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基于气相色谱-质谱联用的植物代谢组学中碳标记研究

Gas Chromatography-Mass Spectrometry-Based C-Labeling Studies in Plant Metabolomics.

作者信息

Lima Valéria F, de Souza Leonardo Perez, Williams Thomas C R, Fernie Alisdair R, Daloso Danilo M

机构信息

Departamento de Bioquímica e Biologia Molecular, Universidade Federal do Ceará, Fortaleza, CE, Brazil.

Max Planck Institute of Molecular Plant Physiology, Potsdam-Golm, Germany.

出版信息

Methods Mol Biol. 2018;1778:47-58. doi: 10.1007/978-1-4939-7819-9_4.

Abstract

Stable-isotope labeling analysis has been used to discover new metabolic pathways and their key regulatory points in a wide range of organisms. Given the complexity of the plant metabolic network, this analysis provides information complementary to that obtained from metabolite profiling that can be used to understand how plants cope with adverse conditions, and how metabolism varies between different cells, tissues, and organs. Here we describe the experimental procedures from sample harvesting and extraction to mass spectral analysis and interpretation that allow the researcher to perform C-labeling experiments. A wide range of plant material, from single cells to whole plants, can be used to investigate the metabolic fate of the C from a predefined tracer. Thus, a key point of this analysis is to choose the correct biological system, the substrate and the condition to be investigated; all of which implicitly relies on the biological question to be investigated. Rapid sample quenching and a careful data analysis are also critical points in such studies. By contrast to other metabolomic approaches, stable-isotope labeling can provide information concerning the fluxes through metabolic networks, which is essential for understanding and manipulating metabolic phenotypes and therefore of pivotal importance for both systems biology and plant metabolic engineering.

摘要

稳定同位素标记分析已被用于在多种生物体中发现新的代谢途径及其关键调控点。鉴于植物代谢网络的复杂性,该分析提供了与代谢物谱分析所得信息互补的信息,可用于了解植物如何应对不利条件,以及代谢在不同细胞、组织和器官之间如何变化。在此,我们描述了从样品采集、提取到质谱分析和解读的实验步骤,这些步骤使研究人员能够进行碳标记实验。从单细胞到整株植物的各种植物材料都可用于研究来自预定义示踪剂的碳的代谢命运。因此,该分析的一个关键点是选择正确的生物系统、底物和待研究的条件;所有这些都隐含地依赖于待研究的生物学问题。快速样品淬灭和仔细的数据分析也是此类研究的关键点。与其他代谢组学方法相比,稳定同位素标记可以提供有关代谢网络通量的信息,这对于理解和操纵代谢表型至关重要,因此对于系统生物学和植物代谢工程都至关重要。

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