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首页> 外文期刊>Phytochemical Analysis >A comparison of headspace solid-phase microextraction and classic hydrodistillation for the identification of volatile constituents from Thapsia spp. provides insights into guaianolide biosynthesis in Apiaceae.
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A comparison of headspace solid-phase microextraction and classic hydrodistillation for the identification of volatile constituents from Thapsia spp. provides insights into guaianolide biosynthesis in Apiaceae.

机译:顶空固相微萃取与经典加氢蒸馏法鉴定 Thapsia spp挥发性成分的比较。提供了对伞形科的愈创木酚内酯生物合成的见解。

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Introduction - Thapsia spp. (Apiaceae) are the major natural source of polyoxygenated guaianolide sesquiterpene lactones known as thapsigargins, which induce apoptosis in mammalian cells via a high affinity inhibition of the sarco/endoplasmic reticulum Ca2+ ATPase. The mechanism of biosynthesis of thapsigargins has not been elucidated, and probable biochemical precursors such as hydrocarbon or oxygenated sesquiterpenes have not been identified in previous phytochemical analyses of essential oils from this genus. Objective - To investigate the utility of solid phase micro-extraction (SPME), when compared with classical essential oil distillates, for identifying potential precursors of guaianolide sesquiterpene lactones from Thapsia garganica L. and Thapsia villosa L. type II. Methodology - A systematic description of the volatile components of roots, flowers, stems and fruits of T. villosa and of root, flower and fruits of T. garganica was constructed via GC-MS analyses of SPME-adsorbed compounds and of essential oils obtained through hydrodistillation of the same tissues. Results - The sesquiterpenoids delta -cadinene, alpha - and delta -guaiene, elemol and guaiols were found to be major volatile constituents of the roots of T. garganica and T. villosa trapped using SPME. In contrast, these sesquiterpenoids were not detected or were at negligible levels in essential oils, where sesquiterpenoids are potentially converted to azulenes during hydrodistillation. Conclusion - The new data reported in this study demonstrates that SPME is a valuable tool for the identification of volatile sesquiterpenes when compared with analysis of essential oils, and we postulate that guaiene is the likely precursor of guaianolide sesquiterpenes from Thapsia.Digital Object Identifier http://dx.doi.org/10.1002/pca.1323
机译:简介- Thapsia spp。 (伞形科)是被称为thapsigargins的多加氧的愈创木酚倍半萜内酯的主要天然来源,其通过对肌浆/内质网Ca 2 + ATPase的高亲和力抑制而诱导哺乳动物细胞凋亡。 thapsigargins的生物合成机理尚未阐明,在以前对该属植物精油的植物化学分析中,尚未鉴定出可能的生化前体,例如烃或氧化的倍半萜。目的-研究固相微萃取(SPME)与经典精油馏分的比较,可用于鉴定来自 Thapsia garganica L。和 Thapsia villosa的愈创木酚倍半萜内酯的潜在前体 L. II型。方法论-对i的根,花,茎和果实中挥发性成分的系统描述。 villosa 和 T的根,花和果实。 garganica 是通过GC-MS分析SPME吸附的化合物和通过相同组织加氢蒸馏得到的精油而构建的。结果-发现倍半萜类δ-cadinene,α-和δ-番石榴烯,elemol和愈创木酚是 T根的主要挥发性成分。 garganica 和 T。使用SPME捕获的绒毛虫。相比之下,这些倍半萜在精油中未检出或含量可忽略不计,在加油蒸馏过程中倍半萜有可能转化为天青石。结论-这项研究中报道的新数据表明,与精油分析相比,SPME是鉴定挥发性倍半萜烯的有价值的工具,并且我们推测,愈创木酚可能是 Thapsia 中的愈创木酚倍半萜的前体。 >。数字对象标识符http://dx.doi.org/10.1002/pca.1323

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