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Rapid fingerprinting of grape volatile composition using secondary electrospray ionization orbitrap mass spectrometry: A preliminary study of grape ripening

机译:葡萄挥发性组合物快速指纹使用二次电喷雾电离壁法质谱:葡萄成熟的初步研究

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We present a rapid and sensitive method based on secondary electrospray ionization mass spectrometry (SESI-MS) for profiling volatile emissions from the intact berries of non-Muscat grape cultivars (Pinot Noir, Chardonnay and Sauvignon Blanc). The method does not require sample preparation or concentration steps. Grape volatiles were tentatively identified based on accurate mass, the related elemental composition and literature. Approximately 300 peaks were detected in positive ion mode, and fewer (70-100) in negative ion mode. We monitored changes in grape berry volatile composition during ripening to screen for potential ripeness markers and observed ten [M+H](+) peaks and two [M-H](-) peaks that evolved in a significant linear trend (R-2 >= 0.80, p 0.05) for the combined data across all cultivars either increasing or decreasing in the final four weeks of ripening. Peaks assigned to C-13-norisoprenoids and benzenoid derivatives have shown similar trends in previous studies using offline gas chromatography (GC) approaches. Principal components analysis showed that negative ion mode clearly separated each stage of grape ripeness, whilst positive ion mode only separated berries in the final stage, pre-harvest. From this preliminary study, we conclude that SESI-MS holds promise as a tool for rapid screening of grape volatiles. Some marker ions had no interfering peaks within a 1-Da window, such that they could be monitored with simple unit -resolution instruments in future studies. This implies that SESI-MS in combination with portable MS instrumentation has potential for field analysis where real-time analysis is key. (C) 2017 Elsevier Ltd. All rights reserved.
机译:我们介绍了一种基于二次电喷雾电离质谱(SESI-MS)的快速和敏感的方法,用于从非马斯喀特葡萄品种的完整浆果(Pinot Noir,Chardonnay和Sauvignon Blanc)的完整浆果分析挥发性排放。该方法不需要样品制备或浓缩步骤。葡萄挥发物根据精确的质量,相关元素组成和文献暂时鉴定。以正离子模式检测约300峰,较少(70-100)的负离子模式。在成熟过程中监测葡萄浆果挥发性组合物的变化,以筛选潜在的成熟标记,并且观察到以显着线性趋势(R-2> = 0.80,p <0.05)对于所有品种的组合数据,在成熟的最后四周内增加或减少。分配给C-13-NORISOPRONOIDS和苯胞外衍生物的峰表明了使用离线气相色谱(GC)方法的先前研究的类似趋势。主成分分析表明,负离子模式明显地分离了葡萄成熟度的每个阶段,而阳性离子模式仅在最终阶段仅分离浆果,预先收获。从这个初步研究来看,我们得出结论,SESI-MS作为一种快速筛选葡萄挥发物的工具。一些标记离子在1-DA窗口内没有干扰峰,使得它们可以在未来的研究中用简单的单位 - 整理仪器监测它们。这意味着SESI-MS与便携式MS仪器组合具有潜在的现场分析,其中实时分析是关键。 (c)2017 Elsevier Ltd.保留所有权利。

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