首页> 美国卫生研究院文献>Beilstein Journal of Organic Chemistry >Analysis of sesquiterpene hydrocarbons in grape berry exocarp (Vitis vinifera L.) using in vivo-labeling and comprehensive two-dimensional gas chromatography–mass spectrometry (GC×GC–MS)
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Analysis of sesquiterpene hydrocarbons in grape berry exocarp (Vitis vinifera L.) using in vivo-labeling and comprehensive two-dimensional gas chromatography–mass spectrometry (GC×GC–MS)

机译:使用体内标记和全面二维气相色谱-质谱法(GC×GC-MS)分析葡萄浆果外果皮(Vitis vinifera L.)中的倍半萜烃

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摘要

Sesquiterpenes are structurally diverse, potent flavoring substances that significantly influence the aroma profile of grapes (Vitis vinifera L.) at the time of physiological ripening. To investigate these natural compounds, freshly harvested, ripe berries of the red wine variety Lemberger (Vitis vinifera subsp. vinifera L.) were analyzed using comprehensive two-dimensional gas chromatography (GC×GC) coupled to a time-of-flight mass spectrometer (TOF–MS) after headspace-solid phase microextraction (HS-SPME). The identification of structurally complex natural compounds, such as sesquiterpenes from fruits and vegetables, is often reported as “tentative”, as authentic standards are not commercially available for most of the analytes. For this reason, feeding experiments (in vivo labeling) were carried out using the stable isotope-labeled precursors [5,5-2H2]-1-deoxy-ᴅ-xylulose (d 2-DOX) and [6,6,6-2H3]-(±)-mevalonolactone (d 3-MVL) to clearly identify the volatiles. Based on the recorded mass spectra of the unlabeled and deuterated compounds, mechanisms for sesquiterpene formation in V. vinifera could be proposed and already known pathways could be confirmed or disproved. For example, the HS-SPME–GC×GC–TOF–MS measurements of fed sample material showed that the tricyclic sesquiterpene hydrocarbons α-copaene, β-copaene, α-cubebene, β-cubebene and the bicyclic δ-cadinene were biosynthesized via (S)-(−)-germacrene D rather than via (R)-(+)-germacrene D as intermediate.
机译:倍半萜烯在结构上是多种多样的,有效的增香物质,它们在生理成熟时会显着影响葡萄的香气(Vitis vinifera L.)。为了研究这些天然化合物,使用飞行时间质谱仪结合全面的二维气相色谱法(GC×GC)对红酒品种Lemberger(Vitis vinifera subsp。vinifera L.)的新鲜收获的成熟浆果进行了分析。 (TOF–MS)顶空-固相微萃取(HS-SPME)之后。鉴定结构复杂的天然化合物(例如来自水果和蔬菜的倍半萜)的方法通常被称为“试验性”,因为大多数分析物的真实标准品均未在市场上销售。因此,使用稳定的同位素标记的前体[5,5- 2 H2] -1-脱氧-γ-木酮糖(d 2-DOX)进行进食实验(体内标记)和[6,6,6- 2 H3]-(±)-甲戊内酯(d 3-MVL)可以清楚地鉴定出挥发物。基于记录的未标记和氘代化合物的质谱,可以提出酿酒葡萄中倍半萜形成的机制,并且可以确认或取消已知的途径。例如,对进料样品的HS-SPME–GC×GC–TOF–MS测量表明,三环倍半萜碳氢化合物α-copaene,β-copaene,α-cububeene,β-cubene和双环δ-cadinene是通过生物合成的。 (S)-(-)-germacrene D而不是通过(R)-(+)-germacrene D作为中间体。

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