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No Effect of Microgravity and Simulated Mars Gravity on Final Bacterial Cell Concentrations on the International Space Station: Applications to Space Bioproduction

Santomartino, Rosa and Waajen, Annemiek C. and de Wit, Wessel and Nicholson, Natasha and Parmitano, Luca and Loudon, Claire-Marie and Moeller, Ralf and Rettberg, Petra and Fuchs, Felix M. and Van Houdt, Rob and Finster, Kai and Coninx, Ilse and Krause, Jutta and Koehler, Andrea and Caplin, Nicol and Zuijderduijn, Lobke and Zolesi, Valfredo and Balsamo, Michele and Mariani, Alessandro and Pellari, Stefano S. and Carubia, Fabrizio and Luciani, Giacomo and Leys, Natalie and Doswald-Winkler, Jeannine and Herová, Magdalena and Wadsworth, Jennifer and Everroad, R. Craig and Rattenbacher, Bernd and Demets, René and Cockell, Charles S. (2020) No Effect of Microgravity and Simulated Mars Gravity on Final Bacterial Cell Concentrations on the International Space Station: Applications to Space Bioproduction. Frontiers in Microbiology, 11, p. 579156. Frontiers Media S.A.. doi: 10.3389/fmicb.2020.579156. ISSN 1664-302X.

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Official URL: http://dx.doi.org/10.3389/fmicb.2020.579156

Abstract

Microorganisms perform countless tasks on Earth and they are expected to be essential for human space exploration. Despite the interest in the responses of bacteria to space conditions, the findings on the effects of microgravity have been contradictory, while the effects of Martian gravity are nearly unknown. We performed the ESA BioRock experiment on the International Space Station to study microbe-mineral interactions in microgravity, simulated Mars gravity and simulated Earth gravity, as well as in ground gravity controls, with three bacterial species: Sphingomonas desiccabilis, Bacillus subtilis, and Cupriavidus metallidurans. To our knowledge, this was the first experiment to study simulated Martian gravity on bacteria using a space platform. Here, we tested the hypothesis that different gravity regimens can influence the final cell concentrations achieved after a multi-week period in space. Despite the different sedimentation rates predicted, we found no significant differences in final cell counts and optical densities between the three gravity regimens on the ISS. This suggests that possible gravityrelated effects on bacterial growth were overcome by the end of the experiment. The results indicate that microbial-supported bioproduction and life support systems can be effectively performed in space (e.g., Mars), as on Earth.

Item URL in elib:https://elib.dlr.de/136838/
Document Type:Article
Title:No Effect of Microgravity and Simulated Mars Gravity on Final Bacterial Cell Concentrations on the International Space Station: Applications to Space Bioproduction
Authors:
AuthorsInstitution or Email of AuthorsAuthor's ORCID iDORCID Put Code
Santomartino, RosaUK Centre for Astrobiology, School of Physics and Astronomy, University of Edinburgh, Edinburgh, United Kingdom; rosa.santomartino (at) ed.ac.ukUNSPECIFIEDUNSPECIFIED
Waajen, Annemiek C.UK Centre for Astrobiology, School of Physics and Astronomy, University of Edinburgh, Edinburgh, United KingdomUNSPECIFIEDUNSPECIFIED
de Wit, WesselUK Centre for Astrobiology, School of Physics and Astronomy, University of Edinburgh, Edinburgh, United KingdomUNSPECIFIEDUNSPECIFIED
Nicholson, NatashaUK Centre for Astrobiology, School of Physics and Astronomy, University of Edinburgh, Edinburgh, United KingdomUNSPECIFIEDUNSPECIFIED
Parmitano, LucaEuropean Space Research and Technology Centre (ESTEC), Noordwijk, NetherlandsUNSPECIFIEDUNSPECIFIED
Loudon, Claire-MarieUK Centre for Astrobiology, School of Physics and Astronomy, University of Edinburgh, Edinburgh, United KingdomUNSPECIFIEDUNSPECIFIED
Moeller, RalfRadiation Biology Department, Institute of Aerospace Medicine, German Aerospace Center (DLR), Cologne, Germany; Ralf.Moeller (at) dlr.dehttps://orcid.org/0000-0002-2371-0676UNSPECIFIED
Rettberg, PetraRadiation Biology Department, Institute of Aerospace Medicine, German Aerospace Center (DLR), 51147 Cologne, Germany; Petra.Rettberg (at) dlr.dehttps://orcid.org/0000-0003-4439-2395UNSPECIFIED
Fuchs, Felix M.Radiation Biology Department, Institute of Aerospace Medicine, German Aerospace Center (DLR), Cologne, Germany; felix.fuchs (at) dlr.dehttps://orcid.org/0000-0001-5669-5655UNSPECIFIED
Van Houdt, RobMicrobiology Unit, Belgian Nuclear Research Centre, SCK CEN, Mol, BelgiumUNSPECIFIEDUNSPECIFIED
Finster, KaiDepartment of Biology – Microbiology, Aarhus University, Aarhus C, DenmarkUNSPECIFIEDUNSPECIFIED
Coninx, IlseMicrobiology Unit, Belgian Nuclear Research Centre, SCK CEN, Mol, BelgiumUNSPECIFIEDUNSPECIFIED
Krause, JuttaEuropean Space Research and Technology Centre (ESTEC), Noordwijk, NetherlandsUNSPECIFIEDUNSPECIFIED
Koehler, AndreaEuropean Space Research and Technology Centre (ESTEC), Noordwijk, NetherlandsUNSPECIFIEDUNSPECIFIED
Caplin, NicolEuropean Space Research and Technology Centre (ESTEC), Noordwijk, NetherlandsUNSPECIFIEDUNSPECIFIED
Zuijderduijn, LobkeEuropean Space Research and Technology Centre (ESTEC), Noordwijk, NetherlandsUNSPECIFIEDUNSPECIFIED
Zolesi, ValfredoKayser Italia S.r.l., Livorno, ItalyUNSPECIFIEDUNSPECIFIED
Balsamo, MicheleKayser Italia S.r.l., Livorno, ItalyUNSPECIFIEDUNSPECIFIED
Mariani, AlessandroKayser Italia S.r.l., Livorno, ItalyUNSPECIFIEDUNSPECIFIED
Pellari, Stefano S.Kayser Italia S.r.l., Livorno, ItalyUNSPECIFIEDUNSPECIFIED
Carubia, FabrizioKayser Italia S.r.l., Livorno, ItalyUNSPECIFIEDUNSPECIFIED
Luciani, GiacomoKayser Italia S.r.l., Livorno, ItalyUNSPECIFIEDUNSPECIFIED
Leys, NatalieMicrobiology Unit, Belgian Nuclear Research Centre, SCK CEN, Mol, BelgiumUNSPECIFIEDUNSPECIFIED
Doswald-Winkler, JeannineBIOTESC, Hochschule Luzern Technik und Architektur, Hergiswil, SwitzerlandUNSPECIFIEDUNSPECIFIED
Herová, MagdalenaBIOTESC, Hochschule Luzern Technik und Architektur, Hergiswil, SwitzerlandUNSPECIFIEDUNSPECIFIED
Wadsworth, JenniferExobiology Branch, NASA Ames Research Center, Moffet Field, CA, United StatesUNSPECIFIEDUNSPECIFIED
Everroad, R. CraigExobiology Branch, NASA Ames Research Center, Moffet Field, CA, United StatesUNSPECIFIEDUNSPECIFIED
Rattenbacher, BerndBIOTESC, Hochschule Luzern Technik und Architektur, Hergiswil, SwitzerlandUNSPECIFIEDUNSPECIFIED
Demets, RenéEuropean Space Research and Technology Centre (ESTEC), Noordwijk, NetherlandsUNSPECIFIEDUNSPECIFIED
Cockell, Charles S.UK Centre for Astrobiology, School of Physics and Astronomy, University of Edinburgh, Edinburgh, United Kingdom; c.s.cockell (at) ed.ac.ukhttps://orcid.org/0000-0003-3662-0503UNSPECIFIED
Date:14 October 2020
Journal or Publication Title:Frontiers in Microbiology
Refereed publication:Yes
Open Access:Yes
Gold Open Access:Yes
In SCOPUS:Yes
In ISI Web of Science:Yes
Volume:11
DOI:10.3389/fmicb.2020.579156
Page Range:p. 579156
Publisher:Frontiers Media S.A.
ISSN:1664-302X
Status:Published
Keywords:microgravity (μg), spaceflight, Mars gravity, BioRock, International Space Station (ISS), space microbiology, space bioproduction, bacterial cell concentration
HGF - Research field:Aeronautics, Space and Transport
HGF - Program:Space
HGF - Program Themes:Research under Space Conditions
DLR - Research area:Raumfahrt
DLR - Program:R FR - Research under Space Conditions
DLR - Research theme (Project):R - Vorhaben Strahlenbiologie (old)
Location: Köln-Porz
Institutes and Institutions:Institute of Aerospace Medicine > Radiation Biology
Deposited By: Kopp, Kerstin
Deposited On:06 Nov 2020 08:43
Last Modified:06 Nov 2020 08:43

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