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Direct Analysis in Real Time by Mass Spectrometric Technique for Determining the Variation in Metabolite Profiles of Cinnamomum tamala Nees and Eberm Genotypes

机译:实时直接质谱分析法测定肉桂果和Eberm基因型的代谢物谱变化

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摘要

Cinnamomum tamala Nees & Eberm. is an important traditional medicinal plant, mentioned in various ancient literatures such as Ayurveda. Several of its medicinal properties have recently been proved. To characterize diversity in terms of metabolite profiles of Cinnamomum tamala Nees and Eberm genotypes, a newly emerging mass spectral ionization technique direct time in real time (DART) is very helpful. The DART ion source has been used to analyze an extremely wide range of phytochemicals present in leaves of Cinnamomum tamala. Ten genotypes were assessed for the presence of different phytochemicals. Phytochemical analysis showed the presence of mainly terpenes and phenols. These constituents vary in the different genotypes of Cinnamomum tamala. Principal component analysis has also been employed to analyze the DART data of these Cinnamomum genotypes. The result shows that the genotype of Cinnamomum tamala could be differentiated using DART MS data. The active components present in Cinnamomum tamala may be contributing significantly to high amount of antioxidant property of leaves and, in turn, conditional effects for diabetic patients.
机译:Cinnamomum tamala Nees和Eberm。是一种重要的传统药用植物,在各种古代文献(如阿育吠陀)中都提到过。最近已经证明了其一些医学特性。为了表征Cinnamomum tamala Nees和Eberm基因型的代谢产物特征,一种新兴的实时实时电离质谱技术(DART)非常有帮助。 DART离子源已被用于分析肉桂柱叶中存在的多种植物化学物质。评估了十个基因型的不同植物化学物质的存在。植物化学分析表明主要存在萜烯和苯酚。这些成分在肉桂的不同基因型中有所不同。主成分分析也已用于分析这些肉桂基因型的DART数据。结果表明,利用DART MS数据可以鉴别出肉桂的基因型。肉桂中存在的活性成分可能显着促进了叶片的大量抗氧化性能,进而对糖尿病患者产生了条件性作用。

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