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Expressing Forest Origins in the Chemical Composition of Cooperage Oak Woods and Corresponding Wines by Using FTICR-MS

机译:使用FTICR-MS在制桶橡木和相应葡萄酒的化学成分中表达森林起源

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摘要

A non-targeted, ultra-high-resolution mass spectrometric, direct analysis of oak-wood extracts from two species (Quercus robur L. and Quercus petraea Liebl.) from three French forest, and of a wine aged in barrels derived there from has been performed to identify families of metabolites that could discriminate both the species and the geographical origin of woods. From 12 T ultra-high-resolution Fourier transform ion cyclotron resonance mass spectra of wood extracts, hundreds of mass signals were identified its possible significant biomarkers of the two species, with phenolic and carbohydrate moieties leading the differentiation between Q. robur and Q. petraea, respectively, as corroborated by both FTMS and NMR data. For the first time, it is shown that oak woods can also be discriminated oil the basis of hundreds of forest-related compounds, and particular emphasis is put on sessile oaks from the Troncais forest, for which sugars are significantly discriminant. Despite the higher complexity and diversity of wine metabolites, forest-related compounds can also be detected in wines aged in related barrels. It is only by using these non-targeted analyses that such innovative results, which reveal specific chemodiversities of natural materials, can be obtained.
机译:一种非目标的超高分辨率质谱法,直接分析了来自三个法国森林的两种树种(栎属和栎属栎)的橡木提取物,以及在其中提取的陈酿葡萄酒。进行了鉴定可以区分木材的物种和地理起源的代谢物家族。从木材提取物的12 T超高分辨率傅里叶变换离子回旋加速器共振质谱图中,数百种质量信号被鉴定为这两种物种可能的重要生物标志物,酚类和碳水化合物部分导致了罗伯特氏菌和彼得夏氏菌的区分。分别由FTMS和NMR数据证实。首次表明,橡树林也可以作为数百种与森林有关的化合物的基础上的油而被区分,并且特别强调了特隆凯斯森林中的无梗橡树,对于这些橡树,糖分具有明显的判别力。尽管葡萄酒代谢物的复杂性和多样性更高,但在相关酒桶中陈酿的葡萄酒中也可以检测到与森林有关的化合物。只有通过使用这些非针对性的分析,才能获得揭示天然材料特定化学多样性的创新结果。

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