The deep subseafloor biosphere contains two-thirds of Earth's prokaryotic biomass this may indicate the presence of novel mechanisms of energy generation as temperatures increase in the subsurface. In sediment slurry experiments (0–100 °C) with a range of common minerals and rocks (including basalt and quartz), there is significant H2 formation at elevated temperatures, but only in the presence of prokaryotes. This stimulates further prokaryotic activity, typical of deep sediments (sulfate reduction, acetogenesis, and CO2 production, plus continuing methanogenesis), and Bacteria and Archaea representative of many deep sediment types develop. H2 and acetate formation is particularly stimulated above 70 °C. This prokaryotic activity even enha...
Transmission electron microscopy was used to detect bacterial microfossils buried in fracture surfac...
A detailed geochemical and microbiological study of a ~2 m sediment core from the inactive Alvin mou...
International audienceDespite their potential importance as analogs of primitive microbial metabolis...
The deep subseafloor biosphere contains two-thirds of Earth's prokaryotic biomass this may indicate ...
The deep biosphere has been estimated to be the largest prokaryotic habitat on Earth. However, what ...
Microbial populations exist to great depths on Earth, but with apparently insufficient energy supply...
Marine sediments cover about 70% of the Earth’s surface and contain the largest reservoir of organic...
Marine sediments cover not, vert, similar70% of the Earth’s surface and contain the largest reservoi...
Marine sediments cover ~70% of the Earth’s surface and contain the largest reservoir of organic matt...
Microbial populations exist to great depths on Earth, but with apparently insufficient energy supply...
The deep subseafloor biosphere supports a diverse population of prokaryotes belonging to the Bacter...
Transmission electron microscopy was used to detect bacterial microfossils buried in fracture surfac...
A detailed geochemical and microbiological study of a ~2 m sediment core from the inactive Alvin mou...
International audienceDespite their potential importance as analogs of primitive microbial metabolis...
The deep subseafloor biosphere contains two-thirds of Earth's prokaryotic biomass this may indicate ...
The deep biosphere has been estimated to be the largest prokaryotic habitat on Earth. However, what ...
Microbial populations exist to great depths on Earth, but with apparently insufficient energy supply...
Marine sediments cover about 70% of the Earth’s surface and contain the largest reservoir of organic...
Marine sediments cover not, vert, similar70% of the Earth’s surface and contain the largest reservoi...
Marine sediments cover ~70% of the Earth’s surface and contain the largest reservoir of organic matt...
Microbial populations exist to great depths on Earth, but with apparently insufficient energy supply...
The deep subseafloor biosphere supports a diverse population of prokaryotes belonging to the Bacter...
Transmission electron microscopy was used to detect bacterial microfossils buried in fracture surfac...
A detailed geochemical and microbiological study of a ~2 m sediment core from the inactive Alvin mou...
International audienceDespite their potential importance as analogs of primitive microbial metabolis...