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Profiling of Arabidopsis Secondary Metabolites by Capillary Liquid Chromatography Coupled to Electrospray Ionization Quadrupole Time-of-Flight Mass Spectrometry1

机译:毛细管液相色谱-电喷雾电离四极杆飞行时间质谱联用分析拟南芥次级代谢产物

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摘要

Large-scale metabolic profiling is expected to develop into an integral part of functional genomics and systems biology. The metabolome of a cell or an organism is chemically highly complex. Therefore, comprehensive biochemical phenotyping requires a multitude of analytical techniques. Here, we describe a profiling approach that combines separation by capillary liquid chromatography with the high resolution, high sensitivity, and high mass accuracy of quadrupole time-of-flight mass spectrometry. About 2,000 different mass signals can be detected in extracts of Arabidopsis roots and leaves. Many of these originate from Arabidopsis secondary metabolites. Detection based on retention times and exact masses is robust and reproducible. The dynamic range is sufficient for the quantification of metabolites. Assessment of the reproducibility of the analysis showed that biological variability exceeds technical variability. Tools were optimized or established for the automatic data deconvolution and data processing. Subtle differences between samples can be detected as tested with the chalcone synthase deficient tt4 mutant. The accuracy of time-of-flight mass analysis allows to calculate elemental compositions and to tentatively identify metabolites. In-source fragmentation and tandem mass spectrometry can be used to gain structural information. This approach has the potential to significantly contribute to establishing the metabolome of Arabidopsis and other model systems. The principles of separation and mass analysis of this technique, together with its sensitivity and resolving power, greatly expand the range of metabolic profiling.
机译:大规模代谢谱分析有望发展成为功能基因组学和系统生物学的组成部分。细胞或生物的代谢组在化学上是高度复杂的。因此,全面的生化表型分析需要多种分析技术。在这里,我们描述了一种将毛细管液相色谱分离与四极杆飞行时间质谱的高分辨率,高灵敏度和高质量精确度相结合的分析方法。在拟南芥根和叶的提取物中可以检测到大约2,000种不同的质量信号。其中许多源自拟南芥次生代谢产物。基于保留时间和精确质量的检测是可靠且可重现的。动态范围足以定量代谢产物。对分析可重复性的评估表明,生物学变异性超过技术变异性。为自动数据反卷积和数据处理优化或建立了工具。如查尔酮合酶缺陷型tt4突变体所检测,可以检测到样品之间的细微差异。飞行时间质量分析的准确性允许计算元素组成并初步鉴定代谢物。源内裂解和串联质谱可用于获取结构信息。这种方法有可能对建立拟南芥和其他模型系统的代谢组做出重大贡献。该技术的分离和质量分析原理及其灵敏度和分辨能力极大地扩展了代谢谱分析的范围。

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