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Anaerobic benzene oxidation coupled to the reduction of Fe(III) was studied in Ferroglobus placidus in order to learn more about how such a stable molecule could be metabolized under strict anaerobic conditions. F. placidus conserved energy to support growth at 85°C in a medium with benzene provide...
ORGANISM(S): Ferroglobus placidus DSM 10642 
Anaerobic benzene oxidation coupled to the reduction of Fe(III) was studied in Ferroglobus placidus in order to learn more about how such a stable molecule could be metabolized under strict anaerobic conditions. F. placidus conserved energy to support growth at 85°C in a medium with benzene provide...
ORGANISM(S): Ferroglobus placidus DSM 10642 
Anaerobic benzene oxidation coupled to the reduction of Fe(III) was studied in Ferroglobus placidus in order to learn more about how such a stable molecule could be metabolized under strict anaerobic conditions. F. placidus conserved energy to support growth at 85°C in a medium with benzene provide...
ORGANISM(S): Ferroglobus placidus DSM 10642 
Anaerobic benzene oxidation coupled to the reduction of Fe(III) was studied in Ferroglobus placidus in order to learn more about how such a stable molecule could be metabolized under strict anaerobic conditions. F. placidus conserved energy to support growth at 85°C in a medium with benzene provide...
ORGANISM(S): Ferroglobus placidus DSM 10642 
Risso2009 - Genome-scale metabolic network of Rhodoferax ferrireducens (iCR744) This model is described in the article: Genome-scale comparison and constraint-based metabolic reconstruction of the facultative anaerobic Fe(III)-reducer Rhodoferax ferrireducens. Risso C, Sun J, ...
2015-07-30 | MODEL1507180024 | BioModels
This SuperSeries is composed of the following subset Series: GSE28549: Anaerobic Oxidation of Benzene by the Hyperthermophilic Archaeon Ferroglobus placidus (Phenol vs. Benzoate) GSE30798: Anaerobic Oxidation of Benzene by the Hyperthermophilic Archaeon Ferroglobus placidus (Benzene vs. Acetate) GSE...
ORGANISM(S): Ferroglobus placidus DSM 10642 
Insight into the mechanisms for the anaerobic metabolism of aromatic compounds by the hyperthermophilic archaeon Ferroglobus placidus is expected to improve understanding of the degradation of aromatics in hot (> 80 °C) environments and to identify enzymes that might have biotechnological applicatio...
ORGANISM(S): Ferroglobus placidus DSM 10642 
Investigation of whole genome gene expression level changes in Ferroglobus placidus grown on phenol versus acetate as electron donors, with ferric citrate as electron acceptor. A six chip study using total RNA recovered from three separate cultures of Ferroglobus placidus DSM 10642 grown with 0.5 mM...
ORGANISM(S): Ferroglobus placidus DSM 10642 
Comparison of acetate- to phenylacetate-grown F. placidus cells to identify genes that are potentially involved in anaerobic phenylacetate degradation by this unique hypertherophilic archaeon. A four chip study using total RNA recovered from two separate cultures of Ferroglobus placidus DSM 10642 gr...
ORGANISM(S): Ferroglobus placidus 
Comparison of acetate- to butyrate-grown F. placidus cells to identify genes that are potentially involved in fatty acid degradation by this unique hypertherophilic archaeon. A four chip study using total RNA recovered from three separate cultures of Ferroglobus placidus DSM 10642 grown with 1 mM bu...
ORGANISM(S): Ferroglobus placidus 
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