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DOI | 10.1038/s41598-017-08929-4 |
Mineralization and Preservation of an extremotolerant Bacterium Isolated from an Early Mars Analog Environment | |
Gaboyer, F.1; Le Milbeau, C.2; Bohmeier, M.3; Schwendner, P.4; Vannier, P.5; Beblo-Vranesevic, K.3; Rabbow, E.3; Foucher, F.1; Gautret, P.2; Guegan, R.2; Richard, A.6; Sauldubois, A.6; Richmann, P.2; Perras, A. K.12,13; Moissl-Eichinger, C.7; Cockell, C. S.4; Rettberg, P.3; Marteinsson5; Monaghan, E.8; Ehrenfreund, P.8; Garcia-Descalzo, L.9; Gomez, F.9; Malki, M.10; Amils, R.10; Cabezas, P.11; Walter, N.11; Westall, F.1 | |
通讯作者 | Gaboyer, F. |
来源期刊 | SCIENTIFIC REPORTS
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ISSN | 2045-2322 |
出版年 | 2017 |
卷号 | 7 |
英文摘要 | The artificial mineralization of a polyresistant bacterial strain isolated from an acidic, oligotrophic lake was carried out to better understand microbial (i) early mineralization and (ii) potential for further fossilisation. Mineralization was conducted in mineral matrixes commonly found on Mars and Early-Earth, silica and gypsum, for 6 months. Samples were analyzed using microbiological (survival rates), morphological (electron microscopy), biochemical (GC-MS, Microarray immunoassay, Rock-Eval) and spectroscopic (EDX, FTIR, RAMAN spectroscopy) methods. We also investigated the impact of physiological status on mineralization and long-term fossilisation by exposing cells or not to Mars-related stresses (desiccation and radiation). Bacterial populations remained viable after 6 months although the kinetics of mineralization and cell-mineral interactions depended on the nature of minerals. Detection of biosignatures strongly depended on analytical methods, successful with FTIR and EDX but not with RAMAN and immunoassays. Neither influence of stress exposure, nor qualitative and quantitative changes of detected molecules were observed as a function of mineralization time and matrix. Rock-Eval analysis suggests that potential for preservation on geological times may be possible only with moderate diagenetic and metamorphic conditions. The implications of our results for microfossil preservation in the geological record of Earth as well as on Mars are discussed. |
类型 | Article |
语种 | 英语 |
国家 | France ; Germany ; Scotland ; Iceland ; Austria ; Netherlands ; Spain |
收录类别 | SCI-E |
WOS记录号 | WOS:000407980000029 |
WOS关键词 | BLUE-GREEN-ALGAE ; EXPERIMENTAL SILICIFICATION ; EXPERIMENTAL FOSSILIZATION ; MOLECULAR PRESERVATION ; RAMAN-SPECTROSCOPY ; ARCHEAN CHERTS ; ATACAMA DESERT ; MICROORGANISMS ; SEARCH ; MICROFOSSILS |
WOS类目 | Multidisciplinary Sciences |
WOS研究方向 | Science & Technology - Other Topics |
资源类型 | 期刊论文 |
条目标识符 | http://119.78.100.177/qdio/handle/2XILL650/202342 |
作者单位 | 1.CNRS, Ctr Biophys Mol, Orleans, France; 2.Univ Orleans, CNRS, Inst Sci Terre Orleans, UMR 7327, 1A Rue Ferollerie, F-45071 Orleans 2, France; 3.German Aerosp Ctr DLR, Inst Aerosp Med, Radiat Biol Dept, Cologne, Germany; 4.Univ Edinburgh, Sch Phys & Astron, UK Ctr Astrobiol, Edinburgh, Midlothian, Scotland; 5.MATIS Prokaria, Reykjavik, Iceland; 6.Univ Orleans, Ctr Microscopie Elect, Orleans, France; 7.BioTechMed Graz, Graz, Austria; 8.Leiden Univ, Leiden Observ, Leiden, Netherlands; 9.Inst Nacl Tecn Aeroespacial, Ctr Astrobiol INTA CAB, Madrid, Spain; 10.Univ Autonoma Madrid, Madrid, Spain; 11.European Sci Fdn, Strasbourg, France; 12.Univ Regensburg, Dept Microbiol, Regensburg, Germany; 13.Med Univ Graz, Dept Internal Med, Graz, Austria |
推荐引用方式 GB/T 7714 | Gaboyer, F.,Le Milbeau, C.,Bohmeier, M.,et al. Mineralization and Preservation of an extremotolerant Bacterium Isolated from an Early Mars Analog Environment[J],2017,7. |
APA | Gaboyer, F..,Le Milbeau, C..,Bohmeier, M..,Schwendner, P..,Vannier, P..,...&Westall, F..(2017).Mineralization and Preservation of an extremotolerant Bacterium Isolated from an Early Mars Analog Environment.SCIENTIFIC REPORTS,7. |
MLA | Gaboyer, F.,et al."Mineralization and Preservation of an extremotolerant Bacterium Isolated from an Early Mars Analog Environment".SCIENTIFIC REPORTS 7(2017). |
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