Geobacteraceae dominate many iron-reducing subsurface environments and are associated with biodegradation of organic pollutants. In order to enhance the understanding of the environmental role played by Geobacteraceae, the physiology of Geobacter metallireducens was investigated at the low growth rates found in its subsurface habitat. Cultivation in retentostats (a continuous culturing device with biomass retention) under electron acceptor and electron donor limitation enabled growth rates as low as 0.0008 h-1. The maximum growth yield was between 0.05 and 0.09 C-mol biomass per C-mol acetate and comparable to that observed in batch experiments. Maintenance energy demand is among the lowest reported for heterotrophic bacteria, under both ac...
A system for growing Geobacter sulfurreducens under anaerobic conditions in chemostats was developed...
The advent of rapid complete genome sequencing, and the potential to capture this information in gen...
Limitations on the availability of Fe(III) as an electron acceptor are thought to play an important ...
Geobacteraceae dominate many iron-reducing subsurface environments and are associated with biodegrad...
The bacterial family of Geobacteraceae is comprised of many members including both Geobacter and Pel...
BACKGROUND: Geobacter species in a phylogenetic cluster known as subsurface clade 1 are often the p...
The strict anaerobe Geobacter metallireducens was cultivated in retentostats under acetate and aceta...
A system for growing Geobacter sulfurreducens under anaerobic conditions in chemostats was developed...
Molecular tools that can provide an estimate of the in situ growth rate of Geobacter species could i...
For microorganisms that play an important role in bioremediation, the adaptation to swift changes in...
Background: Geobacter metallireducens was the first organism that can be grown in pure culture to co...
There are distinct differences in the physiology of Geobacter species available in pure culture. The...
AbstractThe strict anaerobe Geobacter metallireducens was cultivated in retentostats under acetate a...
Engineered stimulation of Fe(III) has been proposed as a strategy to enhance the immobilization of r...
Abstract Background Geobacter metallireducens was the...
A system for growing Geobacter sulfurreducens under anaerobic conditions in chemostats was developed...
The advent of rapid complete genome sequencing, and the potential to capture this information in gen...
Limitations on the availability of Fe(III) as an electron acceptor are thought to play an important ...
Geobacteraceae dominate many iron-reducing subsurface environments and are associated with biodegrad...
The bacterial family of Geobacteraceae is comprised of many members including both Geobacter and Pel...
BACKGROUND: Geobacter species in a phylogenetic cluster known as subsurface clade 1 are often the p...
The strict anaerobe Geobacter metallireducens was cultivated in retentostats under acetate and aceta...
A system for growing Geobacter sulfurreducens under anaerobic conditions in chemostats was developed...
Molecular tools that can provide an estimate of the in situ growth rate of Geobacter species could i...
For microorganisms that play an important role in bioremediation, the adaptation to swift changes in...
Background: Geobacter metallireducens was the first organism that can be grown in pure culture to co...
There are distinct differences in the physiology of Geobacter species available in pure culture. The...
AbstractThe strict anaerobe Geobacter metallireducens was cultivated in retentostats under acetate a...
Engineered stimulation of Fe(III) has been proposed as a strategy to enhance the immobilization of r...
Abstract Background Geobacter metallireducens was the...
A system for growing Geobacter sulfurreducens under anaerobic conditions in chemostats was developed...
The advent of rapid complete genome sequencing, and the potential to capture this information in gen...
Limitations on the availability of Fe(III) as an electron acceptor are thought to play an important ...