Methanogenic archaea from Siberian permafrost complementary to the already well-studied methanogens from non-permafrost habitats were exposed to simulated Martian conditions. After 22 days of exposure to thermo-physical conditions at Martian low- and mid-latitudes up to 90% of methanogenic archaea from Siberian permafrost survived in pure cultures as well as in environmental samples. In contrast, only 0.3%–5.8% of reference organisms from non-permafrost habitats survived at these conditions. This suggests that methanogens from terrestrial permafrost seem to be remarkably resistant to Martian conditions. Our data also suggest that in scenario of subsurface lithoautotrophic life on Mars, methanogenic archaea from Siberian permafrost could be ...
On Earth, chemolithoautothrophic and anaerobic microorganisms such as methanogenic archaea are regar...
Methane was first observed in the atmosphere of Mars in 2003. This organic molecule has an expected ...
The Arctic plays a key role in Earths climate system as global warming is predicted to be most prono...
Methanogenic archaea from Siberian permafrost complementary to the already well-studied methanogens ...
Earliest life forms on Earth developed 3.5 Ga ago, when living conditions on Mars were similar to th...
Prokaryotic microfossils, found in early Archaean rocks, implies that the earliest life forms on Ear...
Numerous preflight investigations were necessary prior to the exposure experiment BIOMEX on the Inte...
The characterizations of survival potential of microorganisms which are able to thrive in extreme en...
Although the martian environment is currently cold and dry, geomorphological features on the surface...
Permafrost-affected soils are characterized by a high abundance and diversity of methanogenic commun...
The terrestrial permafrost represents a range of possible cryogenic extraterrestrial ecosystems on E...
The presence of methane in the near-surface atmosphere of Mars is a scientifically established fact ...
There is evidence that water may exist on Mars in the form of brines. The chemistries of these brin...
On Earth, chemolithoautothrophic and anaerobic microorganisms such as methanogenic archaea are rega...
The discovery of methane in the martian atmosphere via numerous ground- and space-based sources has ...
On Earth, chemolithoautothrophic and anaerobic microorganisms such as methanogenic archaea are regar...
Methane was first observed in the atmosphere of Mars in 2003. This organic molecule has an expected ...
The Arctic plays a key role in Earths climate system as global warming is predicted to be most prono...
Methanogenic archaea from Siberian permafrost complementary to the already well-studied methanogens ...
Earliest life forms on Earth developed 3.5 Ga ago, when living conditions on Mars were similar to th...
Prokaryotic microfossils, found in early Archaean rocks, implies that the earliest life forms on Ear...
Numerous preflight investigations were necessary prior to the exposure experiment BIOMEX on the Inte...
The characterizations of survival potential of microorganisms which are able to thrive in extreme en...
Although the martian environment is currently cold and dry, geomorphological features on the surface...
Permafrost-affected soils are characterized by a high abundance and diversity of methanogenic commun...
The terrestrial permafrost represents a range of possible cryogenic extraterrestrial ecosystems on E...
The presence of methane in the near-surface atmosphere of Mars is a scientifically established fact ...
There is evidence that water may exist on Mars in the form of brines. The chemistries of these brin...
On Earth, chemolithoautothrophic and anaerobic microorganisms such as methanogenic archaea are rega...
The discovery of methane in the martian atmosphere via numerous ground- and space-based sources has ...
On Earth, chemolithoautothrophic and anaerobic microorganisms such as methanogenic archaea are regar...
Methane was first observed in the atmosphere of Mars in 2003. This organic molecule has an expected ...
The Arctic plays a key role in Earths climate system as global warming is predicted to be most prono...