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Comparing Spore Resistance of Bacillus Strains Isolated from Hydrothermal Vents and Spacecraft Assembly Facilities to Environmental Stressors and Decontamination Treatments

Zammuto, Vincenzo und Fuchs, Felix M. und Fiebrandt, Marcel und Stapelmann, Katharina und Ulrich, Nikea J. und Maugeri, Teresa L. und Pukall, Rüdiger und Gugliandolo, Concetta und Moeller, Ralf (2018) Comparing Spore Resistance of Bacillus Strains Isolated from Hydrothermal Vents and Spacecraft Assembly Facilities to Environmental Stressors and Decontamination Treatments. Astrobiology, 18 (11), Seiten 1425-1434. Mary Ann Liebert Inc.. doi: 10.1089/ast.2017.1715. ISSN 1531-1074.

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Offizielle URL: http://dx.doi.org/10.1089/ast.2017.1715

Kurzfassung

Submarine hydrothermal vents are inhabited by a variety of microorganisms capable of tolerating environmental extremes, making them ideal candidates to further expand our knowledge of the limitations for terrestrial life, including their ability to survive the exposure of spaceflight-relevant conditions. The spore resistance of two Bacillus spp. strains, APA and SBP3, isolated from two shallow vents off Panarea Island (Aeolian Islands, Italy), to artificial and environmental stressors (i.e., UVC radiation, X-rays, heat, space vacuum, hydrogen peroxide [H₂O₂], and low-pressure plasma), was compared with that of two close phylogenetic relatives (Bacillus horneckiae and Bacillus oceanisediminis). Additional comparisons were made with Bacillus sp. isolated from spacecraft assembly facilities (B. horneckiae, Bacillus pumilus SAFR-032, and Bacillus nealsonii) and the biodosimetry strain and space microbiology model organism Bacillus subtilis. Overall, a high degree of spore resistance to stressors was observed for the strains isolated from spacecraft assembly facilities, with an exceptional level of resistance seen by B. pumilus SAFR-032. The environmental isolate SBP3 showed a more robust spore resistance to UVC, X-rays, H₂O₂, dry heat, and space vacuum than the closely related B. horneckiae. Both strains (SBP3 and APA) were more thermotolerant than their relatives, B. horneckiae and B. oceanisediminis, respectively. SBP3 may have a novel use as a bacterial model organism for future interrogations into the potential of forward contamination in extraterrestrial environments (e.g., icy moons of Jupiter or Saturn), spacecraft sterilization and, broadly, microbial responses to spaceflight-relevant environmental stressors.

elib-URL des Eintrags:https://elib.dlr.de/122313/
Dokumentart:Zeitschriftenbeitrag
Titel:Comparing Spore Resistance of Bacillus Strains Isolated from Hydrothermal Vents and Spacecraft Assembly Facilities to Environmental Stressors and Decontamination Treatments
Autoren:
AutorenInstitution oder E-Mail-AdresseAutoren-ORCID-iDORCID Put Code
Zammuto, VincenzoDepartment of Chemical, Biological, Pharmaceutical and Environmental Sciences, Research Center for Extreme Environments and Extremophiles, University of Messina, Messina, ItalyNICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Fuchs, Felix M.Space Microbiology Research Group, Radiation Biology Department, Institute of Aerospace Medicine, German Aerospace Center (DLR e.V.), Cologne, Germany; felix.fuchs (at) dlr.dehttps://orcid.org/0000-0001-5669-5655NICHT SPEZIFIZIERT
Fiebrandt, MarcelBiomedical Applications of Plasma Technology, Institute for Electrical Engineering and Plasma Technology, Faculty of Electrical Engineering and Information Technology, Ruhr University Bochum, Bochum, GermanyNICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Stapelmann, KatharinaBiomedical Applications of Plasma Technology, Institute for Electrical Engineering and Plasma Technology, Faculty of Electrical Engineering and Information Technology, Ruhr University Bochum, Bochum, GermanyNICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Ulrich, Nikea J.Space Microbiology Research Group, Radiation Biology Department, Institute of Aerospace Medicine, German Aerospace Center (DLR e.V.), Cologne, GermanyNICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Maugeri, Teresa L.Department of Chemical, Biological, Pharmaceutical and Environmental Sciences, Research Center for Extreme Environments and Extremophiles, University of Messina, Messina, ItalyNICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Pukall, RüdigerLeibniz-Institute DSMZ–German Collection of Microorganisms and Cell Cultures, Braunschweig, GermanyNICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Gugliandolo, ConcettaDepartment of Chemical, Biological, Pharmaceutical and Environmental Sciences, Research Center for Extreme Environments and Extremophiles, University of Messina, Messina, ItalyNICHT SPEZIFIZIERTNICHT SPEZIFIZIERT
Moeller, RalfSpace Microbiology Research Group, Radiation Biology Department, Institute of Aerospace Medicine, German Aerospace Center (DLR e.V.), Cologne, Germany; ralf.moeller (at) dlr.dehttps://orcid.org/0000-0002-2371-0676NICHT SPEZIFIZIERT
Datum:30 Oktober 2018
Erschienen in:Astrobiology
Referierte Publikation:Ja
Open Access:Nein
Gold Open Access:Nein
In SCOPUS:Ja
In ISI Web of Science:Ja
Band:18
DOI:10.1089/ast.2017.1715
Seitenbereich:Seiten 1425-1434
Verlag:Mary Ann Liebert Inc.
ISSN:1531-1074
Status:veröffentlicht
Stichwörter:Bacillus species, Spore resistance, Radiation, Heat, Chemicals, Sterilization, Planetary protection.
HGF - Forschungsbereich:Luftfahrt, Raumfahrt und Verkehr
HGF - Programm:Raumfahrt
HGF - Programmthema:Forschung unter Weltraumbedingungen
DLR - Schwerpunkt:Raumfahrt
DLR - Forschungsgebiet:R FR - Forschung unter Weltraumbedingungen
DLR - Teilgebiet (Projekt, Vorhaben):R - Vorhaben Strahlenbiologie (alt)
Standort: Köln-Porz
Institute & Einrichtungen:Institut für Luft- und Raumfahrtmedizin > Strahlenbiologie
Hinterlegt von: Kopp, Kerstin
Hinterlegt am:27 Nov 2018 09:06
Letzte Änderung:02 Nov 2023 09:39

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