Eutrophication and global change are increasing the occurrence of seasonal hypoxia (bottom-water oxygen concentration <63 μM) in coastal systems worldwide. In extreme cases, the bottom water can become completely anoxic, allowing sulfide to escape from the sediments and leading to the development of bottom-water euxinia. In seasonally hypoxic coastal basins, electrogenic sulfur oxidation by long, filamentous cable bacteria has been shown to stimulate the formation of an iron oxide layer near the sediment-water interface, while the bottom waters are oxygenated. Upon the development of bottom-water anoxia, this iron oxide “firewall” prevents the sedimentary release of sulfide. Iron oxides also act as an adsorption trap for elements such as...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Cable bacteria have recently been identified in various sedimentary marine settings worldwide. These...
Filamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free sulfide in...
Eutrophication and global change are increasing the occurrence of seasonal hypoxia (bottom-water oxy...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Phosphorus is an essential nutrient for life. The release of phosphorus from sediments is critical i...
Phosphorus is an essential nutrient for life. The release ofphosphorus from sediments is critical in...
Cable bacteria have recently been identified in various sedimentary marine settings worldwide. These...
Oxygen is a key element for life on earth. It can be taken up by ocean waters via air-sea gas exchan...
AbstractFilamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free su...
Electrogenic sulfur oxidation (e-SOx) is a newly discovered pathway of microbial sulfide oxidation, ...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Cable bacteria have recently been identified in various sedimentary marine settings worldwide. These...
Filamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free sulfide in...
Eutrophication and global change are increasing the occurrence of seasonal hypoxia (bottom-water oxy...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
Phosphorus is an essential nutrient for life. The release of phosphorus from sediments is critical i...
Phosphorus is an essential nutrient for life. The release ofphosphorus from sediments is critical in...
Cable bacteria have recently been identified in various sedimentary marine settings worldwide. These...
Oxygen is a key element for life on earth. It can be taken up by ocean waters via air-sea gas exchan...
AbstractFilamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free su...
Electrogenic sulfur oxidation (e-SOx) is a newly discovered pathway of microbial sulfide oxidation, ...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Cable bacteria have recently been identified in various sedimentary marine settings worldwide. These...
Filamentous sulfide oxidizing cable bacteria are capable of linking the oxidation of free sulfide in...