The sulfur cycle in a microbial mat was studied by determining viable counts of sulfate-reducing bacteria, chemolithoautotrophic sulfur bacteria and anoxygenic phototrophic bacteria. All three functional groups of sulfur bacteria revealed a maximum population density in the uppermost 5 mm of the mat: 1.1 X 10(8) cells of sulfate reducers cm-3 sediment, 2.0 X 10(9) cells of chemolithoautotrophs cm-3 sediment, and 4.0 X 10(7) cells of anoxygenic phototrophs cm-3 sediment. Bacterial dynamics were studied by sulfate reduction rate measurements, both under anoxic conditions (dark incubation) and oxic conditions (incubation in the light), and determination of the vertical distribution of the potential rate of thiosulfate consumption under oxic co...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
The sulfur cycle in a microbial mat was studied by determining viable counts of sulfate-reducing bac...
The sulfur cycle in a microbial mat was studied by determining viable counts of sulfate-reducing bac...
Bacterial sulfate reduction and transformations of thiosulfate were studied with radiotracers in a M...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
Microbial mats characteristically are dominated by a few functional groups of microbes: cyanobacteri...
Microbial mats characteristically are dominated by a few functional groups of microbes: cyanobacteri...
Microbial mats characteristically are dominated by a few functional groups of microbes: cyanobacteri...
Microbial mats characteristically are dominated by a few functional groups of microbes: cyanobacteri...
Natural microbial populations in deep and shallow North Atlantic water and previously isolated heter...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
The sulfur cycle in a microbial mat was studied by determining viable counts of sulfate-reducing bac...
The sulfur cycle in a microbial mat was studied by determining viable counts of sulfate-reducing bac...
Bacterial sulfate reduction and transformations of thiosulfate were studied with radiotracers in a M...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
Microbial mats characteristically are dominated by a few functional groups of microbes: cyanobacteri...
Microbial mats characteristically are dominated by a few functional groups of microbes: cyanobacteri...
Microbial mats characteristically are dominated by a few functional groups of microbes: cyanobacteri...
Microbial mats characteristically are dominated by a few functional groups of microbes: cyanobacteri...
Natural microbial populations in deep and shallow North Atlantic water and previously isolated heter...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...