Cable bacteria (Deltaproteobacteria, Desulfobulbaceae) are long filamentous sulfur-oxidizing bacteria that generate long-distance electric currents running through the bacterial filaments. This way, they couple the oxidation of sulfide in deeper sediment layers to the reduction of oxygen or nitrate near the sediment-water interface. Cable bacteria are found in a wide range of aquatic sediments, but an accurate procedure to assess their abundance is lacking. We developed a qPCR approach that quantifies cable bacteria in relation to other bacteria within the family Desulfobulbaceae. Primer sets targeting cable bacteria, Desulfobulbaceae and the total bacterial community were applied in qPCR with DNA extracted from marine sediment incubations....
Multicellular, filamentous, sulfur-oxidizing bacteria, known as cable bacteria, were discovered atta...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Cable bacteria form centimeter-long, multicellular filaments than can consist of ten thousands of ce...
Cable bacteria (Deltaproteobacteria, Desulfobulbaceae) are long filamentous sulfur-oxidizing bacteri...
In marine sediments cathodic oxygen reduction at the sediment surface can be coupled to anodic sulfi...
In 2010, a completely novel type of microbial metabolism was discovered in marine sediments, which i...
Recently, a novel electrogenic type of sulphur oxidation was documented in marine sediments, whereby...
AbstractCable bacteria are long, multicellular filaments that can conduct electric currents over cen...
Cable bacteria are long, multicellular, filamentous bacteria that can conduct electrons over centime...
Cable bacteria are long, filamentoussulphur-oxidizing bacteria that induce long-distanceelectron tra...
Members in the family of Desulfobulbaceae may be influential in various anaerobic microbial communit...
Cable bacteria (CB) perform electrogenic sulphur oxidation (e-SOX) by spatially separating redox-hal...
Microorganisms spend their lives searching for chemical reactants that yield metabolically usable en...
Multicellular, filamentous, sulfur-oxidizing bacteria, known as cable bacteria, were discovered atta...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Cable bacteria form centimeter-long, multicellular filaments than can consist of ten thousands of ce...
Cable bacteria (Deltaproteobacteria, Desulfobulbaceae) are long filamentous sulfur-oxidizing bacteri...
In marine sediments cathodic oxygen reduction at the sediment surface can be coupled to anodic sulfi...
In 2010, a completely novel type of microbial metabolism was discovered in marine sediments, which i...
Recently, a novel electrogenic type of sulphur oxidation was documented in marine sediments, whereby...
AbstractCable bacteria are long, multicellular filaments that can conduct electric currents over cen...
Cable bacteria are long, multicellular, filamentous bacteria that can conduct electrons over centime...
Cable bacteria are long, filamentoussulphur-oxidizing bacteria that induce long-distanceelectron tra...
Members in the family of Desulfobulbaceae may be influential in various anaerobic microbial communit...
Cable bacteria (CB) perform electrogenic sulphur oxidation (e-SOX) by spatially separating redox-hal...
Microorganisms spend their lives searching for chemical reactants that yield metabolically usable en...
Multicellular, filamentous, sulfur-oxidizing bacteria, known as cable bacteria, were discovered atta...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Cable bacteria form centimeter-long, multicellular filaments than can consist of ten thousands of ce...