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首页> 外文期刊>Frontiers in Digital Humanities >Molecular Signals of Heterogeneous Terrestrial Environments Identified in Dissolved Organic Matter: A Comparative Analysis of Orbitrap and Ion Cyclotron Resonance Mass Spectrometers
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Molecular Signals of Heterogeneous Terrestrial Environments Identified in Dissolved Organic Matter: A Comparative Analysis of Orbitrap and Ion Cyclotron Resonance Mass Spectrometers

机译:在溶解的有机物质中识别出的异构地球环境的分子信号:Orbitrap和离子回旋共振质谱仪的比较分析

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摘要

Terrestrial dissolved organic matter (DOM) interlinks large carbon reservoirs of soils, sediments and marine environments but remains largely uncharacterized on the molecular level. Fourier Transform Mass Spectrometry (FTMS) has proven to be a powerful technique to reveal DOM chemodiversity and potential information encrypted therein. State-of the art FT-ICR MS (Ion Cyclotron Resonance) instruments are yet inaccessible for most researchers. To evaluate the performance of the most recent Orbitrap analyzer as a more accessible alternative, we compared our method to an established 15 Tesla FT-ICR MS on a diverse suite of 17 mainly terrestrial DOM samples regarding 1) ion abundance patterns, 2) differential effects of DOM type on information loss, and 3) derived biogeochemical information. We show that the Orbitrap provides similar information as FT-ICR MS, especially for compound masses below 400 m/z, and is mainly limited by its actual resolving power rather than its sensitivity. Ecosystems that are dominated by inputs of plant-derived material, like DOM from soil, bog, lake and rivers, showed remarkably low average mass to charge ratios, making them also suitable for Orbitrap measurements. The additional information gained from FT-ICR MS was highest in heteroatom-rich (N, S, P) samples from systems dominated by internal cycling, like DOM from groundwater and the deep sea. Here FT-ICR MS detected 37% more molecular formulae and 11% higher ion abundance. However, the overall information content, which was analyzed by multivariate statistical methods, was comparable for both data sets. Mass spectra-derived biogeochemical trends, for example the decrease of DOM aromaticity during the passage through terrestrial environments, were retrieved by both instruments. We demonstrate the growing potential of the Orbitrap as an alternative FTMS analyzer in the context of challenging analyses of DOM complexity, origin and fate.
机译:陆地溶解性有机物(DOM)将土壤,沉积物和海洋环境的大型碳储层相互链接,但在分子水平上仍然基本上没有特征。傅里叶变换质谱(FTMS)已被证明是揭示DOM化学多样性和其中加密的潜在信息的强大技术。大多数研究人员仍无法获得最新的FT-ICR MS(离子回旋共振)仪器。为了评估最新的Orbitrap分析仪作为更易于使用的替代产品的性能,我们将我们的方法与已建立的15款Tesla FT-ICR MS进行了比较,其中包含17种主要的地面DOM样品,涉及1)离子丰度模式,2)差异效应DOM类型对信息丢失的影响;以及3)导出的生物地球化学信息。我们表明,Orbitrap提供的信息与FT-ICR MS相似,尤其是对于质量低于400 m / z的化合物,并且主要受其实际分辨力而不是其灵敏度的限制。以植物为原料的输入(例如来自土壤,沼泽,湖泊和河流的DOM)为主导的生态系统显示出极低的平均质荷比,使其也适用于Orbitrap测量。从FT-ICR MS获得的附加信息在内部循环主导的系统中富含杂原子的(N,S,P)样品中最高,例如地下水和深海中的DOM。 FT-ICR MS检测到的分子式增加了37%,离子丰度提高了11%。但是,通过多变量统计方法分析的总体信息内容对于两个数据集都是可比的。两种仪器都检索了质谱衍生的生物地球化学趋势,例如在穿过地面环境期间DOM芳香度的降低。在具有挑战性的DOM复杂性,起源和命运分析的背景下,我们证明了Orbitrap作为替代FTMS分析仪的增长潜力。

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