The hyperarid Atacama Desert is a unique Mars-analog environment with a large near-surface soil nitrate reservoir due to the lack of rainfall leaching for millennia. We investigated nitrogen (N) cycling and organic matter dynamics in this nitrate-rich terrestrial environment by analyzing the concentrations and isotopic compositions of nitrate, organic C, and organic N, coupled with microbial pathway-enzyme inferences, across a naturally occurring rainfall gradient. Nitrate deposits in sites with an annual precipitation of <10 mm carry atmospheric δ15N, δ18O, and Δ17O signatures, while these values are overprinted by biological cycling in sites with >15 mm annual precipitation. Metagenomic analyses suggest that the Atacama Desert harbo...
International audienceThis work considers the hypothetical viability of microbial nitrate-dependent ...
Chemical analyses of Mars soils and sediments from previous landed missions have demonstrated that M...
The Mars Science Laboratory (MSL) recently discovered nitrates in Gale Crater (e.g., Stern et al., 2...
This research was funded by European Research Council (ERC) under the European Union’s Horizon 2020 ...
This research was funded by European Research Council (ERC) under the European Union’s Horizon 2020 ...
Water is ubiquitous on Earth and plays a fundamental role in all aspects of biogeochemical cycling. ...
Discovery of indigenous martian nitrogen in Mars surface materials has important implications for ha...
Planetary models suggest that nitrogen was abundant in the early Martian atmosphere as N2 but it was...
Microbial nitrogen cycling in hot desert soils is dominated by bursts of biogeochemical metabolic ac...
International audienceOne of the main goals of the Mars Science Laboratory is to determin...
Higher aridity and more extreme rainfall events in drylands are predicted due to climate change. Yet...
Recent detection of nitrate on Mars indicates that nitrogen fixation processes occurred in early mar...
One of the main goals of the Mars Science Laboratory is to determine whether the planet ever had env...
Nitrogen (N) trace gas emission pulses produced after wetting dry soils may be important pathways of...
The capillary fringe is a subsurface terrestrial-aquatic interface that can be a significant hotspot...
International audienceThis work considers the hypothetical viability of microbial nitrate-dependent ...
Chemical analyses of Mars soils and sediments from previous landed missions have demonstrated that M...
The Mars Science Laboratory (MSL) recently discovered nitrates in Gale Crater (e.g., Stern et al., 2...
This research was funded by European Research Council (ERC) under the European Union’s Horizon 2020 ...
This research was funded by European Research Council (ERC) under the European Union’s Horizon 2020 ...
Water is ubiquitous on Earth and plays a fundamental role in all aspects of biogeochemical cycling. ...
Discovery of indigenous martian nitrogen in Mars surface materials has important implications for ha...
Planetary models suggest that nitrogen was abundant in the early Martian atmosphere as N2 but it was...
Microbial nitrogen cycling in hot desert soils is dominated by bursts of biogeochemical metabolic ac...
International audienceOne of the main goals of the Mars Science Laboratory is to determin...
Higher aridity and more extreme rainfall events in drylands are predicted due to climate change. Yet...
Recent detection of nitrate on Mars indicates that nitrogen fixation processes occurred in early mar...
One of the main goals of the Mars Science Laboratory is to determine whether the planet ever had env...
Nitrogen (N) trace gas emission pulses produced after wetting dry soils may be important pathways of...
The capillary fringe is a subsurface terrestrial-aquatic interface that can be a significant hotspot...
International audienceThis work considers the hypothetical viability of microbial nitrate-dependent ...
Chemical analyses of Mars soils and sediments from previous landed missions have demonstrated that M...
The Mars Science Laboratory (MSL) recently discovered nitrates in Gale Crater (e.g., Stern et al., 2...