Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacteria can limit sulfide release by promoting iron oxide formation in sediments. Currently, it is unknown how widespread this phenomenon is. Here, we assess the abundance, activity, and biogeochemical impact of cable bacteria at 12 Baltic Sea sites. Cable bacteria were mostly absent in sediments overlain by anoxic and sulfidic bottom waters, emphasizing their dependence on oxygen or nitrate as electron acceptors. At sites that were temporarily reoxygenated, cable bacterial densities were low. At seasonally hypoxic sites, cable bacterial densities correlated linearly with the supply of sulfide. The highest densities were observed at Gulf of Finlan...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Cable bacteria induce long-distance electron transport in the seafloor and can exert a powerful cont...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Cable bacteria induce long-distance electron transport in the seafloor and can exert a powerful cont...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...