The modern Martian surface is unlikely to be habitable due to its extreme aridity among other environmental factors. This is the reason why the hyperarid core of the Atacama Desert has been studied as an analog for the habitability of Mars for more than 50 years. Here we report a layer enriched in smectites located just 30 cm below the surface of the hyperarid core of the Atacama. We discovered the clay-rich layer to be wet (a phenomenon never observed before in this region), keeping a high and constant relative humidity of 78% (a 0.780), and completely isolated from the changing and extremely dry subaerial conditions characteristic of the Atacama. The smectite-rich layer is inhabited by at least 30 halophilic species of metabolically activ...
International audienceIdentifying unequivocal signs of life on Mars is one of the most important obj...
On Earth, the deep biosphere remains a largely unexplored, but clearly important carbon reservoir. R...
Clay minerals have been identified on Mars' oldest (Noachian) terrain and their presence suggests lo...
Sediments in the hyper-arid core of the Atacama Desert are a terrestrial analog to Mars regolith. Un...
Dryness is one of the main environmental challenges to microbial survival. Understanding the thresho...
Desert environments on Earth are colonized by organisms adapted to desiccation. We hypothesized that...
The search for life on Mars continues apace, however the significant cost in time and resources invo...
Sediments in the hyper-arid core of the Atacama Desert are a terrestrial analog to Mars regolith. Un...
The detection of biosignatures on Mars is of outstanding interest in current Astrobiology and drives...
13 páginas, 8 figuras y 3 tablesThe hyper-arid core of the Atacama Desert in Chile is considered the...
The Atacama Desert has long been considered a good Mars analogue for testing instrumentation for pla...
Water is ubiquitous on Earth and plays a fundamental role in all aspects of biogeochemical cycling. ...
Microbial mats are cohesive benthic microbial communities which inhabit various Terra (Earth-based) ...
Traces of life are nearly ubiquitous on Earth. However, a central unresolved question is whether the...
Traces of life are nearly ubiquitous on Earth. However, a central unresolved question is whether the...
International audienceIdentifying unequivocal signs of life on Mars is one of the most important obj...
On Earth, the deep biosphere remains a largely unexplored, but clearly important carbon reservoir. R...
Clay minerals have been identified on Mars' oldest (Noachian) terrain and their presence suggests lo...
Sediments in the hyper-arid core of the Atacama Desert are a terrestrial analog to Mars regolith. Un...
Dryness is one of the main environmental challenges to microbial survival. Understanding the thresho...
Desert environments on Earth are colonized by organisms adapted to desiccation. We hypothesized that...
The search for life on Mars continues apace, however the significant cost in time and resources invo...
Sediments in the hyper-arid core of the Atacama Desert are a terrestrial analog to Mars regolith. Un...
The detection of biosignatures on Mars is of outstanding interest in current Astrobiology and drives...
13 páginas, 8 figuras y 3 tablesThe hyper-arid core of the Atacama Desert in Chile is considered the...
The Atacama Desert has long been considered a good Mars analogue for testing instrumentation for pla...
Water is ubiquitous on Earth and plays a fundamental role in all aspects of biogeochemical cycling. ...
Microbial mats are cohesive benthic microbial communities which inhabit various Terra (Earth-based) ...
Traces of life are nearly ubiquitous on Earth. However, a central unresolved question is whether the...
Traces of life are nearly ubiquitous on Earth. However, a central unresolved question is whether the...
International audienceIdentifying unequivocal signs of life on Mars is one of the most important obj...
On Earth, the deep biosphere remains a largely unexplored, but clearly important carbon reservoir. R...
Clay minerals have been identified on Mars' oldest (Noachian) terrain and their presence suggests lo...