The carbon metabolism of the cryptoendolithic microbiota in sandstones from the Ross Desert region of Antarctica was studied in situ and in vitro. Organic and inorganic compounds were metabolized by the microbiota, with bicarbonate being metabolized maximally in the light. There was a linear response of photosynthesis to light up to 200 to 300 micromole photons/sq m/s. The community photosynthetic response to temperature was a minimum at -5 C, two optima at +5 and +15 C and a maximum at +35 C. Photosynthetic metabolism occurred maximally in the presence of liquid water, but could occur in an environment of water vapor. Biomass of the cryptoendolithic microbiota was measured as the amount of lipid phosphate present. The in situ biomass range...
Cryptoendolithic communities are almost the sole life form in the ice-free areas of the Antarctic de...
Lichen-dominated cryptoendolithic communities from the Dry Valleys of Antarctica have been the subje...
Mars is a cold, dry planet with an oxidizing surface bombarded by ultraviolet and ionizing radiation...
Microbes adapt to inhospitable conditions by colonizing niches that protect them from severe environ...
Microbial life in the harsh conditions of Antarctica’s cold desert may be considered an analogue of ...
Endolithic photosynthetic microorganisms like cyanobacteria and algae are well known from savannas a...
The debris-rich basal ice layers of a high Arctic glacier were shown to contain metabolically divers...
Endolithic microorganisms, ranging from microeukaryotes to bacteria and archaea, live within the cra...
Antarctica supports some of the most unexplored and isolated ecosystems of the planet, wherein exist...
Microbial life in the harsh conditions of Antarctica’s cold desert may be considered an analogue of...
It is possible to hypothesize that, if microbial life evolved on early Mars, fossil remnants of thes...
Antarctica is covered by multiple larger glaciers with diverse extreme conditions. Microorganisms in...
The occurrence of hypolithic cyanobacteria colonizing translucent stones was quantified along the ar...
The Atacama Desert of northern Chile is one of the driest regions on Earth, with areas that exclude...
The Earth's crust hosts a subsurface, dark, and oligotrophic biosphere that is poorly understood in ...
Cryptoendolithic communities are almost the sole life form in the ice-free areas of the Antarctic de...
Lichen-dominated cryptoendolithic communities from the Dry Valleys of Antarctica have been the subje...
Mars is a cold, dry planet with an oxidizing surface bombarded by ultraviolet and ionizing radiation...
Microbes adapt to inhospitable conditions by colonizing niches that protect them from severe environ...
Microbial life in the harsh conditions of Antarctica’s cold desert may be considered an analogue of ...
Endolithic photosynthetic microorganisms like cyanobacteria and algae are well known from savannas a...
The debris-rich basal ice layers of a high Arctic glacier were shown to contain metabolically divers...
Endolithic microorganisms, ranging from microeukaryotes to bacteria and archaea, live within the cra...
Antarctica supports some of the most unexplored and isolated ecosystems of the planet, wherein exist...
Microbial life in the harsh conditions of Antarctica’s cold desert may be considered an analogue of...
It is possible to hypothesize that, if microbial life evolved on early Mars, fossil remnants of thes...
Antarctica is covered by multiple larger glaciers with diverse extreme conditions. Microorganisms in...
The occurrence of hypolithic cyanobacteria colonizing translucent stones was quantified along the ar...
The Atacama Desert of northern Chile is one of the driest regions on Earth, with areas that exclude...
The Earth's crust hosts a subsurface, dark, and oligotrophic biosphere that is poorly understood in ...
Cryptoendolithic communities are almost the sole life form in the ice-free areas of the Antarctic de...
Lichen-dominated cryptoendolithic communities from the Dry Valleys of Antarctica have been the subje...
Mars is a cold, dry planet with an oxidizing surface bombarded by ultraviolet and ionizing radiation...