The effect of a Mars-like UV flux and γ-radiation on the detectability of biomarkers in dried cells of sp. CCMEE 029 was investigated using a fluorescence sandwich microarray immunoassay. The production of anti- antibodies allowed the immunoidentification of a reduced, though still detectable, signal in dried cells mixed with phyllosilicatic and sulfatic Mars regolith simulants after exposure to 6.8 × 10 kJ/m of a Mars-like UV flux. No signal was detected in dried cells that were not mixed with minerals after 1.4 × 10 kJ/m. For γ-radiation (Co), no detectable variations of the fluorescence signal occurred in dried cells exposed to 113 kGy compared to non-irradiated dried cells. Our results suggest that immunoassay-based techniques could be used to detect life tracers eventually present in the martian subsurface in freshly excavated materials only if shielded from solar UV. The high structural integrity of biomarkers irradiated with γ-radiation that mimics a dose accumulated in 13 Myr at 2 m depth from the martian surface has implications for the potential detectability of similar organic molecules/compounds by future life-detection missions such as the ExoMars Rosalind Franklin rover.

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http://dx.doi.org/10.1089/ast.2022.0013DOI Listing

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