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Título : Dark microbiome and extremely low organics in Atacama fossil delta unveil Mars life detection limits
Autor : Azua Bustos, A.
Fairén, A.
González Silva, C.
Prieto Ballesteros, O.
Carrizo, D.
Sánchez García, L.
Parro García, V.
Fernández Martínez, M. A.
Escudero, C.
Muñoz Iglesias, V.
Fernández Sampedro, M.
Molina, A.
García Villadangos, M.
Moreno Paz, M.
Wierzchos, J.
Ascaso, C.
Fornado, Teresa
Brucato, J. R.
Poggiali, G.
Manrique, J. A.
Veneranda, M.
López Reyes, G.
Sanz Arranz, A.
Rull, F.
Ollila, A. M.
Wiens, R. C.
Reyes Newell, Adriana
Clegg, S. M.
Millan, Maëva
Stewart Johnson, Sarah
McIntosh, Ophélie
Szopa, Cyril
Freissinet, Caroline
Sekine, Yasuhito
Fukushi, Keisuke
Morida, Koki
Inoue, Kosuke
Sakuma, Hiroshi
Rampe, E.
Fecha de publicación : 21-feb-2023
Editorial : Nature Publishing Group
DOI: 10.1038/s41467-023-36172-1
Versión del Editor: https://www.nature.com/articles/s41467-023-36172-1
Citación : Nature Communications 14: 808 (2023)
Resumen : Identifying unequivocal signs of life on Mars is one of the most important objectives for sending missions to the red planet. Here we report Red Stone, a 163-100 My alluvial fan–fan delta that formed under arid conditions in the Atacama Desert, rich in hematite and mudstones containing clays such as vermiculite and smectites, and therefore geologically analogous to Mars. We show that Red Stone samples display an important number of microorganisms with an unusual high rate of phylogenetic indeterminacy, what we refer to as “dark microbiome”, and a mix of biosignatures from extant and ancient microorganisms that can be barely detected with state-of-the-art laboratory equipment. Our analyses by testbed instruments that are on or will be sent to Mars unveil that although the mineralogy of Red Stone matches that detected by ground-based instruments on the red planet, similarly low levels of organics will be hard, if not impossible to detect in Martian rocks depending on the instrument and technique used. Our results stress the importance in returning samples to Earth for conclusively addressing whether life ever existed on Mars.
URI : http://hdl.handle.net/20.500.12666/885
ISSN : 2041-1723
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