BackgroundDesulfovibrio vulgaris Hildenborough is a sulfate-reducing bacterium (SRB) that is intensively studied in the context of metal corrosion and heavy-metal bioremediation, and SRB populations are commonly observed in pipe and subsurface environments as surface-associated populations. In order to elucidate physiological changes associated with biofilm growth at both the transcript and protein level, transcriptomic and proteomic analyses were done on mature biofilm cells and compared to both batch and reactor planktonic populations. The biofilms were cultivated with lactate and sulfate in a continuously fed biofilm reactor, and compared to both batch and reactor planktonic populations.ResultsThe functional genomic analysis demonstrated...
Geobacter sulfurreducens is a dissimilatory metal-reducing bacterium capable of forming thick electr...
Bacterial biofilms are ubiquitous in natural environments and play an important role in many clinica...
Bacterial biofilm formation starts with single cells attaching to a surface, however, little is know...
Desulfovibrio vulgaris ATCC29579 is a sulfate- reducing bacterium (SRB) that is commonly used as a m...
Further insight into the metabolic status of cells within anode biofilms is essential for understand...
Further insight into the metabolic status of cells within anode biofilms is essential for understand...
Sulphate-reducing bacteria are important players in the global sulphur and carbon cycles, with consi...
Sulphate-reducing bacteria are important players in the global sulphur and carbon cycles, with consi...
2020 Spring.Includes bibliographical references.Microbial biotechnologies that utilize biofilms ofte...
Our findings demonstrated that D. vulgaris surface-adhered populations produce extracellular structu...
Biofilms of sulfate-reducing bacteria (SRB) are of particular interest as members of this group are ...
Geobacter sulfurreducens is a dissimilatory metal-reducing bacterium capable of forming thick electr...
Abstract Background Transcriptome analysis was applied to characterize the physiological activities ...
Geobacter sulfurreducens is a dissimilatory metal-reducing bacterium capable of forming thick electr...
Sulfate reducing bacteria (SRB) play an important role in global sulfur and carbon cycling through t...
Geobacter sulfurreducens is a dissimilatory metal-reducing bacterium capable of forming thick electr...
Bacterial biofilms are ubiquitous in natural environments and play an important role in many clinica...
Bacterial biofilm formation starts with single cells attaching to a surface, however, little is know...
Desulfovibrio vulgaris ATCC29579 is a sulfate- reducing bacterium (SRB) that is commonly used as a m...
Further insight into the metabolic status of cells within anode biofilms is essential for understand...
Further insight into the metabolic status of cells within anode biofilms is essential for understand...
Sulphate-reducing bacteria are important players in the global sulphur and carbon cycles, with consi...
Sulphate-reducing bacteria are important players in the global sulphur and carbon cycles, with consi...
2020 Spring.Includes bibliographical references.Microbial biotechnologies that utilize biofilms ofte...
Our findings demonstrated that D. vulgaris surface-adhered populations produce extracellular structu...
Biofilms of sulfate-reducing bacteria (SRB) are of particular interest as members of this group are ...
Geobacter sulfurreducens is a dissimilatory metal-reducing bacterium capable of forming thick electr...
Abstract Background Transcriptome analysis was applied to characterize the physiological activities ...
Geobacter sulfurreducens is a dissimilatory metal-reducing bacterium capable of forming thick electr...
Sulfate reducing bacteria (SRB) play an important role in global sulfur and carbon cycling through t...
Geobacter sulfurreducens is a dissimilatory metal-reducing bacterium capable of forming thick electr...
Bacterial biofilms are ubiquitous in natural environments and play an important role in many clinica...
Bacterial biofilm formation starts with single cells attaching to a surface, however, little is know...