Dethloff Frederik, Erban Alexander, Orf Isabel, Alpers Jessica, Fehrle Ines, Beine-Golovchuk Olga, Schmidt Stefanie, Schwachtje Jens, Kopka Joachim
Max-Planck-Institute of Molecular Plant Physiology, Applied Metabolome Analysis Research Group, Am Mühlenberg 1, 14476, Potsdam, Germany.
Methods Mol Biol. 2014;1166:171-97. doi: 10.1007/978-1-4939-0844-8_14.
This book chapter describes the analytical procedures required for the profiling of a metabolite fraction enriched for primary metabolites. The profiling is based on routine gas chromatography coupled to mass spectrometry (GC-MS). The generic profiling method is adapted to plant material, specifically to the analysis of single leaves from plants that were exposed to temperature stress experiments. The described method is modular. The modules include a rapid sampling and metabolic inactivation protocol for samples in a wide size range, a sample extraction procedure, a chemical derivatization step that is required to make the metabolite fraction amenable to gas chromatographic analysis, a routine GC-MS method, and finally the procedures of data processing and data mining. A basic and extendable set of standardizations for metabolite recovery and retention index alignment of the resulting GC-MS chromatograms is included. The method has two applications: (1) the rapid screening for changes of relative metabolite pools sizes under temperature stress and (2) the verification of cold-regulated metabolites by exact quantification using a GC-MS protocol with extended internal and external standardization.
本章描述了对富含初级代谢物的代谢物组分进行分析所需的分析程序。该分析基于常规气相色谱-质谱联用(GC-MS)。通用分析方法适用于植物材料,特别是用于对经受温度胁迫实验的植物单叶进行分析。所描述的方法是模块化的。这些模块包括针对各种尺寸范围样品的快速采样和代谢失活方案、样品提取程序、使代谢物组分适合气相色谱分析所需的化学衍生步骤、常规GC-MS方法,以及最后的数据处理和数据挖掘程序。还包括一套基本且可扩展的标准化方法,用于代谢物回收率和所得GC-MS色谱图保留指数校准。该方法有两个应用:(1)在温度胁迫下快速筛选相对代谢物库大小的变化;(2)通过使用具有扩展内标和外标的GC-MS方案进行精确定量来验证冷调节代谢物。