Carbon and Nitrogen Sources Influence Tricalcium Phosphate Solubilization and Extracellular Phosphatase Activity by Talaromyces flavus

The aim of this work was to study phosphate (P) solubilization (and the processes involved in this event) by Talaromyces flavus (BAFC 3125) as a function of carbon and/or nitrogen sources. P solubilization was evaluated in NBRIP media supplemented with different carbon (glucose, sorbitol, sucrose, a...

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Autores principales: Della Mónica, Ivana Florencia, Godeas, Alicia Margarita, Scervino, José Martín
Publicado: 2016
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Acceso en línea:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03438651_v72_n1_p41_StefanoniRubio
http://hdl.handle.net/20.500.12110/paper_03438651_v72_n1_p41_StefanoniRubio
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spelling paper:paper_03438651_v72_n1_p41_StefanoniRubio2023-06-08T15:34:34Z Carbon and Nitrogen Sources Influence Tricalcium Phosphate Solubilization and Extracellular Phosphatase Activity by Talaromyces flavus Della Mónica, Ivana Florencia Godeas, Alicia Margarita Scervino, José Martín acid phosphatase alkaline phosphatase ammonium nitrate ammonium sulfate asparagine calcium phosphate carbon carboxylic acid enzyme fructose glucose nitrogen phosphatase sorbitol sucrose urea calcium phosphate carbon culture medium nitrogen phosphatase Article carbon source controlled study enzyme activity extracellular space fungus growth mineralization nonhuman priority journal solubilization Talaromyces flavus chemistry culture medium enzymology metabolism Talaromyces Calcium Phosphates Carbon Culture Media Nitrogen Phosphoric Monoester Hydrolases Talaromyces The aim of this work was to study phosphate (P) solubilization (and the processes involved in this event) by Talaromyces flavus (BAFC 3125) as a function of carbon and/or nitrogen sources. P solubilization was evaluated in NBRIP media supplemented with different carbon (glucose, sorbitol, sucrose, and fructose) and nitrogen (l-asparagine, urea, ammonium sulfate (AS), and ammonium nitrate (AN) combinations. The highest P solubilization was related to the highest organic acid production (especially gluconic acid) and pH drop for those treatments where glucose was present. Also P solubilization was higher when an inorganic nitrogen source was supplemented to the media when compared to an organic one. Although not being present an organic P source, phosphatase activity was observed. This shows that P mineralization and P solubilization can occur simultaneously, and that P mineralization is not induced by the enzyme substrate. The combination that showed highest P solubilization was for AN-glucose. The highest acid phosphatase activity was for AS-fructose, while for alkaline phosphatase were for AS-fructose and AN-fructose. Acid phosphatase activity was higher than alkaline. P solubilization and phosphatase activity (acid and alkaline) were influenced by the different carbon–nitrogen combinations. A better understanding of phosphate-solubilizing fungi could bring a better use of soil P. © 2015, Springer Science+Business Media New York. Fil:Della Mónica, I.F. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Godeas, A.M. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. Fil:Scervino, J.M. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. 2016 https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03438651_v72_n1_p41_StefanoniRubio http://hdl.handle.net/20.500.12110/paper_03438651_v72_n1_p41_StefanoniRubio
institution Universidad de Buenos Aires
institution_str I-28
repository_str R-134
collection Biblioteca Digital - Facultad de Ciencias Exactas y Naturales (UBA)
topic acid phosphatase
alkaline phosphatase
ammonium nitrate
ammonium sulfate
asparagine
calcium phosphate
carbon
carboxylic acid
enzyme
fructose
glucose
nitrogen
phosphatase
sorbitol
sucrose
urea
calcium phosphate
carbon
culture medium
nitrogen
phosphatase
Article
carbon source
controlled study
enzyme activity
extracellular space
fungus growth
mineralization
nonhuman
priority journal
solubilization
Talaromyces flavus
chemistry
culture medium
enzymology
metabolism
Talaromyces
Calcium Phosphates
Carbon
Culture Media
Nitrogen
Phosphoric Monoester Hydrolases
Talaromyces
spellingShingle acid phosphatase
alkaline phosphatase
ammonium nitrate
ammonium sulfate
asparagine
calcium phosphate
carbon
carboxylic acid
enzyme
fructose
glucose
nitrogen
phosphatase
sorbitol
sucrose
urea
calcium phosphate
carbon
culture medium
nitrogen
phosphatase
Article
carbon source
controlled study
enzyme activity
extracellular space
fungus growth
mineralization
nonhuman
priority journal
solubilization
Talaromyces flavus
chemistry
culture medium
enzymology
metabolism
Talaromyces
Calcium Phosphates
Carbon
Culture Media
Nitrogen
Phosphoric Monoester Hydrolases
Talaromyces
Della Mónica, Ivana Florencia
Godeas, Alicia Margarita
Scervino, José Martín
Carbon and Nitrogen Sources Influence Tricalcium Phosphate Solubilization and Extracellular Phosphatase Activity by Talaromyces flavus
topic_facet acid phosphatase
alkaline phosphatase
ammonium nitrate
ammonium sulfate
asparagine
calcium phosphate
carbon
carboxylic acid
enzyme
fructose
glucose
nitrogen
phosphatase
sorbitol
sucrose
urea
calcium phosphate
carbon
culture medium
nitrogen
phosphatase
Article
carbon source
controlled study
enzyme activity
extracellular space
fungus growth
mineralization
nonhuman
priority journal
solubilization
Talaromyces flavus
chemistry
culture medium
enzymology
metabolism
Talaromyces
Calcium Phosphates
Carbon
Culture Media
Nitrogen
Phosphoric Monoester Hydrolases
Talaromyces
description The aim of this work was to study phosphate (P) solubilization (and the processes involved in this event) by Talaromyces flavus (BAFC 3125) as a function of carbon and/or nitrogen sources. P solubilization was evaluated in NBRIP media supplemented with different carbon (glucose, sorbitol, sucrose, and fructose) and nitrogen (l-asparagine, urea, ammonium sulfate (AS), and ammonium nitrate (AN) combinations. The highest P solubilization was related to the highest organic acid production (especially gluconic acid) and pH drop for those treatments where glucose was present. Also P solubilization was higher when an inorganic nitrogen source was supplemented to the media when compared to an organic one. Although not being present an organic P source, phosphatase activity was observed. This shows that P mineralization and P solubilization can occur simultaneously, and that P mineralization is not induced by the enzyme substrate. The combination that showed highest P solubilization was for AN-glucose. The highest acid phosphatase activity was for AS-fructose, while for alkaline phosphatase were for AS-fructose and AN-fructose. Acid phosphatase activity was higher than alkaline. P solubilization and phosphatase activity (acid and alkaline) were influenced by the different carbon–nitrogen combinations. A better understanding of phosphate-solubilizing fungi could bring a better use of soil P. © 2015, Springer Science+Business Media New York.
author Della Mónica, Ivana Florencia
Godeas, Alicia Margarita
Scervino, José Martín
author_facet Della Mónica, Ivana Florencia
Godeas, Alicia Margarita
Scervino, José Martín
author_sort Della Mónica, Ivana Florencia
title Carbon and Nitrogen Sources Influence Tricalcium Phosphate Solubilization and Extracellular Phosphatase Activity by Talaromyces flavus
title_short Carbon and Nitrogen Sources Influence Tricalcium Phosphate Solubilization and Extracellular Phosphatase Activity by Talaromyces flavus
title_full Carbon and Nitrogen Sources Influence Tricalcium Phosphate Solubilization and Extracellular Phosphatase Activity by Talaromyces flavus
title_fullStr Carbon and Nitrogen Sources Influence Tricalcium Phosphate Solubilization and Extracellular Phosphatase Activity by Talaromyces flavus
title_full_unstemmed Carbon and Nitrogen Sources Influence Tricalcium Phosphate Solubilization and Extracellular Phosphatase Activity by Talaromyces flavus
title_sort carbon and nitrogen sources influence tricalcium phosphate solubilization and extracellular phosphatase activity by talaromyces flavus
publishDate 2016
url https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_03438651_v72_n1_p41_StefanoniRubio
http://hdl.handle.net/20.500.12110/paper_03438651_v72_n1_p41_StefanoniRubio
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AT godeasaliciamargarita carbonandnitrogensourcesinfluencetricalciumphosphatesolubilizationandextracellularphosphataseactivitybytalaromycesflavus
AT scervinojosemartin carbonandnitrogensourcesinfluencetricalciumphosphatesolubilizationandextracellularphosphataseactivitybytalaromycesflavus
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