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Investigation of fungal biomolecules after Low Earth Orbit exposure: a testbed for the next Moon missions.

Authors :
Cassaro, Alessia
Pacelli, Claudia
Baqué, Mickael
Cavalazzi, Barbara
Gasparotto, Giorgio
Saladino, Raffaele
Botta, Lorenzo
Böttger, Ute
Rabbow, Elke
de Vera, Jean‐Pierre
Onofri, Silvano
Source :
Environmental Microbiology; Jul2022, Vol. 24 Issue 7, p2938-2950, 13p
Publication Year :
2022

Abstract

Summary: The Moon is characterized by extremely harsh conditions due to ultraviolet irradiation, wide temperature extremes, vacuum resulting from the absence of an atmosphere and high ionizing radiation. Therefore, its surface may provide a unique platform to investigate the effects of such conditions. For lunar exploration with the Lunar Gateway platform, exposure experiments in Low Earth Orbit are useful testbeds to prepare for lunar space experiments and to understand how and if potential biomarkers are influenced by extra‐terrestrial conditions. During the BIOMEX (BIOlogy and Mars EXperiment) project, dried colonies of the fungus Cryomyces antarcticus grown on Lunar Regolith Analogue (LRA) were exposed to space conditions for 16 months aboard the EXPOSE‐R2 payload outside the International Space Station. In this study, we investigated the stability/degradation of fungal biomarkers in LRA after exposure to (i) simulated space and (ii) real space conditions, using Raman spectroscopy, gas chromatography–mass spectrometry and DNA amplification. The results demonstrated that fungal biomarkers were detectable after 16 months of real space exposure. This work will contribute to the interpretation of data from future biological experiments in the Cislunar orbit with the Lunar Gateway platform and/or on the lunar surface, in preparation for the next step of human exploration. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14622912
Volume :
24
Issue :
7
Database :
Complementary Index
Journal :
Environmental Microbiology
Publication Type :
Academic Journal
Accession number :
158082502
Full Text :
https://doi.org/10.1111/1462-2920.15995