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Title: Subsurface microbial habitats in an extreme desert Mars-analog environment
Authors: Warren-Rhodes, K.A.
Lee, K.C.
Archer, S.D.J.
Cabrol, N.
Ng-Boyle, L.
Wettergreen, D.
Zacny, K.
Pointing, S.B. 
Keywords: Atacama
Desert soil
Moisture stress
Soil bacteria
Issue Date: 2019
Publisher: Frontiers Media S.A.
Citation: Warren-Rhodes, K.A., Lee, K.C., Archer, S.D.J., Cabrol, N., Ng-Boyle, L., Wettergreen, D., Zacny, K., Pointing, S.B. (2019). Subsurface microbial habitats in an extreme desert Mars-analog environment. Frontiers in Microbiology 10 (FEB) : 69. ScholarBank@NUS Repository.
Rights: Attribution 4.0 International
Abstract: Sediments in the hyper-arid core of the Atacama Desert are a terrestrial analog to Mars regolith. Understanding the distribution and drivers of microbial life in the sediment may give critical clues on how to search for biosignatures on Mars. Here, we identify the spatial distribution of highly specialized bacterial communities in previously unexplored depth horizons of subsurface sediments to a depth of 800 mm. We deployed an autonomous rover in a mission-relevant Martian drilling scenario with manual sample validation. Subsurface communities were delineated by depth related to sediment moisture. Geochemical analysis indicated soluble salts and minerology that influenced water bioavailability, particularly in deeper sediments. Colonization was also patchy and uncolonized sediment was associated with indicators of extreme osmotic challenge. The study identifies linkage between biocomplexity, moisture and geochemistry in Mars-like sediments at the limit of habitability and demonstrates feasibility of the rover-mounted drill for future Mars sample recovery. Copyright © 2019 Warren-Rhodes, Lee, Archer, Cabrol, Ng-Boyle, Wettergreen, Zacny, Pointing and the NASA Life in the Atacama Project Team.
Source Title: Frontiers in Microbiology
ISSN: 1664302X
DOI: 10.3389/fmicb.2019.00069
Rights: Attribution 4.0 International
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