Comprehensive profiling of semi-polar phytochemicals in whole wheat grains (Triticum aestivum) using liquid chromatography coupled with electrospray ionization quadrupole time-of-flight mass spectrometry.

Leslie Tais, Hartwig Schulz, Christoph Böttcher
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引用次数: 5

Abstract

Introduction: Wheat (Triticum aestivum) it is one of the most important staple food crops worldwide and represents an important resource for human nutrition. Besides starch, proteins and micronutrients wheat grains accumulate a highly diverse set of phytochemicals.

Objectives: This work aimed at the development and validation of an analytical workflow for comprehensive profiling of semi-polar phytochemicals in whole wheat grains.

Method: Reversed-phase ultra-high performance liquid chromatography coupled with electrospray ionization quadrupole time-of-flight mass spectrometry (UHPLC/ESI-QTOFMS) was used as analytical platform. For annotation of metabolites accurate mass collision-induced dissociation mass spectra were acquired and interpreted in conjunction with literature data, database queries and analyses of reference compounds.

Results: Based on reversed-phase UHPLC/ESI-QTOFMS an analytical workflow for comprehensive profiling of semi-polar phytochemicals in whole wheat grains was developed. For method development the extraction procedure and the chromatographic separation were optimized. Using whole grains of eight wheat cultivars a total of 248 metabolites were annotated and characterized by chromatographic and tandem mass spectral data. Annotated metabolites comprise hydroquinones, hydroxycinnamic acid amides, flavonoids, benzoxazinoids, lignans and other phenolics as well as numerous primary metabolites such as nucleosides, amino acids and derivatives, organic acids, saccharides and B vitamin derivatives. For method validation, recovery rates and matrix effects were determined for ten exogenous model compounds. Repeatability and linearity were assessed for 39 representative endogenous metabolites. In addition, the accuracy of relative quantification was evaluated for six exogenous model compounds.

Conclusions: In conjunction with non-targeted and targeted data analysis strategies the developed analytical workflow was successfully applied to discern differences in the profiles of semi-polar phytochemicals accumulating in whole grains of eight wheat cultivars.

Abstract Image

Abstract Image

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利用液相色谱-电喷雾电离四极杆飞行时间质谱法对全麦谷物(Triticum aestivum)中的半极性植物化学物质进行综合分析。
小麦(Triticum aestivum)是世界上最重要的主粮作物之一,是人类重要的营养来源。除了淀粉、蛋白质和微量营养素外,小麦籽粒还积累了一系列高度多样化的植物化学物质。目的:本工作旨在开发和验证一种分析工作流程,用于全面分析全麦谷物中的半极性植物化学物质。方法:以反相超高效液相色谱-电喷雾电离四极杆飞行时间质谱(UHPLC/ESI-QTOFMS)为分析平台。为了对代谢物进行注释,我们结合文献数据、数据库查询和参考化合物分析,获得了准确的质量碰撞诱导解离质谱,并对其进行了解释。结果:基于反相UHPLC/ESI-QTOFMS,建立了小麦籽粒中半极性植物化学物质的综合分析流程。对提取工艺和色谱分离工艺进行了优化。利用8个小麦品种的全粒,对248种代谢物进行了色谱和串联质谱分析。标注的代谢物包括对苯二酚类、羟基肉桂酸酰胺、类黄酮、苯并恶嗪类、木脂素和其他酚类物质,以及许多初级代谢物,如核苷、氨基酸及其衍生物、有机酸、糖和B族维生素衍生物。为了验证方法,测定了10种外源模型化合物的回收率和基质效应。对39种代表性内源代谢物进行了重复性和线性评价。此外,还对6种外源模型化合物的相对定量准确性进行了评价。结论:结合非目标和目标数据分析策略,成功地应用开发的分析工作流来识别8个小麦品种全粒中半极性植物化学物质积累谱的差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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