首页> 外文期刊>Phytochemistry >The chain length of lignan macromolecule from flaxseed hulls is determined by the incorporation of coumaric acid glucosides and ferulic acid glucosides.
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The chain length of lignan macromolecule from flaxseed hulls is determined by the incorporation of coumaric acid glucosides and ferulic acid glucosides.

机译:亚麻籽壳中木脂素大分子的链长是通过加入香豆酸葡糖苷和阿魏酸葡糖苷来确定的。

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摘要

Lignan macromolecule from flaxseed hulls is composed of secoisolariciresinol diglucoside (SDG) and herbacetin diglucoside (HDG) moieties ester-linked by 3-hydroxy-3-methylglutaric acid (HMGA), and of p-coumaric acid glucoside (CouAG) and ferulic acid glucoside (FeAG) moieties ester-linked directly to SDG. The linker molecule HMGA was found to account for 11% (w/w) of the lignan macromolecule. Based on the extinction coefficients and RP-HPLC data, it was determined that SDG contributes for 62.0% (w/w) to the lignan macromolecule, while CouAG, FeAG, and HDG contribute for 12.2, 9.0, and 5.7% (w/w), respectively. Analysis of fractions of lignan macromolecule showed that the higher the molecular mass, the higher the proportion of SDG was. An inverse relation between the molecular mass and the proportion (%) CouAG+FeAG was found. Together with the structural information of oligomers of lignan macromolecule obtained after partial saponification, it is hypothesized that the amount of CouAG+FeAG present during biosynthesis determines the chain length of lignan macromolecule. Furthermore, the chain length was estimated from a model describing lignan macromolecule based on structural and compositional data. The average chain length of the lignan macromolceule was calculated to be three SDG moieties with CouAG or FeAG at each of the terminal positions, with a variation between one and seven SDG moieties.
机译:亚麻籽壳中的木质素大分子由通过3-羟基-3-甲基戊二酸(HMGA)酯键连接的癸二异水芹树脂二糖苷(SDG)和除草素二糖苷(HDG)部分以及 p -香豆酸葡萄糖苷组成(CouAG)和阿魏酸葡萄糖苷(FeAG)部分酯直接连接到SDG。发现接头分子HMGA占木脂体大分子的11%(w / w)。根据消光系数和RP-HPLC数据,可以确定SDG对木脂素大分子的贡献为62.0%(w / w),而CouAG,FeAG和HDG的贡献为12.2、9.0和5.7%(w / w) ), 分别。对木脂素大分子馏分的分析表明,分子量越高,SDG的比例越高。发现分子量与比例(%)CouAG + FeAG成反比。连同部分皂化后获得的木脂素大分子寡聚物的结构信息一起,假设生物合成过程中存在的CouAG + FeAG的量决定了木脂素大分子的链长。此外,基于描述结构和组成数据的描述木脂素大分子的模型估算链长。木质素大分子的平均链长经计算为在每个末端位置具有CouAG或FeAG的三个SDG部分,在一个和七个SDG部分之间变化。

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