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Brines, potentially formed by the deliquescence and freezing point depression of highly hygroscopic salts, such as perchlorates (ClO4-), may allow for the spatial and temporal stability of liquid water on present-day Mars. It is therefore of great interest to explore the microbial habitability of Ma...
ORGANISM(S): Escherichia coli 
2025-01-21 | PXD055273 | Pride
If life exists on Mars, it would face several challenges including the presence of perchlorates, which destabilize biomacromolecules by inducing chaotropic stress. However, little is known about perchlorate toxicity for microorganism on the cellular level. Here we present a proteomic investigation o...
ORGANISM(S): Debaryomyces hansenii 
2023-06-06 | PXD033237 | Pride
The study of the survival of terrestrial microorganisms in Martian conditions, especially in the presence of perchlorates, offers crucial insights for astrobiology. This research investigates the resilience of the extremophilic black fungus Rhinocladiella similis to the exposure to magnesium perchlo...
ORGANISM(S): Rhinocladiella similis 
2025-05-26 | PXD050600 | Pride
Haloferax volcanii exposed to perchlorate
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