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Semiautomated Alignment of High-Throughput Metabolite Profiles with Chemometric Tools

机译:使用化学计量工具对高通量代谢物谱进行半自动比对

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The rapid increase in the use of metabolite profiling/fingerprinting techniques to resolve complicated issues in metabolomics has stimulated demand for data processing techniques, such as alignment, to extract detailed information. In this study, a new and automated method was developed to correct the retention time shift of high-dimensional and high-throughput data sets. Information from the target chromatographic profiles was used to determine the standard profile as a reference for alignment. A novel, piecewise data partition strategy was applied for the determination of the target components in the standard profile as markers for alignment. An automated target search (ATS) method was proposed to find the exact retention times of the selected targets in other profiles for alignment. The linear interpolation technique (LIT) was employed to align the profiles prior to pattern recognition, comprehensive comparison analysis, and other data processing steps. In total, 94 metabolite profiles of ginseng were studied, including the most volatile secondary metabolites. The method used in this article could be an essential step in the extraction of information from high-throughput data acquired in the study of systems biology, metabolomics, and biomarker discovery.
机译:为了解决代谢组学中的复杂问题,使用代谢物谱/指纹技术的迅速增加刺激了对数据处理技术(例如比对)以提取详细信息的需求。在这项研究中,开发了一种新的自动化方法来纠正高维和高通量数据集的保留时间偏移。来自目标色谱图的信息用于确定标准图,作为比对的参考。一种新颖的分段数据分区策略被用于确定标准配置文件中的目标成分,作为对齐标记。提出了一种自动目标搜索(ATS)方法,以在其他轮廓中找到所选目标的准确保留时间以进行比对。线性插值技术(LIT)用于在模式识别,全面比较分析和其他数据处理步骤之前对齐轮廓。总共研究了94种人参代谢产物,包括挥发性最高的次生代谢产物。本文中使用的方法可能是从系统生物学,代谢组学和生物标记发现研究中获得的高通量数据中提取信息的关键步骤。

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