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首页> 外文期刊>JPC Bulletin on Iron & Steel >A New Method and Mass-Spectrometric Instrument for Extraterrestrial Microbial Life Detection Using the Elemental Composition Analyses of Martian Regolith and Permafrost/Ice
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A New Method and Mass-Spectrometric Instrument for Extraterrestrial Microbial Life Detection Using the Elemental Composition Analyses of Martian Regolith and Permafrost/Ice

机译:使用Martian RemoLith和Pumafrost / Ice的元素成分分析进行外星微生物寿命检测的一种新方法和质谱仪

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摘要

We propose a new technique for the detection of microorganisms by elemental composition analyses of a sample extracted from regolith, permafrost, and ice of extraterrestrial bodies. We also describe the design of the ABIMAS instrument, which consists of the onboard time-of-flight laser mass-reflectron (TOF LMR) and the sample preparation unit (SPU) for biomass extraction. This instrument was initially approved to fly on board the ExoMars 2020 lander mission. The instrument can be used to analyze the elemental composition of possible extraterrestrial microbial communities and compare it to that of terrestrial microorganisms. We have conducted numerous laboratory studies to confirm the possibility of biomass identification via the following biomarkers: P/S and Ca/K ratios, and C and N abundances. We underline that only the combination of these factors will allow one to discriminate microbial samples from geological ones. Our technique has been tested experimentally in numerous laboratory trials on cultures of microorganisms and polar permafrost samples as terrestrial analogues for martian polar soils. We discuss various methods of extracting microorganisms and sample preparation. The developed technique can be used to search for and identify microorganisms in different martian samples and in the subsurface of other planets, satellites, comets, and asteroids—in particular, Europa, Ganymede, and Enceladus. Key Words: Mass spectrometry—Life-detection instruments—Biomarkers—Earth Mars—Biomass spectra. Astrobiology 17, 448–458.
机译:我们提出了一种通过从石油血清,永久冻土和异物冰冰中提取的样品的元素成分分析检测微生物的新技术。我们还描述了Abimas仪器的设计,该仪器包括用于生物质提取的船上飞行时间激光质量 - 反射(TOF LMR)和样品制备单元(SPU)。该仪器最初批准批准船上的展望2020较陆地使命。该仪器可用于分析可能的外星微生物群落的元素组成,并将其与陆生微生物的组成进行比较。我们已经进行了许多实验室研究,以通过以下生物标志物证实生物量鉴定的可能性:P / S和CA / K比,以及C和N丰度。我们强调,这些因素的组合只能允许一个歧视来自地质学的微生物样本。我们的技术已经在实验上进行了实验测试,这些实验室试验是Martian极性土壤的陆地类似物的微生物和极性多年冻土样品的实验室试验。我们讨论了各种提取微生物和样品制备方法。开发的技术可用于搜索和识别不同火星样本中的微生物,以及在其他行星,卫星,彗星和小行星的地下 - 特别是欧罗巴,甘德和群体。关键词:质谱 - 寿命 - 寿命检测仪器 - 生物标志物 - 地球火星 - 生物量谱。天体学17,448-458。

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  • 来源
    《JPC Bulletin on Iron & Steel》 |2017年第5期|共11页
  • 作者单位

    Space Research Institute Russian Academy of Sciences Moscow Russian Federation.;

    Space Research Institute Russian Academy of Sciences Moscow Russian Federation.;

    Space Research Institute Russian Academy of Sciences Moscow Russian Federation.;

    Space Research Institute Russian Academy of Sciences Moscow Russian Federation.;

    Department of Physics Astronomy and Computational Sciences George Mason University Fairfax Virginia USA.;

    Physics Institute University of Bern Bern Switzerland.;

    Space Research Institute Russian Academy of Sciences Moscow Russian Federation.;

    Space Research Institute Russian Academy of Sciences Moscow Russian Federation.;

    Institute of Geological Chemistry Russian Academy of Sciences Moscow Russian Federation.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 钢铁冶炼(黑色金属冶炼)(总论);
  • 关键词

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