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Hydrogen production properties of Rhodobacter capsulatus with genetically modified redox balancing pathways

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논문

Hydrogen production properties of Rhodobacter capsulatus with genetically modified redox balancing pathways

학술지

International journal of hydrogen energy

저자명

Ö ztü rk, Yavuz; Gö kç e, Abdulmecit; Peksel, Begü m; Gü rgan, Muazzez; Ö zgü r, Ebru; Gü ndü z, Ufuk; Eroğ lu, İ nci; Yü cel, Meral

초록

<P><B>Abstract</B></P> <P> <I>Rhodobacter capsulatus</I> produces molecular hydrogen under the photoheterotrophic growth condition with reduced carbon sources (organic acids). Under this condition, ubiquinol pool is over reduced and excess reducing equivalents are primarily consumed via the reduction of CO<SUB>2</SUB> through the Calvin&ndash;Benson&ndash;Bassham (CBB) pathway, the dimethylsulfoxide reductase (DMSOR) system or by the reduction of protons into hydrogen gas with the use of nitrogenase to maintain a balanced intracellular oxidation-reduction potential (redox balance). In order to investigate the effect of redox balancing pathways on nitrogenase-dependent hydrogen production, CO<SUB>2</SUB> fixation was blocked by inactivating the phosphoribulokinase (PRK) of CBB pathway in wild type (MT1131), uptake-hydrogenase deficient strain (YO3), and cyt <I>cbb</I> <SUB>3</SUB> oxidase and uptake-hydrogenase deficient double mutant (YO4) strains. The hydrogen production properties of newly generated strains deficient in the CBB pathway were analyzed and compared with wild type strains. The obtained data indicated that, the total hydrogen production was increased slightly in CBB deficient mutant of YO3 and YO4 (4.7% and 12.5% respectively). Moreover, the maximum hydrogen production rate was increased by 13.3% and 12.7% for CBB deficient mutant of MT1131 and YO3 respectively. It was also observed that under the photoheterotrophic growth condition with ammonium as a nitrogen source, PRK deficient strains gave photoheterotrophically competent ammonium insensitive revertants.</P> <P><B>Highlights</B></P> <P>&#9658; CBB pathway provides redox balancing during photoheterotrophic growth. &#9658; Relationship between redox balancing systems and hydrogen production in <I>R. capsulatus</I>. &#9658; CBB pathway of <I>R. capsulatus</I> strains was inactivated by deleting phosphoribulokinase. &#9658; Total hydrogen production was increased slightly in some CBB deficient mutants.</P>

발행연도

2012

발행기관

Elsevier

ISSN

0360-3199

ISSN

1879-3487

37

2

페이지

pp.2014-2020

주제어

Rhodobacter capsulatus; Biological hydrogen production; Redox balance; Electron transfer chain; CO2 fixation; Nitrogen fixation

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1 2023-12-11

논문; 2012-01-01

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