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首页> 外文期刊>Fruits >Anatomy, histochemistry and biochemistry of glucovanillin, oleoresin and mucilage accumulation sites in green mature vanilla pod (Vanilla planifolia; Orchidaceae): a comprehensive and critical reexamination
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Anatomy, histochemistry and biochemistry of glucovanillin, oleoresin and mucilage accumulation sites in green mature vanilla pod (Vanilla planifolia; Orchidaceae): a comprehensive and critical reexamination

机译:绿色成熟香草荚(Vanilla planifolia;兰科)中葡糖香兰素,油树脂和黏液累积部位的解剖,组织化学和生物化学:全面而严格的复查

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摘要

Introduction. Mature green vanilla pods accumulate 4-O-(3-methoxy-benzaldehyde)-beta-D-glucoside (glucovanillin), which, upon hydrolysis by an endogenous beta-glucosidase, liberates vanillin, the major aroma component of vanilla. Sites of storage of glucovanillin in the pod have been controversially reported for decades; we aim, using precise and widely accepted technical terminology, to clarify this controversy by providing an anatomical, histochemical and biochemical evidence-based picture of glucovanillin accumulation sites. The pod also synthesizes an oleoresin and a mucilage of unknown constitutions; we report here their localization and structures. Materials and methods. The pod anatomy was examined by light and epifluorescence microscopy. A protocol was established allowing fine hand-dissection of diverse anatomical parts of the pod (mesocarp, placentae, trichomes, intralocular interstitial cell-free region and seeds). Glucovanillin and gamma-pyranones were extracted and analyzed by HPLC, while the structures of the mucilaginous polysaccharides were determined after permethylation. Results and discussion. Glucovanillin is essentially stored in the placentae (92%) and marginally in trichomes (7%); traces were measured in the mesocarp and intralocular interstitial cell-free medium. Trichomes store massive amounts of a fluorescing oleoresin (44%) rich in alkenylmethyldihydro-gamma-pyranones and synthesize a mucilage made of a glucomannan and a pectic polysaccharide carrying monomeric arabinose and galactose side-chains. Conclusion. To date, the physiological roles of glucovanillin, long-chain pyranones, and mucilage remain unknown.
机译:介绍。成熟的绿色香草豆荚积聚了4-O-(3-甲氧基-苯甲醛)-β-D-葡萄糖苷(葡糖香兰素),该糖苷在被内源性β-葡糖苷酶水解后会释放出香兰素(香草的主要香气成分)。数十年来,有争议地报道了豆荚中葡糖香兰素的储存位点。我们旨在使用精确且广为接受的技术术语,通过提供基于解剖,组织化学和生物化学证据的葡糖香兰素积累部位的图片来澄清这一争议。豆荚还合成油脂树脂和未知结构的黏液。我们在这里报告其本地化和结构。材料和方法。通过光镜和落射荧光显微镜检查荚果的解剖结构。建立了协议,可以对豆荚的不同解剖部位(中果皮,胎盘,毛状体,小叶间质无细胞区域和种子)进行精细的手解剖。提取葡糖香兰素和γ-吡喃酮,并通过HPLC分析,而过甲基化后确定粘多糖的结构。结果与讨论。香兰素主要储存在胎盘中(占92%),而在毛状体中占很小的比例(占7%)。在中果皮和小叶间质无细胞培养基中测量痕量。 Trichomes储存了大量富含烯基甲基二氢-γ-吡喃酮的发荧光的油性树脂(44%),并合成了由葡甘露聚糖和带有单体阿拉伯糖和半乳糖侧链的果胶多糖制成的粘液。结论。迄今为止,葡糖香兰素,长链吡喃酮和粘液的生理作用仍然未知。

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