Desulfovibrio vulgaris is a metabolically flexible micro-organism. It can use sulfate as an electron acceptor to catabolize a variety of substrates, or in the absence of sulfate can utilize organic acids and alcohols by forming a syntrophic association with a hydrogen-scavenging partner to relieve inhibition by hydrogen. These alternative metabolic types increase the chance of survival for D. vulgaris in environments where one of the potential external electron acceptors becomes depleted. In this work, whole-genome D. vulgaris microarrays were used to determine relative transcript levels as D. vulgaris shifted its metabolism from syntrophic in a lactate-oxidizing dual-culture with Methanosarcina barkeri to a sulfidogenic metabolism. Syntrop...
Energy conservation via the pathway of dissimilatory sulfate reduction is present in a diverse group...
The Environmental Stress Pathway Project (ESPP) focuses on the systems-biology and environmental act...
Comparison of the proteomes of the wild-type and Fe-only hydrogenase mutant strains of Desulfovibrio...
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...
Progress in the genetic manipulation of the Desulfovibrio strains has provided an opportunity to exp...
In the absence of electron acceptors, many Desulfovibrio species grow on non-fermentable substrates ...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
The mineralization of organic matter in anoxic environments relies on the cooperative activities of ...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
Desulfovibrio gigas is a model organism of sulfate-reducing bacteria of which energy metabolism and ...
Sulfate reducing bacteria (SRB) play an important role in global sulfur and carbon cycling through t...
Energy conservation by the pathway of dissimilatory sulfate reduction is present in a diverse group ...
Syntrophobacter fumaroxidans is a sulfate-reducing bacterium able to grow on propionate axenically o...
Energy conservation via the pathway of dissimilatory sulfate reduction is present in a diverse group...
The Environmental Stress Pathway Project (ESPP) focuses on the systems-biology and environmental act...
Comparison of the proteomes of the wild-type and Fe-only hydrogenase mutant strains of Desulfovibrio...
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...
Progress in the genetic manipulation of the Desulfovibrio strains has provided an opportunity to exp...
In the absence of electron acceptors, many Desulfovibrio species grow on non-fermentable substrates ...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
The mineralization of organic matter in anoxic environments relies on the cooperative activities of ...
Interspecies hydrogen transfer between organisms producing and consuming hydrogen promotes the decom...
Desulfovibrio gigas is a model organism of sulfate-reducing bacteria of which energy metabolism and ...
Sulfate reducing bacteria (SRB) play an important role in global sulfur and carbon cycling through t...
Energy conservation by the pathway of dissimilatory sulfate reduction is present in a diverse group ...
Syntrophobacter fumaroxidans is a sulfate-reducing bacterium able to grow on propionate axenically o...
Energy conservation via the pathway of dissimilatory sulfate reduction is present in a diverse group...
The Environmental Stress Pathway Project (ESPP) focuses on the systems-biology and environmental act...
Comparison of the proteomes of the wild-type and Fe-only hydrogenase mutant strains of Desulfovibrio...