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首页> 外文期刊>Phytochemistry >Construction and application of a mass spectral and retention time index database generated from plant GC/EI-TOF-MS metabolite profiles
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Construction and application of a mass spectral and retention time index database generated from plant GC/EI-TOF-MS metabolite profiles

机译:植物GC / EI-TOF-MS代谢物谱图生成的质谱和保留时间指数数据库的构建和应用

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The non-supervised construction of a mass spectral and retention time index data base (MS/RI library) from a set of plant metabolic profiles covering major organs of potato (Solanum tuberosum), tobacco (Nicotiana tabaccum), and Arabidopsis thaliana, was demonstrated. Typically 300-500 mass spectral components with a signal to noise ratio greater than or equal to75 were obtained from GC/EI-time-of-flight (TOF)-MS metabolite profiles of methoxyaminated and trimethylsilylated extracts. Profiles from non-sample controls contained approximately 100 mass spectral components. A MS/RI library of 6205 mass spectral components was accumulated and applied to automated identification of the model compounds galactonic acid, a primary metabolite, and 3-caffeoylquinic acid, a secondary metabolite. Neither MS nor RI alone were sufficient for unequivocal identification of unknown mass spectral components. However library searches with single bait mass spectra of the respective reference substance allowed clear identification by mass spectral match and RI window. Moreover, the hit lists of mass spectral searches were demonstrated to comprise candidate components of highly similar chemical nature. The search for the model compound galactonic acid allowed identification of gluconic and gulonic acid among the top scoring mass spectral components. Equally successful was the exemplary search for 3-caffeoylquinic acid, which led to the identification of quinic acid and of the positional isomers, 4-caffeoylquinic acid, 5-caffeoylquinic acid among other still non-identified conjugates of caffeic and quinic acid. All identifications were verified by co-analysis of reference substances. Finally we applied hierarchical clustering to a complete set of pair-wise mass spectral comparisons of unknown components and reference substances with known chemical structure. We demonstrated that the resulting clustering tree depicted the chemical nature of the reference substances and that most of the nearest neighbours represented either identical components, as judged by co-elution, or conformational isomers exhibiting differential retention behaviour. Unknown components could be classified automatically by grouping with the respective branches and sub-branches of the clustering tree.
机译:演示了从一组植物代谢谱(涵盖马铃薯(Solanum tuberosum),烟草(Nicotiana tabaccum)和拟南芥)的植物代谢曲线中无监督构建质谱和保留时间指数数据库(MS / RI库)的方法。 。通常,从甲氧基胺化和三甲基甲硅烷基化提取物的GC / EI飞行时间(TOF)-MS代谢产物图谱中获得信噪比大于或等于75的300-500质谱成分。来自非样品对照的曲线包含约100个质谱成分。累积了6205个质谱成分的MS / RI库,并将其用于自动识别模型化合物半乳糖酸(一种主要代谢物)和3-咖啡酰奎宁酸(一种辅助代谢物)。单独使用MS和RI都不足以明确鉴定未知质谱成分。但是,使用相应参考物质的单个诱饵质谱进行库检索可以通过质谱匹配和RI窗口清楚地进行识别。此外,已证明质谱搜索的命中列表包含高度相似的化学性质的候选组分。对模型化合物半乳糖酸的搜索允许在得分最高的质谱成分中鉴定葡萄糖酸和古洛糖酸。同样成功的是对3-咖啡酰奎尼酸的示例性搜索,这导致了对奎尼酸和位置异构体,4-咖啡酰奎尼酸,5-咖啡酰奎尼酸以及咖啡因和奎尼酸的其他仍未鉴定的缀合物的鉴定。所有鉴定均通过对参考物质的共同分析进行验证。最后,我们将层次聚类应用于未知成分和化学结构已知的参考物质的完整成对质谱比较。我们证明了所得的聚类树描述了参考物质的化学性质,并且大多数最邻近的邻域代表通过共洗脱判断的相同组分,或表现出不同保留行为的构象异构体。未知组件可以通过与聚类树的各个分支和子分支进行分组来自动分类。

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