Kostyukevich, Yuri I. Asaturova, Anzhela M. Microorganisms Brief Report This paper investigates the antagonistic and plant growth promotion activity of the new indigenous bacteria antagonist strains P. chlororaphis BZR 245-F and Pseudomonas sp. BZR 523-2. It was found that on the 10th day of cultivation, BZR 245-F and BZR 523-2 exhibit an antagonistic activity against F. graminearum at the level of 59.6% and 15.1% and against F. oxysporum var. orthoceras at the level of 50.2% and 8.9%, respectively. Furthermore, the BZR 523-2 strain stimulated the growth of winter wheat seedlings more actively than the BZR 245-F strain. When processing seeds of winter wheat, Pseudomonas sp. BZR 523-2 indicators were higher than in the control: plant height increased by 10.3%, and root length increased by 18.6%. The complex characteristic properties of the metabolite were studied by bioautography and HPLC-MS. Bioautography proved the antifungal activity of phenazine nature compounds synthesized by the new bacterial strains. We qualitatively and quantitatively analyzed them by HPLC-MS analysis of the strain sample metabolites. In the BZR 245-F sample, we found more phenazine compounds of various types. Their total phenazine concentration in the BZR 245-F was more than five times greater than in the BZR 523-2. We defined crucial differences in the quantitative content of the other metabolites. Despite the difference between new indigenous bacteria antagonist strains, they can be used as producers of effective biopesticides for sustainable agriculture management. MDPI 2023-07-29 /pmc/articles/PMC10459626/ /pubmed/37630503 http://dx.doi.org/10.3390/microorganisms11081943 Text en © 2023 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 Brief Report
Sidorova, Tatiana M.
Tomashevich, Natalia S.
Allahverdyan, Valeria V.
Tupertsev, Boris S.
Kostyukevich, Yuri I.
Asaturova, Anzhela M.
New Pseudomonas Bacterial Strains: Biological Activity and Characteristic Properties of Metabolites
title New Pseudomonas Bacterial Strains: Biological Activity and Characteristic Properties of Metabolites
title_full New Pseudomonas Bacterial Strains: Biological Activity and Characteristic Properties of Metabolites
title_fullStr New Pseudomonas Bacterial Strains: Biological Activity and Characteristic Properties of Metabolites
title_full_unstemmed New Pseudomonas Bacterial Strains: Biological Activity and Characteristic Properties of Metabolites
title_short New Pseudomonas Bacterial Strains: Biological Activity and Characteristic Properties of Metabolites
title_sort new pseudomonas bacterial strains: biological activity and characteristic properties of metabolites
topic Brief Report
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10459626/
https://www.ncbi.nlm.nih.gov/pubmed/37630503
http://dx.doi.org/10.3390/microorganisms11081943
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