Recently, a novel mode of sulphur oxidation was described in marine sediments, in which sulphide oxidation in deeper anoxic layers was electrically coupled to oxygen reduction at the sediment surface. Subsequent experimental evidence identified that long filamentous bacteria belonging to the family Desulfobulbaceae likely mediated the electron transport across the centimetre-scale distances. Such long-range electron transfer challenges some long-held views in microbial ecology and could have profound implications for sulphur cycling in marine sediments. But, so far, this process of electrogenic sulphur oxidation has been documented only in laboratory experiments and so its imprint on the seafloor remains unknown. Here we show that the geoch...
Filamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free sulfide in...
Electrogenic sulfur oxidation (e-SOx) is a newly discovered pathway of microbial sulfide oxidation, ...
Cable bacteria are long, filamentoussulphur-oxidizing bacteria that induce long-distanceelectron tra...
Recently, a novel mode of sulphur oxidation was described in marine sediments, in which sulphide oxi...
Recently, a novel mode of sulphur oxidation was described in marine sediments, in which sulphide oxi...
Recently, long filamentous bacteria have been reported conducting electrons over centimetre distance...
Recently, long filamentous bacteria have been reported conducting electrons over centimetre distance...
Recently, long filamentous bacteria have been reported conducting electrons over centimetre distance...
Recently, long filamentous bacteria have been reported conducting electrons over centimetre distance...
Recently, a novel electrogenic type of sulphur oxidation was documented in marine sediments, whereby...
Recently, a novel electrogenic type of sulphur oxidation was documented in marine sediments, whereby...
Recently, a novel “electrogenic” type of sulfur oxidation has been documented in marine sediments, w...
AbstractRecently, a novel “electrogenic” type of sulfur oxidation has been documented in marine sedi...
AbstractFilamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free su...
AbstractFilamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free su...
Filamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free sulfide in...
Electrogenic sulfur oxidation (e-SOx) is a newly discovered pathway of microbial sulfide oxidation, ...
Cable bacteria are long, filamentoussulphur-oxidizing bacteria that induce long-distanceelectron tra...
Recently, a novel mode of sulphur oxidation was described in marine sediments, in which sulphide oxi...
Recently, a novel mode of sulphur oxidation was described in marine sediments, in which sulphide oxi...
Recently, long filamentous bacteria have been reported conducting electrons over centimetre distance...
Recently, long filamentous bacteria have been reported conducting electrons over centimetre distance...
Recently, long filamentous bacteria have been reported conducting electrons over centimetre distance...
Recently, long filamentous bacteria have been reported conducting electrons over centimetre distance...
Recently, a novel electrogenic type of sulphur oxidation was documented in marine sediments, whereby...
Recently, a novel electrogenic type of sulphur oxidation was documented in marine sediments, whereby...
Recently, a novel “electrogenic” type of sulfur oxidation has been documented in marine sediments, w...
AbstractRecently, a novel “electrogenic” type of sulfur oxidation has been documented in marine sedi...
AbstractFilamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free su...
AbstractFilamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free su...
Filamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free sulfide in...
Electrogenic sulfur oxidation (e-SOx) is a newly discovered pathway of microbial sulfide oxidation, ...
Cable bacteria are long, filamentoussulphur-oxidizing bacteria that induce long-distanceelectron tra...