Biais Benoit, Allwood J William, Deborde Catherine, Xu Yun, Maucourt Mickael, Beauvoit Bertrand, Dunn Warwick B, Jacob Daniel, Goodacre Royston, Rolin Dominique, Moing Annick
INRA, UMR619 Fruit Biology, BP81, F-33140 Villenave d'Ornon, France.
Anal Chem. 2009 Apr 15;81(8):2884-94. doi: 10.1021/ac9001996.
A metabolomics approach combining (1)H NMR and gas chromatography-electrospray ionization time-of-flight mass spectrometry (GC-EI-TOFMS) profiling was employed to characterize melon (Cucumis melo L.) fruit. In a first step, quantitative (1)H NMR of polar extracts and principal component analyses (PCA) of the corresponding data highlighted the major metabolites in fruit flesh, including sugars, organic acids, and amino acids. In a second step, the spatial localization of metabolites was investigated using both analytical techniques. Direct (1)H NMR profiling of juice or GC-EI-TOFMS profiling of tissue extracts collected from different locations in the fruit flesh provided information on advantages and drawbacks of each technique for the analysis of a sugar-rich matrix such as fruit. (1)H NMR and GC-EI-TOFMS data sets were compared using independently performed PCA and multiblock hierarchical PCA (HPCA), respectively. In addition a correlation-based multiblock HPCA was used for direct comparison of both analytical data sets. These data analyses revealed several gradients of metabolites in fruit flesh which can be related with differences in metabolism and indicated the suitability of multiblock HPCA for correlation of data from two (or potentially more) metabolomics platforms.
采用一种结合氢核磁共振(¹H NMR)和气相色谱-电喷雾电离飞行时间质谱(GC-EI-TOFMS)分析的代谢组学方法对甜瓜(Cucumis melo L.)果实进行表征。第一步,对极性提取物进行定量¹H NMR分析,并对相应数据进行主成分分析(PCA),突出了果肉中的主要代谢物,包括糖类、有机酸和氨基酸。第二步,使用这两种分析技术研究代谢物的空间定位。对果汁进行直接¹H NMR分析,或对从果肉不同位置收集的组织提取物进行GC-EI-TOFMS分析,提供了关于每种技术在分析富含糖分的基质(如水果)时优缺点的信息。分别使用独立进行的PCA和多块层次PCA(HPCA)对¹H NMR和GC-EI-TOFMS数据集进行比较。此外,基于相关性的多块HPCA用于直接比较这两种分析数据集。这些数据分析揭示了果肉中几种代谢物梯度,这可能与代谢差异有关,并表明多块HPCA适用于关联来自两个(或可能更多)代谢组学平台的数据。