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靶向和非靶向高分辨质谱法用于杂交葡萄中糖基化简单酚类物质的假定分析。

Targeted and untargeted high resolution mass approach for a putative profiling of glycosylated simple phenols in hybrid grapes.

机构信息

Centro Trasferimento Tecnologico, Fondazione E. Mach, via E. Mach 1, 38010 San Michele all'Adige, TN, Italy.

Universidad de la Republica Uruguay, Facultad de Quimica, Gral. Flores 2124, C.P. 11800, Montevideo, Uruguay.

出版信息

Food Res Int. 2017 Aug;98:20-33. doi: 10.1016/j.foodres.2017.01.011. Epub 2017 Jan 13.

Abstract

Vitis vinifera is one of the most widespread grapevines around the world representing the raw material for high quality wine production. The availability of more resistant interspecific hybrid vine varieties, developed from crosses between Vitis vinifera and other Vitis species, has generated much interest, also due to the low environmental effect of production. However, hybrid grape wine composition and varietal differences between interspecific hybrids have not been well defined, particularly for the simple phenols profile. The dynamic of these phenols in wines, where the glycosylated forms can be transformed into the free ones during winemaking, also raises an increasing health interest by their role as antoxidants in wine consumers. In this work an on-line SPE clean-up device, to reduce matrix interference, was combined with ultra-high liquid chromatography-high resolution mass spectrometry in order to increase understanding of the phenolic composition of hybrid grape varieties. Specifically, the phenolic composition of 4 hybrid grape varieties (red, Cabernet Cantor and Prior; white, Muscaris and Solaris) and 2 European grape varieties (red, Merlot; white, Chardonnay) was investigated, focusing on free and glycosidically bound simple phenols and considering compound distribution in pulp, skin, seeds and wine. Using a targeted approach 53 free simple phenols and 7 glycosidic precursors were quantified with quantification limits ranging from 0.001 to 2mgKg and calibration R of 0.99 for over 86% of compounds. The untargeted approach made it possible to tentatively identify 79 glycosylated precursors of selected free simple phenols in the form of -hexoside (N=30), -pentoside (21), -hexoside-hexoside (17), -hexoside-pentoside (4), -pentoside-hexoside (5) and -pentoside-pentoside (2) derivatives on the basis of accurate mass, isotopic pattern and MS/MS fragmentation.

摘要

酿酒葡萄是世界上分布最广泛的葡萄品种之一,是优质葡萄酒生产的原料。具有较高抗性的种间杂交品种的出现引起了广泛关注,这主要是因为其生产对环境的影响较小。然而,种间杂交葡萄的葡萄酒成分和品种差异尚未得到很好的定义,特别是简单酚类物质的组成。这些酚类物质在葡萄酒中的动态变化(即在酿造过程中,糖苷形式可以转化为游离形式)也因其作为葡萄酒消费者抗氧化剂的作用而引起了人们对健康的日益关注。在这项工作中,在线 SPE 净化装置与超高效液相色谱-高分辨率质谱相结合,以提高对杂交葡萄品种酚类成分的认识。具体来说,研究了 4 个杂交葡萄品种(红葡萄品种 Cabernet Cantor 和 Prior;白葡萄品种 Muscaris 和 Solaris)和 2 个欧洲葡萄品种(红葡萄品种 Merlot;白葡萄品种 Chardonnay)的酚类成分,重点研究了游离和糖苷结合的简单酚类物质,并考虑了化合物在果肉、果皮、种子和葡萄酒中的分布。采用靶向方法,定量检测了 53 种游离简单酚类物质和 7 种糖苷前体,定量限为 0.001-2mg/kg,86%以上化合物的校准 R 为 0.99。非靶向方法可以根据精确质量、同位素模式和 MS/MS 碎片,以 -hexoside(N=30)、-pentoside(21)、-hexoside-hexoside(17)、-hexoside-pentoside(4)、-pentoside-hexoside(5)和 -pentoside-pentoside(2)衍生物的形式,暂定鉴定出 79 种游离简单酚类物质的糖苷前体。

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