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采用联合溶液态和高分辨魔角旋转 NMR 方法在整个提取过程中对植物的极/准极性代谢物进行分析。

Profiling polar and semipolar plant metabolites throughout extraction processes using a combined solution-state and high-resolution magic angle spinning NMR approach.

机构信息

RIKEN Plant Science Center, 1-7-22 Suehiro-cho, Tsurumi-ku, Yokohama 235-0045, Japan.

出版信息

Anal Chem. 2010 Mar 1;82(5):1643-52. doi: 10.1021/ac9019076.

Abstract

In metabolomic analyses, care should be exercised as to which metabolites are extracted from the sample and which remain in the residue; the remaining metabolites are typically discarded following the extraction process. In this study, nuclear magnetic resonance (NMR)-based metabolomics was used to visualize plant metabolite profiles throughout a series of repeated extraction processes. Metabolites remaining in the extraction residues of (13)C-labeled Arabidopsis thaliana were recovered by repeated extraction using methanol-d(4) and deuterium oxide. The soluble extracts and residual pellets from each step of the extraction process were analyzed by both solution-state and high-resolution magic angle spinning NMR. Metabolic profiling based on chemical shifts in two-dimensional (1)H-(13)C heteronuclear single-quantum coherence spectra allowed the elucidation of both structural and chemical properties. In addition to the metabolite profile, there appears to be a relationship between metabolite structure and behavior throughout the repeated extraction process. These approaches suggest that metabolites are not always extracted in a single step and that the distribution of metabolites in an extraction scenario cannot be predicted solely on the basis of solubility or polarity. The composition of all metabolites in cells influences the solubility of each metabolite; thus, particular attention should be paid because changes in only a portion of the metabolites could influence the entire metabolite profile in a solvent extract.

摘要

在代谢组学分析中,应注意从样品中提取哪些代谢物以及哪些代谢物留在残渣中;提取过程后,通常会丢弃剩余的代谢物。在这项研究中,使用基于核磁共振(NMR)的代谢组学来可视化一系列重复提取过程中植物代谢物的图谱。通过使用甲醇-d(4)和重水对(13)C 标记的拟南芥的提取残渣进行重复提取,回收了残留在提取残渣中的代谢物。通过溶液状态和高分辨率魔角旋转 NMR 对提取过程每一步的可溶性提取物和残留颗粒进行分析。基于二维(1)H-(13)C 异核单量子相干谱中化学位移的代谢轮廓分析允许阐明结构和化学性质。除了代谢物图谱外,在整个重复提取过程中似乎还存在代谢物结构和行为之间的关系。这些方法表明,代谢物并非总是在单个步骤中提取,并且不能仅根据溶解度或极性来预测提取场景中代谢物的分布。细胞中所有代谢物的组成会影响每种代谢物的溶解度;因此,应特别注意,因为只有一部分代谢物的变化可能会影响溶剂提取物中的整个代谢物图谱。

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