Microbial mats characteristically are dominated by a few functional groups of microbes: cyanobacteria, colorless sulfur bacteria, purple sulfur bacteria, and sulfate-reducing bacteria. Their combined metabolic activities result in steep environmental microgradients, particularly of oxygen and sulfide.The driving force of most microbial mats is photosynthesis by cyanobacteria and algae. Subsequently, sulfate-reducing bacteria, using excretion-, lysis-, and decomposition products of cyanobacteria, produce sulfide by the dissimilatory reduction of sulfate. The sulfide can be reoxidized to sulfate by colorless and purple sulfur bacteria.Colorless sulfur bacteria are chemotrophic organisms primarily oxidizing sulfide and other reduced forms of s...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
We studied the interaction between phototrophic and chemolithoautotrophic sulphide-oxidizing microor...
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...
Coastal inter-tidal sandy sediments, salt marshes and mangrove forests often support the development...
Microbial mats are structured, small-scale microbial ecosystems, andsimilar as biofilms cover a subs...
Microbial mats are structured, small-scale microbial ecosystems, andsimilar as biofilms cover a subs...
Coastal inter-tidal sandy sediments, salt marshes and mangrove forests often support the development...
The unique characteristic of the phototrophic purple and green sulfur bacteria as well as of members...
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...
At the Nakabusa hot spring, Japan, dense olive-green microbial mats develop in regions where the sli...
The sulfur cycle in a microbial mat was studied by determining viable counts of sulfate-reducing bac...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
We studied the interaction between phototrophic and chemolithoautotrophic sulphide-oxidizing microor...
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...
Coastal inter-tidal sandy sediments, salt marshes and mangrove forests often support the development...
Microbial mats are structured, small-scale microbial ecosystems, andsimilar as biofilms cover a subs...
Microbial mats are structured, small-scale microbial ecosystems, andsimilar as biofilms cover a subs...
Coastal inter-tidal sandy sediments, salt marshes and mangrove forests often support the development...
The unique characteristic of the phototrophic purple and green sulfur bacteria as well as of members...
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...
At the Nakabusa hot spring, Japan, dense olive-green microbial mats develop in regions where the sli...
The sulfur cycle in a microbial mat was studied by determining viable counts of sulfate-reducing bac...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...
We studied the interaction between phototrophic and chemolithoautotrophic sulphide-oxidizing microor...
The populations of chemolithoautotrophic (colorless) sulfur bacteria and anoxygenic phototrophic bac...