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An approach to peak detection in GC-MS chromatograms and application of KNApSAcK database in prediction of candidate metabolites

机译:GC-MS色谱图中峰检测的方法以及KNApSAcK数据库在候选代谢物预测中的应用

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Since 2004, we have been developing a metabolite database concerning species-metabolite relations called KNApSAcK, which currently contains 49,165 species-metabolite relations incorporating 24,847 metabolites. In the present study, we report current status of KNApSAcK database and it's application to metabolomics fields and propose a new algorithm for detecting fragmentation patterns in a complicated mixture such as a plant tissue and a new scheme for analyzing spectral information leading to peak annotation of GC-MS spectra. When considering samples corresponding to a variety of species in addition to model species, KNApSAcK DB has strong potential for contribution to metabolomics research by way of applying it not only to simple metabolite search but also to further metabolomics analysis.
机译:自2004年以来,我们一直在开发有关物种与代谢物之间关系的代谢物数据库,称为KNApSAcK,该数据库目前包含49,165种物种与代谢物之间的关系,其中包含24,847种代谢物。在本研究中,我们报告了KNApSAcK数据库的现状及其在代谢组学领域的应用,并提出了一种用于检测复杂混合物(例如植物组织)中碎片模式的新算法,以及一种用于分析光谱信息的新方案,从而导致了GC的峰注释。 -MS谱。除了模型物种外,当考虑与多种物种对应的样本时,KNApSAcK DB不仅通过简单的代谢物搜索,而且还可以将其应用于进一步的代谢组学分析,因此在代谢组学研究中具有强大的潜力。

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