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首页> 外文期刊>Astrobiology >Fatty Acid Preservation in Modern and Relict Hot-Spring Deposits in Iceland, with Implications for Organics Detection on Mars
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Fatty Acid Preservation in Modern and Relict Hot-Spring Deposits in Iceland, with Implications for Organics Detection on Mars

机译:冰岛现代和依赖热弹簧矿床的脂肪酸保存,对MARS的有机物检测有影响

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摘要

Hydrothermal spring deposits host unique microbial ecosystems and have the capacity to preserve microbial communities as biosignatures within siliceous sinter layers. This quality makes terrestrial hot springs appealing natural laboratories to study the preservation of both organic and morphologic biosignatures. The discovery of hydrothermal deposits on Mars has called attention to these hot springs as Mars-analog environments, driving forward the study of biosignature preservation in these settings to help prepare future missions targeting the recovery of biosignatures from martian hot-spring deposits. This study quantifies the fatty acid load in three Icelandic hot-spring deposits ranging from modern and inactive to relict. Samples were collected from both the surface and 2-18 cm in depth to approximate the drilling capabilities of current and upcoming Mars rovers. To determine the preservation potential of organics in siliceous sinter deposits, fatty acid analyses were performed with pyrolysis-gas chromatography-mass spectrometry (GC-MS) utilizing thermochemolysis with tetramethylammonium hydroxide (TMAH). This technique is available on both current and upcoming Mars rovers. Results reveal that fatty acids are often degraded in the subsurface relative to surface samples but are preserved and detectable with the TMAH pyrolysis-GC-MS method. Hot-spring mid-to-distal aprons are often the best texturally and geomorphically definable feature in older, degraded terrestrial sinter systems and are therefore most readily detectable on Mars from orbital images. These findings have implications for the detection of organics in martian hydrothermal systems as they suggest that organics might be detectable on Mars in relatively recent hot-spring deposits, but preservation likely deteriorates over geological timescales. Rovers with thermochemolysis pyrolysis-GC-MS instrumentation may be able to detect fatty acids in hot-spring deposits if the organics are relatively young; therefore, martian landing site and sample selection are of paramount importance in the search for organics on Mars.
机译:热液矿床春天主机独特的微生物生态系统,并有保存微生物群落为硅质烧结层内的生物信号的能力。这质量,使地表温泉的吸引力自然实验室研究有机和形态生物信号的保存。热液矿床的火星上发现呼吁关注这些温泉火星模拟环境中,驾驶着这些设置,以帮助保护biosignature的研究准备未来的任务目标从火星温泉沉积物生物信号的恢复。本研究量化在三个冰岛温泉沉积物从现代和惰性遗脂肪酸负载。样品从表面和2-18厘米的深度都收集近似当前和未来的火星探测器的钻探能力。为了确定在硅质烧结沉积的有机物的保存潜力,脂肪酸分析用裂解气相色谱 - 质谱法(GC-MS)利用与氢氧化四甲铵(TMAH)thermochemolysis进行。该技术可在当前和即将到来的火星探测器。结果表明,脂肪酸往往降解相对于样品表面地下中但被保留和可检测的与所述热解TMAH-GC-MS方法。温泉中到远端围裙通常在老年质感最好和geomorphically可定义特征,退化地面烧结系统,并且因此最容易检测到火星从轨道的图像。这些发现对于探测火星热液系统有机物的影响,因为他们认为,有机物可能在相对较近的温泉沉积物是在火星探测,但可能保存在恶化地质时间尺度。与热解thermochemolysis-GC-MS仪器流动站可以是能够检测在温泉沉积物脂肪酸如果有机物是相对年轻;因此,火星着陆点和样本选择是在寻找火星上的有机物至关重要。

著录项

  • 来源
    《Astrobiology》 |2021年第1期|60-82|共23页
  • 作者单位

    Univ Florida Dept Geol Sci 241 Williamson Hall Gainesville FL 32611 USA|NASA Goddard Space Flight Ctr Planetary Environm Lab Code 699 Greenbelt MD USA;

    Johns Hopkins Univ Appl Phys Lab Laurel MD USA;

    NASA Goddard Space Flight Ctr Planetary Environm Lab Code 699 Greenbelt MD USA|Georgetown Univ Dept Biol Washington DC 20057 USA;

    Georgetown Univ Dept Biol Washington DC 20057 USA|Georgetown Univ Sci Technol & Int Affairs Program Washington DC USA;

    NASA Goddard Space Flight Ctr Planetary Environm Lab Code 699 Greenbelt MD USA|Univ Maryland CRESST Ctr Res Explorat Space Sci & Technol College Pk MD 20742 USA;

    Arizona State Univ Sch Earth & Space Explorat Tempe AZ USA;

    NASA Goddard Space Flight Ctr Planetary Environm Lab Code 699 Greenbelt MD USA;

    Univ Copenhagen Nanosci Ctr Dept Chem Copenhagen Denmark;

    SETI Inst Mountain View CA USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hot springs; Sinter; Fatty acids; TMAH; SAM instrument;

    机译:温泉;烧结;脂肪酸;TMAH;SAM仪器;
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