Studying modern microbial mats can provide insights into how microbial communities interact with biogeochemical cycles. High-resolution, two-dimensional distributions of porewater analytes were determined in the upper three layers of a modern microbial mat from Nilemah, Shark Bay, Western Australia, using colorimetric diffusive equilibration in thin film (DET) and diffusive gradients in thin film (DGT) techniques. The colorimetric DET and DGT techniques were used to investigate the co-distributions of sulfide, iron(II), and phosphate and the alkalinity. Two-dimensional distributions of sulfide, iron(II) and phosphate showed a high degree of spatial heterogeneity under both light and dark conditions. However, average concentration profiles s...
In this study we determined the composition and biogeochemistry of novel, brightly colored, white an...
<p>We report extremely low-light-adapted anoxygenic photosynthesis in a thick microbial mat in Magic...
We studied the interaction between phototrophic and chemolithoautotrophic sulphide-oxidizing microor...
Modern microbial mats are highly complex and dynamic ecosystems. Diffusive equilibration in thin fil...
In situ microsensor measurements were combined with biogeochemical methods to determine oxygen, sulf...
In situ microsensor measurements were combined with biogeochemical methods to determine oxygen, sulf...
Microbial mats are multi-layered structures built by morphol. and metabolically diverse consortiums ...
The metabolic activities of microbial mats have likely regulated biogeochemical cycling over most of...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
Oxygenic and anoxygenic photosynthesis were studied with microsensors in microbial mats found at 9-1...
Modern microbial mats can provide key insights into early Earth ecosystems, and Shark Bay, Australia...
Methods are described for measuring the concentration and vertical distribution of sul-fide, element...
Hypersaline microbial mats are dense microbial ecosystems capable of performing complete element cyc...
International audiencePhysico-chemical and biological micro-scale environmental parameters within mi...
The Um Alhool area in Qatar is a dynamic evaporative ecosystem that receives seawater from below as ...
In this study we determined the composition and biogeochemistry of novel, brightly colored, white an...
<p>We report extremely low-light-adapted anoxygenic photosynthesis in a thick microbial mat in Magic...
We studied the interaction between phototrophic and chemolithoautotrophic sulphide-oxidizing microor...
Modern microbial mats are highly complex and dynamic ecosystems. Diffusive equilibration in thin fil...
In situ microsensor measurements were combined with biogeochemical methods to determine oxygen, sulf...
In situ microsensor measurements were combined with biogeochemical methods to determine oxygen, sulf...
Microbial mats are multi-layered structures built by morphol. and metabolically diverse consortiums ...
The metabolic activities of microbial mats have likely regulated biogeochemical cycling over most of...
The microbial mat was chosen as a model ecosystem to study dynamics of dimethyl sulfide (DMS) in mar...
Oxygenic and anoxygenic photosynthesis were studied with microsensors in microbial mats found at 9-1...
Modern microbial mats can provide key insights into early Earth ecosystems, and Shark Bay, Australia...
Methods are described for measuring the concentration and vertical distribution of sul-fide, element...
Hypersaline microbial mats are dense microbial ecosystems capable of performing complete element cyc...
International audiencePhysico-chemical and biological micro-scale environmental parameters within mi...
The Um Alhool area in Qatar is a dynamic evaporative ecosystem that receives seawater from below as ...
In this study we determined the composition and biogeochemistry of novel, brightly colored, white an...
<p>We report extremely low-light-adapted anoxygenic photosynthesis in a thick microbial mat in Magic...
We studied the interaction between phototrophic and chemolithoautotrophic sulphide-oxidizing microor...