Flamini Riccardo, Menicatti Marta, De Rosso Mirko, Gardiman Massimo, Mayr Christine, Pallecchi Marco, Danza Giovanna, Bartolucci Gianluca
Council for Agricultural Research and Economics-Viticulture and Enology (CREA-VE), Viale XXVIII Aprile 26, Conegliano, TV, 31015, Italy.
Department of Neurosciences, Psychology, Drug Research and Child Health, University of Florence, Via U. Schiff 6, 50019 Sesto F.no (FI), Florence, Italy.
J Mass Spectrom. 2018 Sep;53(9):792-800. doi: 10.1002/jms.4212. Epub 2018 Jul 9.
Monoterpene-glycosides are important aroma precursors that, undergo hydrolysis, confer intense floral notes to the wines. Therefore, the knowledge of the nature of the sugar residues and the structure of these molecules is of great interest. In present study, liquid chromatography (LC) separation coupled with different mass spectrometry (MS) experiments for the characterization of these compounds were explored. The LC parameters were tuned to optimize the resolution between the analytes present in grape sample extracts. Twenty principal peaks with a relative abundance >1% were selected and divided in 4 classes characterized by different molecular weight. In general, positive ionization of the studied compounds displayed the [M + NH ] ion as base peak. On the contrary, a distribution between [M + Cl] and [M + HCOO] species was observed in negative ion mode. However, a clear differentiation between the studied compounds was only possible by combining both LC and tandem MS (MS/MS). Indeed, by applying a series of energy resolved MS/MS experiments and monitoring both positive and negative ions, a structural characterization of the analytes was achieved. The proposed LC-MS/MS approach provided the profile of monoterpenol-diglycosides and allowed the identification of a series of isobaric terpene-diglycosides in grape. The study of their MS/MS spectra indicated the structure of geranic and/or nerolic acid aglycones. To verify the interest of studied compounds, a preliminary evaluation of the intensity of signals of these glycosides were carried out. The obtained results showed a significant difference between the grape samples collected in two different vintages.
单萜糖苷是重要的香气前体物质,经过水解后能赋予葡萄酒浓郁的花香。因此,了解这些分子中糖残基的性质和结构具有重要意义。在本研究中,探索了采用液相色谱(LC)分离结合不同的质谱(MS)实验来表征这些化合物。对LC参数进行了调整,以优化葡萄样品提取物中分析物之间的分离度。选择了20个相对丰度>1%的主峰,并将其分为4类,每类具有不同的分子量。一般来说,所研究化合物的正离子模式下以[M + NH]离子作为基峰。相反,在负离子模式下观察到[M + Cl]和[M + HCOO]物种之间的分布。然而,只有将LC和串联质谱(MS/MS)结合起来才能对所研究的化合物进行清晰区分。实际上,通过进行一系列能量分辨的MS/MS实验并同时监测正离子和负离子,实现了对分析物的结构表征。所提出的LC-MS/MS方法提供了单萜醇二糖苷的图谱,并能够鉴定葡萄中的一系列等压萜烯二糖苷。对其MS/MS光谱的研究表明了香叶酸和/或橙花酸苷元的结构。为了验证所研究化合物的价值,对这些糖苷的信号强度进行了初步评估。所得结果表明,在两个不同年份采集的葡萄样品之间存在显著差异。