The Determination of the Spatial Distribution of Indigenous Lipid Biomarkers in an Immature Jurassic Sediment Using Time-of-Flight-Secondary Ion Mass Spectrometry.

IF 3.5 3区 物理与天体物理 Q2 ASTRONOMY & ASTROPHYSICS
Astrobiology Pub Date : 2023-09-01 Epub Date: 2023-07-17 DOI:10.1089/ast.2022.0145
M Joseph Pasterski, Matthias Lorenz, Anton V Ievlev, Raveendra C Wickramasinghe, Luke Hanley, Fabien Kenig
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Abstract

The ability to detect and map lipids, including potential lipid biomarkers, within a sedimentary matrix using mass spectrometry (MS) imaging may be critical to determine whether potential lipids detected in samples returned from Mars are indigenous to Mars or are contaminants. Here, we use gas chromatography-mass spectrometry (GC-MS) and time-of-flight-secondary ion mass spectrometry (ToF-SIMS) datasets collected from an organic-rich, thermally immature Jurassic geologic sample to constrain MS imaging analysis of indigenous lipid biomarkers in geologic samples. GC-MS data show that the extractable fractions are dominated by C27-C30 steranes and sterenes as well as isorenieratene derivatives. ToF-SIMS spectra from organic matter-rich laminae contain a strong, spatially restricted signal for ions m/z 370.3, m/z 372.3, and m/z 386.3, which we assign to C27 sterenes, cholestane (C27), and 4- or 24-methyl steranes (C28), respectively, as well as characteristic fragment ions of isorenieratene derivatives, including m/z 133.1, m/z 171.1, and m/z 237.1. We observed individual steroid spatial heterogeneity at the scale of tens to hundreds of microns. The fine-scale heterogeneity observed implies that indigenous lipid biomarkers concentrated within specific regions may be detectable via ToF-SIMS in samples with even low amounts of organic carbon, including in samples returned from Mars.

飞行时间二次离子质谱法测定侏罗纪未成熟沉积物中天然脂质生物标志物的空间分布。
使用质谱(MS)成像在沉积基质中检测和绘制脂质(包括潜在的脂质生物标志物)的能力对于确定从火星返回的样本中检测到的潜在脂质是火星固有的还是污染物可能至关重要。在这里,我们使用从富含有机物、热未成熟的侏罗纪地质样品中收集的气相色谱-质谱(GC-MS)和飞行时间二次离子质谱(ToF-SIMS)数据集来限制地质样品中本土脂质生物标志物的MS成像分析。GC-MS数据表明,可提取组分以C27-C30甾烷和甾烯以及异雷尼酯烯衍生物为主。来自富含有机物的薄层的ToF-SIMS光谱包含离子m/z 370.3、m/z 372.3和m/z 386.3的强的空间受限信号,我们将其分别归属于C27甾烯、胆甾烷(C27)和4-或24-甲基甾烷(C28),以及异雷尼烯衍生物的特征碎片离子,包括m/z 133.1、m/z 171.1和m/z 237.1。我们观察到个体类固醇的空间异质性在几十到几百微米的范围内。观察到的精细尺度异质性意味着,在有机碳含量甚至较低的样本中,包括从火星返回的样本,可以通过ToF-SIMS检测到集中在特定区域内的本土脂质生物标志物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Astrobiology
Astrobiology 生物-地球科学综合
CiteScore
7.70
自引率
11.90%
发文量
100
审稿时长
3 months
期刊介绍: Astrobiology is the most-cited peer-reviewed journal dedicated to the understanding of life''s origin, evolution, and distribution in the universe, with a focus on new findings and discoveries from interplanetary exploration and laboratory research. Astrobiology coverage includes: Astrophysics; Astropaleontology; Astroplanets; Bioastronomy; Cosmochemistry; Ecogenomics; Exobiology; Extremophiles; Geomicrobiology; Gravitational biology; Life detection technology; Meteoritics; Planetary geoscience; Planetary protection; Prebiotic chemistry; Space exploration technology; Terraforming
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