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Species of bacterium
Geobacter metallireducens is a gram-negative metal-reducing proteobacterium. It is a strict anaerobe that oxidizes several short-chain fatty acids, alcohols
Geobacter_metallireducens
Species of bacterium
flagellum and type four pili, and is closely related to Geobacter metallireducens. Geobacter sulfurreducens is an anaerobic species of bacteria that comes
Geobacter_sulfurreducens
Genus of anaerobic bacteria found in soil
including wetlands, subsurface aquifers, soils, and aquatic sediment. Geobacter metallireducens was first isolated by Derek R Lovley in 1987 in sand sediment
Geobacter
Topics referred to by the same term
Metallireducens may refer to: Desulfitobacterium metallireducens, species of bacteria Geobacter metallireducens, species of bacteria Orenia metallireducens
Metallireducens
Species of bacterium
curved bacillus, most easily distinguished from its cousins Geobacter metallireducens and Geobacter sulfurreducens by its osmotolerance: it is able to withstand
Geobacter_anodireducens
Class of chemical compounds composed of iron and oxygen
Species of bacteria, including Shewanella oneidensis, Geobacter sulfurreducens and Geobacter metallireducens, use iron oxides as terminal electron acceptors
Iron_oxide
Chemical element with atomic number 92 (U)
0±1.6)×10−5. Some bacteria, such as Shewanella putrefaciens, Geobacter metallireducens and some strains of Burkholderia fungorum, can use uranium for
Uranium
Respiration using electron acceptors other than oxygen
microorganisms) Facultative anaerobes and obligate anaerobes U6+ U4+ Geobacter metallireducens, Shewanella oneidensis Denitrification (nitrate reduction) Facultative
Anaerobic_respiration
Species of bacterium
microorganism, for instance, G. metallireducens. This symbiotic relationship involves the degradation of large biomolecules by Geobacter microbes into smaller biomolecules
Geotalea_toluenoxydans
Species of archaea
(16 May 2014). "Direct Interspecies Electron Transfer between Geobacter metallireducens and Methanosarcina barkeri". Applied and Environmental Microbiology
Methanosarcina_barkeri
Economically recoverable concentrations of uranium within the Earth's crust
significantly influenced by metal-reducing microorganisms such as Geobacter metallireducens, Geobacter uraniireducens or Shewanella oneidensis. These species are
Uranium_ore
Iron–sulfur proteins
et al. (February 2019). "One-megadalton metalloenzyme complex in Geobacter metallireducens involved in benzene ring reduction beyond the biological redox
Ferredoxin
Organisms capable of living in extreme environments
collect and dispose of. Some examples are Shewanella putrefaciens, Geobacter metallireducens and some strains of Burkholderia fungorum. Radiotrophic fungi
Extremophile
Species of bacterium
known pathogenic species of Burkholderia. Shewanella putrefaciens Geobacter metallireducens Sawana, A; Adeolu, M.; Gupta, R. S. (2014). "Molecular signatures
Paraburkholderia_fungorum
Species of bacterium
V(V)→V(IV), Tc(VII)→Tc(V/IV) and U(VI)→U(IV).[citation needed] Geobacter metallireducens Paraburkholderia fungorum Fredrickson, James K.; Zachara, John
Shewanella_putrefaciens
Biochemical pathways used by microbes to satisfy energy needs
Shewanella putrefaciens and Geobacter metallireducens. Since some ferric iron-reducing bacteria (e.g. G. metallireducens) can use toxic hydrocarbons such
Microbial_metabolism
Bacteria deriving energy from dissolved iron
Fe(II), or even perform dissimilatory Fe(III) reduction as the Geobacter metallireducens. The dependence of photoferrotrophics on light as a crucial resource
Iron-oxidizing_bacteria
Microorganisms able to reduce elemental sulfur to hydrogen sulfide
phylum Thermodesulfobacteriota (Desulfuromonas, Pelobacter, Desulfurella, Geobacter), the class Gammaproteobacteria, and the phylum Campylobacterota according
Sulfur-reducing_bacteria
Method of removing pollutants
bacteria were recently completed for the iron-reducing species Geobacter metallireducens (accession nr. NC_007517) and the perchlorate-reducing Dechloromonas
Microbial_biodegradation
Biodecontamination of sites affected by radioactivity
made by S. putrefaciens, G. sulfurreducens, D. desulfuricans, Geobacter metallireducens and Escherichia coli, on the other hand, requires the presence
Bioremediation of radioactive waste
Bioremediation_of_radioactive_waste
doi:10.1038/nbt959. PMID 15077118. Methé BA, et al. (2003). "Genome of Geobacter sulfurreducens: metal reduction in subsurface environments". Science.
List of sequenced bacterial genomes
List_of_sequenced_bacterial_genomes
IR-1, Clostridium butyricum, Desulfuromonas acetoxidans, Geobacter metallireducens, Geobacter sulfurreducens, Rhodoferax ferrireducens, Aeromonas hydrophilia
Exoelectrogen
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