On Earth, chemolithoautothrophic and anaerobic microorganisms such as methanogenic archaea are regarded as model organisms for possible subsurface life on Mars. For this reason, the methanogenic strain Methanosarcina soligelidi (formerly called Methanosarcina spec. SMA-21), isolated from permafrost-affected soil in northeast Siberia, has been tested under Martian thermo-physical conditions. In previous studies under simulated Martian conditions, high survival rates of these microorganisms were observed. In our study we present a method to measure methane production as first attempt to study metabolic activity of methanogenic archaea during simulated conditions, which are approaching conditions of Mars-like environments. To determine methano...
Methanogenic archaea from Siberian permafrost complementary to the already well-studied methanogens ...
By analogy with Earth, methane in the Martian atmosphere is a potential signature of ongoing or past...
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 rega...
The presence of methane in the near-surface atmosphere of Mars is a scientifically established fact ...
Methane has a typical atmospheric photochemical lifetime of ∼300 years on Mars, making contemporary ...
Numerous preflight investigations were necessary prior to the exposure experiment BIOMEX on the Inte...
Methane was first observed in the martian atmosphere in 2003. This organic molecule has an expected...
The origin of methane on Mars is unknown. It might originate from geothermal or biological activitie...
Methane was first observed in the atmosphere of Mars in 2003. This organic molecule has an expected ...
Earliest life forms on Earth developed 3.5 Ga ago, when living conditions on Mars were similar to th...
Mars is one of the suitable bodies in our solar system that can accommodate extraterrestrial life. T...
The current understanding of the Martian surface indicates that briny environments at the near-surfa...
Prokaryotic microfossils, found in early Archaean rocks, implies that the earliest life forms on Ear...
The current understanding of the Martian surface indicates that briny environments at the near-surfa...
Methanogenic archaea from Siberian permafrost complementary to the already well-studied methanogens ...
By analogy with Earth, methane in the Martian atmosphere is a potential signature of ongoing or past...
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 rega...
The presence of methane in the near-surface atmosphere of Mars is a scientifically established fact ...
Methane has a typical atmospheric photochemical lifetime of ∼300 years on Mars, making contemporary ...
Numerous preflight investigations were necessary prior to the exposure experiment BIOMEX on the Inte...
Methane was first observed in the martian atmosphere in 2003. This organic molecule has an expected...
The origin of methane on Mars is unknown. It might originate from geothermal or biological activitie...
Methane was first observed in the atmosphere of Mars in 2003. This organic molecule has an expected ...
Earliest life forms on Earth developed 3.5 Ga ago, when living conditions on Mars were similar to th...
Mars is one of the suitable bodies in our solar system that can accommodate extraterrestrial life. T...
The current understanding of the Martian surface indicates that briny environments at the near-surfa...
Prokaryotic microfossils, found in early Archaean rocks, implies that the earliest life forms on Ear...
The current understanding of the Martian surface indicates that briny environments at the near-surfa...
Methanogenic archaea from Siberian permafrost complementary to the already well-studied methanogens ...
By analogy with Earth, methane in the Martian atmosphere is a potential signature of ongoing or past...
The discovery of methane in the martian atmosphere via numerous ground- and space-based sources has ...