Growth of Geobacter sulfurreducens with Acetate in Syntrophic Cooperation with Hydrogen-Oxidizing Anaerobic Partners
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Summary
Yield data, measurement of hydrogen production rates, and calculation of the diffusive hydrogen flux indicated that electron transfer in these cocultures may not proceed exclusively via interspecies hydrogen transfer but may also proceed through an alternative carrier system with higher redox potential.
- Type
- article
- Published
- 1998-06-01
- Cited by
- 210
- References
- 28
- Access
- Open access
- OpenAlex
- https://openalex.org/W2123112326
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:9251681
Keywords
Geobacter sulfurreducens, Electron acceptor, Chemistry, Electron donor, Geobacter
References
- Microbiology and Biochemistry of Strict Anaerobes Involved in Interspecies Hydrogen Transfer
- A practical handbook of seawater analysis
- Biology of anaerobic microorganisms
- Isolation and Characterization of a Thermophilic Bacterium Which Oxidizes Acetate in Syntrophic Association with a Methanogen and Which Grows Acetogenically on H2-CO2
- Geobacter sulfurreducens sp. nov., a hydrogen- and acetate-oxidizing dissimilatory metal-reducing microorganism
- Bestimmung der Diffusions-Koeffizienten von H2, O2, N2, und He in Wasser und Blutserum bei konstant gehaltener Konvektion
- Data for Biochemical Research
- Deep subsurface microbial processes
- Respiration-linked proton translocation coupled to anaerobic reduction of manganese(IV) and iron(III) in Shewanella putrefaciens MR-1
- Energy conservation in chemotrophic anaerobic bacteria
- The preferred electron acceptor of Desulfovibrio desulfuricans CSN
- A Periplasmic and Extracellular c-Type Cytochrome ofGeobacter sulfurreducens Acts as a Ferric Iron Reductase and as an Electron Carrier to Other Acceptors or to Partner Bacteria
- Clostridium ultunense sp. nov., a mesophilic bacterium oxidizing acetate in syntrophic association with a hydrogenotrophic methanogenic bacterium.
- Dissimilatory metal reduction.
- Energetics of syntrophic cooperation in methanogenic degradation
- Iron and manganese in anaerobic respiration: environmental significance, physiology, and regulation.
- Microbial Methane Production—Theoretical Aspects
- Diversity, Ecology, and Isolation of Acetogenic Bacteria
- Microbial Reduction of Iron, Manganese, and other Metals
- A practical hand-book of seawater analysis
Cited by
- Electricity Production by Geobacter sulfurreducens Attached to Electrodes
- The Hydrogenase Chip: a tiling oligonucleotide DNA microarray technique for characterizing hydrogen-producing and -consuming microbes in microbial communities
- Geobacter: the microbe electric's physiology, ecology, and practical applications.
- Effects of Different Electron Donor Feeding Patterns on TCE Reductive Dechlorination Performance
- Modelling the ecology and evolution of microorganisms
- Metabolic Modeling of Spatial Heterogeneity of Biofilms in Microbial Fuel Cells
- Mechanisms for Extracellular Electron Exchange by Geobacter Species
- Energy conservation in syntrophic acetate oxidation
- Evaluation of microbial electrolysis cells in the treatment of domestic wastewate
- Characteristics of microbial communities in biomethanization processes
- Structure and function of the microbial community in an in situ reactor to treat an acidic mine pit lake.
- Analysis of trace hydrogen metabolism.
- Enhanced biohydrogen production and substrate utilization by co-culture fermentation with reduced extracellular electron shuttles
- Microbial life in glacial ice and implications for a cold origin of life.
- Effect of temperature change on the composition of the bacterial and archaeal community potentially involved in the turnover of acetate and propionate in methanogenic rice field soil.
- Geobacter sp. SD-1 with enhanced electrochemical activity in high-salt concentration solutions.
- Simultaneous removal of nitrate and arsenic from drinking water sources utilizing a fixed-bed bioreactor system.
- Uranium bioreduction rates across scales: biogeochemical hot moments and hot spots during a biostimulation experiment at Rifle, Colorado.
- Characterization and modelling of interspecies electron transfer mechanisms and microbial community dynamics of a syntrophic association
- Phototrophic consortia: model systems for symbiotic interrelations between prokaryotes
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