The discovery of life on other planets and moons in our solar system is one of the most important challenges of this era. The second ExoMars mission will look for traces of extant or extinct life on Mars. The instruments on board the rover will be able to reach samples with eventual biomarkers until 2 m of depth under the planet’s surface. This exploration capacity offers the best chance to detect biomarkers which would be mainly preserved compared to samples on the surface which are directly exposed to harmful environmental conditions. Starting with the studies of the endolithic meristematic black fungus Cryomyces antarcticus, which has proved its high resistance under extreme conditions, we analyzed the stability and the resistance of fungal biomarkers after exposure to simulated space and Mars-like conditions, with Raman and Gas Chromatography–Mass Spectrometry, two of the scientific payload instruments on board the rover.

Fungal biomarkers stability in mars regolith analogues after simulated space and mars-like conditions / Cassaro, A., Pacelli, C., Baqué, M., De Vera, J.P.P., Böttger, U., Botta, L., Saladino, R., Rabbow, E., Onofri, S.. - In: JOURNAL OF FUNGI. - ISSN 2309-608X. - 7:10(2021), pp. 1-15. [10.3390/jof7100859]

Fungal biomarkers stability in mars regolith analogues after simulated space and mars-like conditions

Saladino, Raffaele;
2021

Abstract

The discovery of life on other planets and moons in our solar system is one of the most important challenges of this era. The second ExoMars mission will look for traces of extant or extinct life on Mars. The instruments on board the rover will be able to reach samples with eventual biomarkers until 2 m of depth under the planet’s surface. This exploration capacity offers the best chance to detect biomarkers which would be mainly preserved compared to samples on the surface which are directly exposed to harmful environmental conditions. Starting with the studies of the endolithic meristematic black fungus Cryomyces antarcticus, which has proved its high resistance under extreme conditions, we analyzed the stability and the resistance of fungal biomarkers after exposure to simulated space and Mars-like conditions, with Raman and Gas Chromatography–Mass Spectrometry, two of the scientific payload instruments on board the rover.
2021
spectroscopy; arms exploration; life-detection; pigments; nucleic acids
01 Pubblicazione su rivista::01a Articolo in rivista
Fungal biomarkers stability in mars regolith analogues after simulated space and mars-like conditions / Cassaro, A., Pacelli, C., Baqué, M., De Vera, J.P.P., Böttger, U., Botta, L., Saladino, R., Rabbow, E., Onofri, S.. - In: JOURNAL OF FUNGI. - ISSN 2309-608X. - 7:10(2021), pp. 1-15. [10.3390/jof7100859]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1766437
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