Yilmaz Ali, Rudolph Heather L, Hurst Jerod J, Wood Troy D
Department of Chemistry, University of Southampton, Highfield , Southampton, SO17 1BJ United Kingdom.
Department of Chemistry, Natural Sciences Complex, University at Buffalo, State University of New York , Buffalo, New York 14260-3000, United States.
Anal Chem. 2016 Jan 19;88(2):1188-94. doi: 10.1021/acs.analchem.5b03340. Epub 2015 Dec 23.
As a relatively recent research field, plant metabolomics has gained increasing interest in the past few years and has been applied to answer biological questions through large-scale qualitative and quantitative analyses of the plant metabolome. The combination of sensitivity and selectivity offered by mass spectrometry (MS) for measurement of many metabolites in a single shot makes it an indispensable platform in metabolomics. In this regard, Fourier-transform ion cyclotron resonance (FTICR) has the unique advantage of delivering high mass resolving power and mass accuracy simultaneously, making it ideal for the study of complex mixtures such as plant extracts. Here we optimize soybean leaf extraction methods compatible with high-throughput reproducible MS-based metabolomics. In addition, matrix-assisted laser desorption ionization (MALDI) and direct LDI of soybean leaves are compared for metabolite profiling. The extraction method combined with electrospray (ESI)-FTICR is supported by the significant reduction of chlorophyll and its related metabolites as the growing season moves from midsummer to the autumn harvest day. To our knowledge for the first time, the use of ESI-FTICR MS and MALDI-FTICR MS is described in a complementary manner with the aim of metabolic profiling of plant leaves that have been collected at different time points during the growing season.
作为一个相对较新的研究领域,植物代谢组学在过去几年中越来越受到关注,并已被应用于通过对植物代谢组进行大规模定性和定量分析来回答生物学问题。质谱(MS)在单次测量中能够同时检测多种代谢物,兼具灵敏度和选择性,使其成为代谢组学中不可或缺的平台。在这方面,傅里叶变换离子回旋共振(FTICR)具有同时提供高质量分辨率和质量精度的独特优势,非常适合用于研究像植物提取物这样的复杂混合物。在此,我们优化了与基于高通量可重复质谱的代谢组学兼容的大豆叶片提取方法。此外,还比较了大豆叶片的基质辅助激光解吸电离(MALDI)和直接激光解吸电离用于代谢物谱分析的情况。随着生长季节从仲夏到秋收日的推移,叶绿素及其相关代谢物显著减少,这支持了结合电喷雾(ESI)-FTICR的提取方法。据我们所知,首次以互补的方式描述了使用ESI-FTICR质谱和MALDI-FTICR质谱对在生长季节不同时间点采集的植物叶片进行代谢物谱分析的情况。