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An Optimized UPLC-QTof-MS Method for Plant Metabolomics and Secondary Metabolism

机译:用于植物代谢组和次生新陈代谢的优化UPLC-QTOF-MS方法

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A new UPLC-QTof-MS method has been developed. This method was optimized for flow rate, column diameter, column length, column temperature and solvent gradient. Overall, the 2.1 X 150 mm column gave the best separation at a column temperature of 60 deg C and a flow rate of 560 (mu)L/min. The UPLC-QTof-MS method can be used for all plant tissue types - roots, leaf, stem and seed This method has applications across a broad range of secondary metabolites including saponins, glucosinolates and flavonoids.
机译:已开发出新的UPLC-QTOF-MS方法。该方法针对流速,柱直径,柱长,柱温和溶剂梯度进行了优化。总的来说,2.1×150mm列在塔温下的最佳分离,在60℃的柱温下,流速为560(mu)l / min。 UPLC-QTOF-MS方法可用于所有植物组织类型 - 根,叶,茎和种子该方法具有跨越广泛的次级代谢产物,包括皂苷,葡萄糖酸盐和黄酮类化合物。

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