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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Mass-spectra-based peak alignment for automatic nontargeted metabolic profiling analysis for biomarker screening in plant samples
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Mass-spectra-based peak alignment for automatic nontargeted metabolic profiling analysis for biomarker screening in plant samples

机译:基于质谱的植物样品中生物标志物筛选自动非诊所代谢分析分析的质谱峰值对准

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Nontargeted metabolic profiling analysis is a difficult task in a routine investigation because hundreds of chromatographic peaks are eluted within a short time, and the time shift problem is severe across samples. To address these problems, the present work developed an automatic nontargeted metabolic profiling analysis (anTMPA) method. First, peaks from the total ion chromatogram were extracted using modified multiscale Gaussian smoothing method. Then, a novel peak alignment strategy was employed based on the mass spectra and retention times of the peaks in which the maximum mass spectral correlation coefficient path was extracted using a modified dynamic programming method. Moreover, an automatic landmark peak-searching strategy was employed for self-adapting time shift modification. Missing peaks across samples were grouped and registered into the aligned peak list table for final refinement. Finally, the aligned peaks across samples were analyzed using statistical methods to identify potential biomarkers. Mass spectral information on the screened biomarkers could be directly imported into the National Institute of Standards and Technology library to select the candidate compounds. The performance of the anTMPA method was evaluated using a complicated plant gas chromatography mass spectrometry dataset with the aim of identifying biomarkers between the growth and maturation stages of the tested plant. (C) 2017 Elsevier B.V. All rights reserved.
机译:不诊断的代谢分析分析是在常规调查中的艰巨任务,因为在短时间内提出了数百种色谱峰,并且在样品上发生了时变问题。为了解决这些问题,目前的工作开发了自动非靶案的代谢分析分析(ANTMPA)方法。首先,使用改进的多尺度高斯平滑方法提取来自总离子色谱图的峰。然后,基于使用修改的动态编程方法提取最大质谱相关系数路径的峰的质谱和保留次数,采用新的峰对准策略。此外,采用自动地标峰值搜索策略用于自适应时移修改。将样本缺少峰值被分组并注册到对齐的峰值列表表中进行最终改进。最后,使用统计方法分析样品中的对齐峰来鉴定潜在的生物标志物。筛选生物标志物的质谱信息可以直接进口到国家标准和技术库研究所,选择候选化合物。使用复杂的植物气相色谱质谱法评价ANTMPA方法的性能,目的是识别经测试植物的生长和成熟阶段之间的生物标志物。 (c)2017年Elsevier B.V.保留所有权利。

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