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Biosynthesis of panaxynol and panaxydol in Panax ginseng

机译:人参中人参醇和人参醇的生物合成

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摘要

The natural formation of the bioactive C17-polyacetylenes (−)-(R)-panaxynol and panaxydol was analyzed by 13C-labeling experiments. For this purpose, plants of Panax ginseng were supplied with 13CO2 under field conditions or, alternatively, sterile root cultures of P. ginseng were supplemented with [U-13C6]glucose. The polyynes were isolated from the labeled roots or hairy root cultures, respectively, and analyzed by quantitative NMR spectroscopy. The same mixtures of eight doubly 13C-labeled isotopologues and one single labeled isotopologue were observed in the C17-polyacetylenes obtained from the two experiments. The polyketide-type labeling pattern is in line with the biosynthetic origin of the compounds via decarboxylation of fatty acids, probably of crepenynic acid. The 13C-study now provides experimental evidence for the biosynthesis of panaxynol and related polyacetylenes in P. ginseng under in planta conditions as well as in root cultures. The data also show that 13CO2 experiments under field conditions are useful to elucidate the biosynthetic pathways of metabolites, including those from roots.
机译:通过13C标记实验分析了生物活性C17-聚乙炔(-)-(R)-人参炔醇和人参吡喃的天然形成。为此,在田间条件下向人参植物提供13CO2,或者为人参的无菌根培养物补充[U-13C6]葡萄糖。分别从标记的根或毛状根培养物中分离出多炔,并通过定量NMR光谱法进行分析。在从两个实验中获得的C17-聚乙炔中,观察到了8个13C标记的双同位素和1个单个标记的双同位素的相同混合物。聚酮化合物类型的标记方式通过脂肪酸(可能是戊二酸)的脱羧作用与化合物的生物合成起源相符。现在,这项13C研究为人参在植物环境和根系培养物中生物合成人参炔醇和相关聚乙炔提供了实验证据。数据还显示,在田间条件下进行13CO2实验可用于阐明代谢产物的生物合成途径,包括来自根部的代谢产物。

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