The deep anoxic shelf of the northwestern Black Sea has numerous gas seeps, which are populated by methanotrophic microbial mats in and above the seafloor. Above the seafloor, the mats can form tall reef-like structures composed of porous carbonate and microbial biomass. Here, we investigated the spatial patterns of CH4 and CO2 assimilation in relation to the distribution of ANME groups and their associated bacteria in mat samples obtained from the surface of a large reef structure. A combination of different methods, including radiotracer incubation, beta microimaging, secondary ion mass spectrometry, and catalyzed reporter deposition fluorescence in situ hybridization, was applied to sections of mat obtained from the large reef structure ...
Massive microbial mats covering up to 4-meter-high carbonate buildups prosper at methane seeps in an...
The anaerobic oxidation of methane (AOM) is a major sink for methane on Earth and is performed by co...
In this study we investigated by using 16S rRNA-based methods the distribution and biomass of archae...
The deep anoxic shelf of the northwestern Black Sea has numerous gas seeps, which are populated by m...
The deep anoxic shelf of the northwestern Black Sea has numerous gas seeps, which are populated by m...
The deep anoxic shelf of the northwestern Black Sea has numerous gas seeps, which are populated by m...
AbstractGas seeps in the euxinic northwestern Black Sea provide an excellent opportunity to study an...
The microbially mediated anaerobic oxidation of methane (AOM) is the major biological sink of the gr...
Anaerobic methanotrophic archaea (ANME) are ubiquitous in marine sediments where sulfate dependent a...
The anaerobic oxidation of methane (AOM) is one of the major sinks of this substantial greenhouse ga...
Microbial mats thriving at gas seeps within anoxic bottom water were sampled during a Black Sea expe...
Massive microbial mats covering up to 4-meter-high carbonate buildups prosper at methane seeps in an...
Massive microbial mats covering up to 4-meter-high carbonate buildups prosper at methane seeps in an...
A cold methane seep was discovered in a forearc sediment basin off the island Sumatra, exhibiting a ...
Massive microbial mats covering up to 4-meter-high carbonate buildups prosper at methane seeps in an...
Massive microbial mats covering up to 4-meter-high carbonate buildups prosper at methane seeps in an...
The anaerobic oxidation of methane (AOM) is a major sink for methane on Earth and is performed by co...
In this study we investigated by using 16S rRNA-based methods the distribution and biomass of archae...
The deep anoxic shelf of the northwestern Black Sea has numerous gas seeps, which are populated by m...
The deep anoxic shelf of the northwestern Black Sea has numerous gas seeps, which are populated by m...
The deep anoxic shelf of the northwestern Black Sea has numerous gas seeps, which are populated by m...
AbstractGas seeps in the euxinic northwestern Black Sea provide an excellent opportunity to study an...
The microbially mediated anaerobic oxidation of methane (AOM) is the major biological sink of the gr...
Anaerobic methanotrophic archaea (ANME) are ubiquitous in marine sediments where sulfate dependent a...
The anaerobic oxidation of methane (AOM) is one of the major sinks of this substantial greenhouse ga...
Microbial mats thriving at gas seeps within anoxic bottom water were sampled during a Black Sea expe...
Massive microbial mats covering up to 4-meter-high carbonate buildups prosper at methane seeps in an...
Massive microbial mats covering up to 4-meter-high carbonate buildups prosper at methane seeps in an...
A cold methane seep was discovered in a forearc sediment basin off the island Sumatra, exhibiting a ...
Massive microbial mats covering up to 4-meter-high carbonate buildups prosper at methane seeps in an...
Massive microbial mats covering up to 4-meter-high carbonate buildups prosper at methane seeps in an...
The anaerobic oxidation of methane (AOM) is a major sink for methane on Earth and is performed by co...
In this study we investigated by using 16S rRNA-based methods the distribution and biomass of archae...