Carbonate crusts in marine environments can act as sinks for carbon dioxide. Therefore, understanding carbonate crust formation could be important for understanding global warming. In the present study, the microbial communities of three carbonate crust samples from deep-sea mud volcanoes in the eastern Mediterranean were characterized by sequencing 16S ribosomal RNA (rRNA) genes amplified from DNA directly retrieved from the samples. In combination with the mineralogical composition of the crusts and lipid analyses, sequence data were used to assess the possible role of prokaryotes in crust formation. Collectively, the obtained data showed the presence of highly diverse communities, which were distinct in each of the carbonate crusts studi...
International audienceWe investigated the distributions and d13C values of lipid biomarkers in authi...
The anaerobic oxidation of methane (AOM), by converting methane to bicarbonate which is then precipi...
We investigated 16S rRNA gene diversity at a high sediment depth resolution (every 5 cm, top 30 cm) ...
Carbonate crusts in marine environments can act as sinks for carbon dioxide. Therefore, understandin...
Carbonate crusts in marine environments can act as sinks for carbon dioxide. Therefore, understandin...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
Abstract To understand the role played by microorganisms in the formation of cold seep carbonates, w...
Carbonates are globally distributed particularly around deep-sea cold seeps. The embedded microbes a...
This study reports on the microbial community composition of Bacteria and Archaea in a cluster of ca...
This study provides data on the diversities of bacterial and archaeal communities in an active metha...
Graduation date: 2009Oceanic crust covers nearly 70% of the Earth's surface, of which, the upper,\ud...
Many mud volcanoes were recently discovered in the euxinic bottom waters of the Sorokin Trough (NE B...
We investigated 16S rRNA gene diversity at a high sediment depth resolution (every 5 cm, top 30 cm) ...
The deep marine biosphere has over the past decades been exposed as an immense habitat for microorga...
International audienceWe investigated the distributions and d13C values of lipid biomarkers in authi...
The anaerobic oxidation of methane (AOM), by converting methane to bicarbonate which is then precipi...
We investigated 16S rRNA gene diversity at a high sediment depth resolution (every 5 cm, top 30 cm) ...
Carbonate crusts in marine environments can act as sinks for carbon dioxide. Therefore, understandin...
Carbonate crusts in marine environments can act as sinks for carbon dioxide. Therefore, understandin...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
To understand the role played by microorganisms in the formation of cold seep carbonates, we conduct...
Abstract To understand the role played by microorganisms in the formation of cold seep carbonates, w...
Carbonates are globally distributed particularly around deep-sea cold seeps. The embedded microbes a...
This study reports on the microbial community composition of Bacteria and Archaea in a cluster of ca...
This study provides data on the diversities of bacterial and archaeal communities in an active metha...
Graduation date: 2009Oceanic crust covers nearly 70% of the Earth's surface, of which, the upper,\ud...
Many mud volcanoes were recently discovered in the euxinic bottom waters of the Sorokin Trough (NE B...
We investigated 16S rRNA gene diversity at a high sediment depth resolution (every 5 cm, top 30 cm) ...
The deep marine biosphere has over the past decades been exposed as an immense habitat for microorga...
International audienceWe investigated the distributions and d13C values of lipid biomarkers in authi...
The anaerobic oxidation of methane (AOM), by converting methane to bicarbonate which is then precipi...
We investigated 16S rRNA gene diversity at a high sediment depth resolution (every 5 cm, top 30 cm) ...