This study investigated the bacterial diversity associated with microbial mats of polar deep-sea cold seeps. The mats were associated with high upward fluxes of sulfide produced by anaerobic oxidation of methane, and grew at temperatures close to the freezing point of seawater. They ranged from small patches of 0.2–5 m in diameter (gray mats) to extensive fields covering up to 850 m2 of seafloor (white mats) and were formed by diverse sulfide-oxidizing bacteria differing in color and size. Overall, both the dominant mat-forming thiotrophs as well as the associated bacterial communities inhabiting the mats differed in composition for each mat type as determined by microscopy, 16S rRNA gene sequencing and automated ribosomal intergenic spacer...
We provide the first detailed identification of Barents Sea cold seep frenulate hosts and their symb...
We report here a molecular survey based on 16S rRNA genes of the bacterial diversity found in two de...
Cold seeps are highly productive, fragmented marine ecosystems that form at the seafloor around hydr...
This study investigated the bacterial diversity associated with microbial mats of polar deep-sea col...
Sulfidic muds of cold seeps on the Nile Deep Sea Fan (NDSF) are populated by different types of mat-...
Cold seeps are locations on the seafloor where CH4 migrates from reservoirs below sediments towards ...
Mat-forming sulfide-oxidizing bacteria are intriguing, diverse, highly adapted microorganisms with i...
Sulfidic muds of cold seeps on the Nile Deep Sea Fan are populated by different types of mat-forming...
Mat-forming sulfide-oxidizing bacteria are intriguing, diverse, highly adapted microorganisms with i...
The cold saline springs at Gypsum Hill (GH) and Colour Peak (CP) in the Canadian high Arctic are rar...
International audienceChemosynthetic mats involved in cycling sulfur compounds are often found in hy...
Cold seeps are complex ecosystems based on chemosynthesis. Sulfide and methane are available in high...
The detailed investigation of microbial communities, e.g. of soil or hydrothermal vent ecosystems, g...
We provide the first detailed identification of Barents Sea cold seep frenulate hosts and their symb...
At deep-sea hydrothermal vents, primary production is carried out by chemolithoautotrophic microorga...
We provide the first detailed identification of Barents Sea cold seep frenulate hosts and their symb...
We report here a molecular survey based on 16S rRNA genes of the bacterial diversity found in two de...
Cold seeps are highly productive, fragmented marine ecosystems that form at the seafloor around hydr...
This study investigated the bacterial diversity associated with microbial mats of polar deep-sea col...
Sulfidic muds of cold seeps on the Nile Deep Sea Fan (NDSF) are populated by different types of mat-...
Cold seeps are locations on the seafloor where CH4 migrates from reservoirs below sediments towards ...
Mat-forming sulfide-oxidizing bacteria are intriguing, diverse, highly adapted microorganisms with i...
Sulfidic muds of cold seeps on the Nile Deep Sea Fan are populated by different types of mat-forming...
Mat-forming sulfide-oxidizing bacteria are intriguing, diverse, highly adapted microorganisms with i...
The cold saline springs at Gypsum Hill (GH) and Colour Peak (CP) in the Canadian high Arctic are rar...
International audienceChemosynthetic mats involved in cycling sulfur compounds are often found in hy...
Cold seeps are complex ecosystems based on chemosynthesis. Sulfide and methane are available in high...
The detailed investigation of microbial communities, e.g. of soil or hydrothermal vent ecosystems, g...
We provide the first detailed identification of Barents Sea cold seep frenulate hosts and their symb...
At deep-sea hydrothermal vents, primary production is carried out by chemolithoautotrophic microorga...
We provide the first detailed identification of Barents Sea cold seep frenulate hosts and their symb...
We report here a molecular survey based on 16S rRNA genes of the bacterial diversity found in two de...
Cold seeps are highly productive, fragmented marine ecosystems that form at the seafloor around hydr...