The transition of the martian climate from the wet Noachian era to the dry Hesperian (4.1–3.0 Gya) likely resulted in saline surface waters that were rich in sulfur species. Terrestrial analogue environments that possess a similar chemistry to these proposed waters can be used to develop an understanding of the diversity of microorganisms that could have persisted on Mars under such conditions. Here, we report on the chemistry and microbial community of the highly reducing sediment of Colour Peak springs, a sulfidic and saline spring system located within the Canadian High Arctic. DNA and cDNA 16S rRNA gene profiling demonstrated that the microbial community was dominated by sulfur oxidising bacteria, suggesting that primary production in t...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
The transition of the martian climate from the wet Noachian era to the dry Hesperian (4.1–3.0 Gya) l...
Authors acknowledge funding from the Science and Technology Facilities Council from the Grant ST/P00...
Authors acknowledge funding from the Science and Technology Facilities Council from the Grant ST/P00...
Currently, the surface of Mars cannot sustain liquid water, but there is evidence suggesting that wa...
The martian surface cannot sustain liquid water today, but there is evidence water was present durin...
Abstract Background Gypsum Hill Spring, located in Nunavut in the Canadian High Arctic, is a rare ex...
Introduction: The surface of Mars cannot sus-tain liquid water today, but there is evidence for the ...
The cold saline springs at Gypsum Hill (GH) and Colour Peak (CP) in the Canadian high Arctic are rar...
Life can persist under severe osmotic stress and low water activity in hypersaline environments. On ...
Lost Hammer Spring, located in the High Arctic of Nunavut, Canada, is one of the coldest and salties...
Life can persist under severe osmotic stress and low water activity in hypersaline environments. On ...
Sulfate-dominated sedimentary deposits are widespread on the surface of Mars, which contrasts with t...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
The transition of the martian climate from the wet Noachian era to the dry Hesperian (4.1–3.0 Gya) l...
Authors acknowledge funding from the Science and Technology Facilities Council from the Grant ST/P00...
Authors acknowledge funding from the Science and Technology Facilities Council from the Grant ST/P00...
Currently, the surface of Mars cannot sustain liquid water, but there is evidence suggesting that wa...
The martian surface cannot sustain liquid water today, but there is evidence water was present durin...
Abstract Background Gypsum Hill Spring, located in Nunavut in the Canadian High Arctic, is a rare ex...
Introduction: The surface of Mars cannot sus-tain liquid water today, but there is evidence for the ...
The cold saline springs at Gypsum Hill (GH) and Colour Peak (CP) in the Canadian high Arctic are rar...
Life can persist under severe osmotic stress and low water activity in hypersaline environments. On ...
Lost Hammer Spring, located in the High Arctic of Nunavut, Canada, is one of the coldest and salties...
Life can persist under severe osmotic stress and low water activity in hypersaline environments. On ...
Sulfate-dominated sedimentary deposits are widespread on the surface of Mars, which contrasts with t...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...
International audienceSulfate-dominated sedimentary deposits are widespread on the surface of Mars, ...