Abstract Background Geobacter metallireducens was the first organism that can be grown in pure culture to completely oxidize organic compounds with Fe(III) oxide serving as electron acceptor. Geobacter species, including G. sulfurreducens and G. metallireducens, are used for bioremediation and electricity generation from waste organic matter and renewable biomass. The constraint-based modeling approach enables the development of genome-scale in silico models that can predict the behavior of complex biological systems and their responses to the environments. Such a modeling approach was applied to provide physiological and ecological insights on the metabolism of G. metallireducens. ...
The advent of rapid complete genome sequencing, and the potential to capture this information in gen...
BACKGROUND: Geobacter species in a phylogenetic cluster known as subsurface clade 1 are often the p...
The genome sequence of Geobacter metallireducens is the second to be completed from the metal-respir...
Abstract Background Geobacter metallireducens was the...
Background: Geobacter metallireducens was the first organism that can be grown in pure culture to co...
Geobacter sulfurreducens is a well-studied representative of the Geobacteraceae, which play a critic...
BACKGROUND: Pelobacter species are commonly found in a number of subsurface environments, and are u...
Geobacter species are of great interest for environmental and biotechnology applications as they can...
BACKGROUND: The genome sequence of Geobacter metallireducens is the second to be completed from the ...
Background: The genome sequence of Geobacter metallireducens is the second to be completed from the ...
There is a wide diversity of unexplored metabolism encoded in the genomes of microorganisms that hav...
Abstract Background Geobacter sulfurreducens is a mem...
<div><p><i>Geobacter</i> species are of great interest for environmental and biotechnology applicati...
Geobacteraceae are a family of metal reducing bacteria with important applications in bioremediation...
Geobacteraceae dominate many iron-reducing subsurface environments and are associated with biodegrad...
The advent of rapid complete genome sequencing, and the potential to capture this information in gen...
BACKGROUND: Geobacter species in a phylogenetic cluster known as subsurface clade 1 are often the p...
The genome sequence of Geobacter metallireducens is the second to be completed from the metal-respir...
Abstract Background Geobacter metallireducens was the...
Background: Geobacter metallireducens was the first organism that can be grown in pure culture to co...
Geobacter sulfurreducens is a well-studied representative of the Geobacteraceae, which play a critic...
BACKGROUND: Pelobacter species are commonly found in a number of subsurface environments, and are u...
Geobacter species are of great interest for environmental and biotechnology applications as they can...
BACKGROUND: The genome sequence of Geobacter metallireducens is the second to be completed from the ...
Background: The genome sequence of Geobacter metallireducens is the second to be completed from the ...
There is a wide diversity of unexplored metabolism encoded in the genomes of microorganisms that hav...
Abstract Background Geobacter sulfurreducens is a mem...
<div><p><i>Geobacter</i> species are of great interest for environmental and biotechnology applicati...
Geobacteraceae are a family of metal reducing bacteria with important applications in bioremediation...
Geobacteraceae dominate many iron-reducing subsurface environments and are associated with biodegrad...
The advent of rapid complete genome sequencing, and the potential to capture this information in gen...
BACKGROUND: Geobacter species in a phylogenetic cluster known as subsurface clade 1 are often the p...
The genome sequence of Geobacter metallireducens is the second to be completed from the metal-respir...