REGULATION OF THE STRAIN Citrobacter freundii Ml-31.1/1 INTERACTION WITH IRON COMPOUNDS

The aim of the study was regulation of metabolism of Citrobacter freundii Ml-31.1/1 on the basis of thermodynamic calculations. The essence of metabolism regulation was in ability to perform two opposite processes, namely mobilization and immobilization of iron compounds, depending on the culture c...

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Main Authors: Govorukha V.M., Tashyrev O.B.
Format: Article
Language:English
Published: National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine. 2015-10-01
Series:Biotechnologia Acta
Subjects:
Online Access:http://biotechnology.kiev.ua/images/stories/5_2015/govorukha.pdf
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spelling doaj-d9a49b0775874504a18673baf85b09ff2020-11-24T21:02:57ZengNational Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.Biotechnologia Acta2410-77512410-776X2015-10-018510311110.15407/biotech8.05.103REGULATION OF THE STRAIN Citrobacter freundii Ml-31.1/1 INTERACTION WITH IRON COMPOUNDSGovorukha V.M.0Tashyrev O.B.1Zabolotny Institute of Microbiology and Virology of the National Academy of Sciences of UkraineZabolotny Institute of Microbiology and Virology of the National Academy of Sciences of UkraineThe aim of the study was regulation of metabolism of Citrobacter freundii Ml-31.1/1 on the basis of thermodynamic calculations. The essence of metabolism regulation was in ability to perform two opposite processes, namely mobilization and immobilization of iron compounds, depending on the culture conditions by single strain C. freundii Ml-31.1/1. The following methods were used: potentiometric measuring of pH and Eh values, colorimetric determination of microbial biomass increase and changes of iron compounds concentration, gas chromatography. The possibility of theoretically grounded regulation of iron transformation pathways was experimentally confirmed. Single culture (C. freundii Ml-31.1/1) provided both immobilization and mobilization of iron compounds due to specific conditions for microbial growth in nutrient medium.. Obtained regularities are the basis for assessing the role of microorganisms in iron biogeochemical cycles. This data could be used as a basis of effective biotechnologies of iron extraction from depleted deposits and water purification from iron compounds.http://biotechnology.kiev.ua/images/stories/5_2015/govorukha.pdfthermodynamic prognosisregulation of microbial interaction with ironmobilizationimmobilizationiron compoundsiron biogeochemical cyclesenvironment protection biotechnologies
collection DOAJ
language English
format Article
sources DOAJ
author Govorukha V.M.
Tashyrev O.B.
spellingShingle Govorukha V.M.
Tashyrev O.B.
REGULATION OF THE STRAIN Citrobacter freundii Ml-31.1/1 INTERACTION WITH IRON COMPOUNDS
Biotechnologia Acta
thermodynamic prognosis
regulation of microbial interaction with iron
mobilization
immobilization
iron compounds
iron biogeochemical cycles
environment protection biotechnologies
author_facet Govorukha V.M.
Tashyrev O.B.
author_sort Govorukha V.M.
title REGULATION OF THE STRAIN Citrobacter freundii Ml-31.1/1 INTERACTION WITH IRON COMPOUNDS
title_short REGULATION OF THE STRAIN Citrobacter freundii Ml-31.1/1 INTERACTION WITH IRON COMPOUNDS
title_full REGULATION OF THE STRAIN Citrobacter freundii Ml-31.1/1 INTERACTION WITH IRON COMPOUNDS
title_fullStr REGULATION OF THE STRAIN Citrobacter freundii Ml-31.1/1 INTERACTION WITH IRON COMPOUNDS
title_full_unstemmed REGULATION OF THE STRAIN Citrobacter freundii Ml-31.1/1 INTERACTION WITH IRON COMPOUNDS
title_sort regulation of the strain citrobacter freundii ml-31.1/1 interaction with iron compounds
publisher National Academy of Sciences of Ukraine and Palladin Institute of Biochemistry of the National Academy of Sciences of Ukraine.
series Biotechnologia Acta
issn 2410-7751
2410-776X
publishDate 2015-10-01
description The aim of the study was regulation of metabolism of Citrobacter freundii Ml-31.1/1 on the basis of thermodynamic calculations. The essence of metabolism regulation was in ability to perform two opposite processes, namely mobilization and immobilization of iron compounds, depending on the culture conditions by single strain C. freundii Ml-31.1/1. The following methods were used: potentiometric measuring of pH and Eh values, colorimetric determination of microbial biomass increase and changes of iron compounds concentration, gas chromatography. The possibility of theoretically grounded regulation of iron transformation pathways was experimentally confirmed. Single culture (C. freundii Ml-31.1/1) provided both immobilization and mobilization of iron compounds due to specific conditions for microbial growth in nutrient medium.. Obtained regularities are the basis for assessing the role of microorganisms in iron biogeochemical cycles. This data could be used as a basis of effective biotechnologies of iron extraction from depleted deposits and water purification from iron compounds.
topic thermodynamic prognosis
regulation of microbial interaction with iron
mobilization
immobilization
iron compounds
iron biogeochemical cycles
environment protection biotechnologies
url http://biotechnology.kiev.ua/images/stories/5_2015/govorukha.pdf
work_keys_str_mv AT govorukhavm regulationofthestraincitrobacterfreundiiml3111interactionwithironcompounds
AT tashyrevob regulationofthestraincitrobacterfreundiiml3111interactionwithironcompounds
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