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GC-MS, FT-IR and NMR Spectroscopy Analysis for Metabolome Profiling of Thyme Oil

机译:百里香油代谢组学分析的GC-MS,FT-IR和NMR光谱分析

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摘要

The tracking of nhvtoconstituents is an important step for isolation of biologically active compounds from vegetal source In this study GC- MS, FT-IR and NMR spectroscopic tods were used to characterize various secondary metabolites of thyme oil. The information provided by various spectrophotometric data enabled the indepth characterisation of thyme oil. The phytochemica! screening of thyme oil (TO) revealed the presence of Terpinene-4-ol 62.7%) followed by Thymol (18.1%), α-Terpinene (7.4%), Carvacrol (5,6%) and α-pinene (3.5%), but the levels of other compounds were low. FT -IR analysis mainly revealed the presence of Alkyl, Aromatic, Phenolic, Amines, Nitro, Aldehyde .functional Groups and Alpha, and beta unsaturated aliphatic compounds. Particular emphasis has been given to the use of NMR as a fast and reliable tool to analyse thyme oil using 1H, 13C, NMR. (on Broker DRX-300 spectrophotometer). The present study demonstrates that thyme oil metabolome profiling by GC-MS combined with FT-IR and NMR is useful for characterising the secondary metabolites of volatile essential oil.
机译:追踪天然成分是从植物来源分离生物活性化合物的重要步骤。在这项研究中,GC-MS,FT-IR和NMR光谱法被用来表征百里香油的各种次级代谢产物。各种分光光度数据提供的信息可以对百里香油进行深入表征。植物化学!百里香油(TO)的筛选显示存在Terpinene-4-ol 62.7%),其次是百里香酚(18.1%),α-萜品烯(7.4%),香芹酚(5.6%)和α-pine烯(3.5%) ,但其他化合物的含量较低。 FT-IR分析主要表明存在烷基,芳族,酚类,胺类,硝基,醛官能团和α,以及β不饱和脂族化合物。特别强调了使用NMR作为使用1H,13C,NMR分析百里香油的快速可靠的工具。 (在Broker DRX-300分光光度计上)。本研究表明通过GC-MS结合FT-IR和NMR进行的百里香油代谢组谱分析可用于表征挥发性香精油的次生代谢产物。

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