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The proposed biosynthesis of procyanidins by the comparative chemical analysis of five Camellia species using LC-MS

机译:采用LC-MS的五种山茶花物种的比较化学分析所提出的胰岛白藜芦醇苷的生物合成

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The genus Camellia (C.) contains many species, including C. sinensis, C. assamica, and C. taliensis, C. gymnogyna and C. tachangensis. The polyphenols of C. sinensis and C. assamica are flavan-3-ols monomers and their dimers and trimmers. However, the biosynthesis of procyanidins in Camellia genus remains unclear. In the present study, a comparative chemical analysis of flavan-3-ols, flavan-3-ols glycoside and procyanidins was conducted by high performance liquid chromatography (HPLC) and liquid chromatography diode array detection coupled with triple-quadrupole mass-spectrometry (LC-DAD-QQQ-MS). The results showed that C. tachangensis had a significant higher contents of (-)-epicatechin (EC) and (-)-epigallocatechin (EGC) compared with C. sinensis (p??0.001). By contrast, higher levels of galloylated catechins were detected in C. sinensis. LC-DAD-MS/MS indicated that the main secondary metabolites of C. tachangensis were non-galloylated catechins, procyanidin dimers and trimers. Furthermore, (-)-epicatechin glucose (EC-glucose) and (-)-epigallocatechin glucose (EGC-glucose) were also abundant in C. tachangensis. A correlation analysis of EC-glucose and procyanidins dimers was conducted in five Camellia species. The levels of EC-glucose were closely related to the procyanidin dimers content. Thus, it was suggested that EC-glucose might be an important substrate for the biosynthesis of procyanidins.
机译:山茶花属(C.)含有许多物种,包括C. Sinensis,C.Sassamica和C. Taliensis,C. Gearnogyna和C.Tachangensis。 C. Sinensis和C. Assamica的多酚是黄山-3-醇的单体及其二聚体和修剪剂。然而,山茶花属山梨属植物的生物合成仍不清楚。在本研究中,通过高性能液相色谱(HPLC)和液相色谱二极管阵列检测,与三重四极杆质量光谱(LC)进行含有高效液相色谱(HPLC)和液相色谱二极管阵列检测进行的比较化学分析。 -dad-qqq-ms)。结果表明,与C. sinensis(p≤0.001)相比,C.Tachangensis具有显着更高的( - ) - EPICATECHIN(EC)和( - ) - EPIGALLOCATECHIN(EGC)的含量。相比之下,在C. Sinensis中检测到更高水平的野生酰氧化儿科。 LC-DAD-MS / MS表明,C.Tachangensis的主要次生代谢物是非寄生酰基的儿茶素,原霉素二聚体和三聚体。此外,( - ) - EPICATECHIN葡萄糖(EC-葡萄糖)和( - ) - EPIGALLOCATECHIN葡萄糖(EGC-葡萄糖)在C.Tachangensis中也丰富。在五种山茶花物种中进行了EC-葡萄糖和胰岛葡萄原蛋白二聚体的相关分析。 EC-葡萄糖的水平与Procyanidin二聚体含量密切相关。因此,有人建议Ec-葡萄糖可能是胰岛糖苷生物合成的重要基质。

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