Fish farming in sea cages is a growing component of the global food industry. A prominent ecosystem impact of this industry is the increase in the downward flux of organic matter, which stimulates anaerobic mineralization and sulfide production in underlying sediments. When free sulfide is released to the overlying water, this can have a toxic effect on local marine ecosystems. The microbially-mediated process of sulfide oxidation has the potential to be an important natural mitigation and prevention strategy that has not been studied in fish farm sediments. We examined the microbial community composition (DNA-based 16S rRNA gene) underneath two active fish farms on the Southwestern coast of Iceland and performed laboratory incubations of r...
The overall objective of the research presented here was to combine multiple geochemical parameters ...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
This research presents a comprehensive study of bacterial assemblages within the water column and in...
Fish farming in sea cages is a growing component of the global food industry. A prominent ecosystem ...
A combination of biogeochemical analyses and molecular microbiological analyses were conducted to as...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Cable bacteria induce long-distance electron transport in the seafloor and can exert a powerful cont...
Changes in bacterial assemblages along an environmental gradient determined by the distance to aquac...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
The risk of hydrogen sulfide (H2S) production can be a challenge in marine land-based recirculating ...
Natural and human impacts on geochemical redox cycling and biodiversity in estuaries have long been ...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Recently, a novel electrogenic type of sulphur oxidation was documented in marine sediments, whereby...
The oxidation of hydrogen sulfide is essential to sulfur cycling in marine habitats. However, the ro...
Microbial dissimilatory sulfate reduction to sulfide is a predominant terminal pathway of organic ma...
The overall objective of the research presented here was to combine multiple geochemical parameters ...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
This research presents a comprehensive study of bacterial assemblages within the water column and in...
Fish farming in sea cages is a growing component of the global food industry. A prominent ecosystem ...
A combination of biogeochemical analyses and molecular microbiological analyses were conducted to as...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
Cable bacteria induce long-distance electron transport in the seafloor and can exert a powerful cont...
Changes in bacterial assemblages along an environmental gradient determined by the distance to aquac...
Oxygen depletion in coastal waters may lead to release of toxic sulfide from sediments. Cable bacter...
The risk of hydrogen sulfide (H2S) production can be a challenge in marine land-based recirculating ...
Natural and human impacts on geochemical redox cycling and biodiversity in estuaries have long been ...
Cable bacteria can strongly alter sediment biogeochemistry. Here, we used laboratory incubations to ...
Recently, a novel electrogenic type of sulphur oxidation was documented in marine sediments, whereby...
The oxidation of hydrogen sulfide is essential to sulfur cycling in marine habitats. However, the ro...
Microbial dissimilatory sulfate reduction to sulfide is a predominant terminal pathway of organic ma...
The overall objective of the research presented here was to combine multiple geochemical parameters ...
Seasonal oxygen depletion (hypoxia) in coastal bottom waters can lead to the release and persistence...
This research presents a comprehensive study of bacterial assemblages within the water column and in...