With a rich variety of chemical energy sources and steep physical and chemical gradients, hydrothermal vent systems offer a range of habitats to support microbial life. Cultivation-dependent and independent studies have led to an emerging view that diverse microorganisms in deep-sea hydrothermal vents live their chemolithoautotrophic, heterotrophic, or mixotrophic life with versatile metabolic strategies. Biogeochemical processes are mediated by microorganisms, and notably, processes involving or coupling the carbon, sulfur, hydrogen, nitrogen, and metal cycles in these unique ecosystems. Here, we review the taxonomic and physiological diversity of microbial prokaryotic life from cosmopolitan to endemic taxa and emphasize their significant ...
Deep-sea hydrothermal vent chimneys harbor some of the most extreme environments supporting life on ...
The global influence of mid-oceanic ridges (MOR) first became apparent through continental drifting–...
The prokaryotic diversity of culturable thermophilic communities of deep-sea hydrothermal chimneys w...
International audienceWith a rich variety of chemical energy sources and steep physical and chemical...
Deep-sea hydrothermal vents are a global phenomenon driven by reservoirs of geothermal energy that c...
Abstract Background When deep-sea hydrothermal fluids mix with cold oxygenated fluids, minerals prec...
When deep-sea hydrothermal fluids mix with cold oxygenated fluids, minerals precipitate out of solut...
Abstract Deep-sea hydrothermal vents are extreme and complex ecosystems based on a trophic chain. We...
Little is known about the functional capability of microbial communities in shallow-sea hydrothermal...
Deep-sea hydrothermal vents are highly dynamic habitats characterized by steep temperature and chemi...
Deep-sea hydrothermal vent systems are highly productive ecosystems, where reduced energy sources fu...
Despite years of research into microbial activity at diffuse flow hydrothermal vents, the extent of ...
Hydrothermal plumes are an important yet understudied component of deep-sea vent microbial ecosystem...
Deep-sea hydrothermal vent chimneys harbor some of the most extreme environments supporting life on ...
The global influence of mid-oceanic ridges (MOR) first became apparent through continental drifting–...
The prokaryotic diversity of culturable thermophilic communities of deep-sea hydrothermal chimneys w...
International audienceWith a rich variety of chemical energy sources and steep physical and chemical...
Deep-sea hydrothermal vents are a global phenomenon driven by reservoirs of geothermal energy that c...
Abstract Background When deep-sea hydrothermal fluids mix with cold oxygenated fluids, minerals prec...
When deep-sea hydrothermal fluids mix with cold oxygenated fluids, minerals precipitate out of solut...
Abstract Deep-sea hydrothermal vents are extreme and complex ecosystems based on a trophic chain. We...
Little is known about the functional capability of microbial communities in shallow-sea hydrothermal...
Deep-sea hydrothermal vents are highly dynamic habitats characterized by steep temperature and chemi...
Deep-sea hydrothermal vent systems are highly productive ecosystems, where reduced energy sources fu...
Despite years of research into microbial activity at diffuse flow hydrothermal vents, the extent of ...
Hydrothermal plumes are an important yet understudied component of deep-sea vent microbial ecosystem...
Deep-sea hydrothermal vent chimneys harbor some of the most extreme environments supporting life on ...
The global influence of mid-oceanic ridges (MOR) first became apparent through continental drifting–...
The prokaryotic diversity of culturable thermophilic communities of deep-sea hydrothermal chimneys w...