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首页> 外文期刊>Astrobiology >Critical Assessment of Analytical Techniques in the Search for Biomarkers on Mars: A Mummified Microbial Mat from Antarctica as a Best-Case Scenario
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Critical Assessment of Analytical Techniques in the Search for Biomarkers on Mars: A Mummified Microbial Mat from Antarctica as a Best-Case Scenario

机译:在火星上寻找生物标记物的分析技术的严格评估:南极木乃伊的木乃伊作为最佳案例

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摘要

The search for biomarkers of present or past life is one of the major challenges for in situ planetary exploration. Multiple constraints limit the performance and sensitivity of remote in situ instrumentation. In addition, the structure, chemical, and mineralogical composition of the sample may complicate the analysis and interpretation of the results. The aim of this work is to highlight the main constraints, performance, and complementarity of several techniques that have already been implemented or are planned to be implemented on Mars for detection of organic and molecular biomarkers on a best-case sample scenario. We analyzed a 1000-year-old desiccated and mummified microbial mat from Antarctica by Raman and IR (infrared) spectroscopies (near- and mid-IR), thermogravimetry (TG), differential thermal analysis, mass spectrometry (MS), and immunological detection with a life detector chip. In spite of the high organic content (ca. 20% wt/wt) of the sample, the Raman spectra only showed the characteristic spectral peaks of the remaining beta-carotene biomarker and faint peaks of phyllosilicates over a strong fluorescence background. IR spectra complemented the mineralogical information from Raman spectra and showed the main molecular vibrations of the humic acid functional groups. The TG-MS system showed the release of several volatile compounds attributed to biopolymers. An antibody microarray for detecting cyanobacteria (CYANOCHIP) detected biomarkers from Chroococcales, Nostocales, and Oscillatoriales orders. The results highlight limitations of each technique and suggest the necessity of complementary approaches in the search for biomarkers because some analytical techniques might be impaired by sample composition, presentation, or processing. Key Words: Planetary explorationLife detectionMicrobial matLife detector chipThermogravimetryRaman spectroscopyNIRDRIFTS. Astrobiology 17, 984-996.
机译:寻找现今或前世的生物标记物是原位行星探索的主要挑战之一。多重约束限制了远程原位仪器的性能和灵敏度。此外,样品的结构,化学和矿物组成可能会使结果的分析和解释复杂化。这项工作的目的是强调在火星上已经实施或计划实施的几种技术的主要约束条件,性能和互补性,这些技术可以在最佳情况下检测有机和分子生物标记。我们通过拉曼光谱和红外光谱(近红外和中红外),热重分析(TG),差热分析,质谱(MS)和免疫学检测分析了南极具有1000年历史的干燥和木乃伊化的微生物垫。带有寿命检测器芯片。尽管样品中的有机物含量很高(约20%wt / wt),但拉曼光谱仅在强荧光背景下显示了剩余的β-胡萝卜素生物标记物的特征光谱峰和页硅酸盐的微弱峰。红外光谱补充了拉曼光谱的矿物学信息,并显示了腐殖酸官能团的主要分子振动。 TG-MS系统显示出几种归因于生物聚合物的挥发性化合物的释放。一种用于检测蓝细菌的抗体微阵列(CYANOCHIP),可检测出来自球菌,鼻孔菌和颤动菌的生物标志物。结果突出了每种技术的局限性,并暗示了在寻找生物标记物中使用互补方法的必要性,因为某些分析技术可能会因样品的成分,呈递或处理而受到损害。关键词:行星探测生命探测微生物垫生命探测芯片热重法拉曼光谱近红外光谱。天体生物学17,984-996。

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