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A Gas Chromatographic Method for the Determination of Aldose and Uronic Acid Constituents of Plant Cell Wall Polysaccharides 1

机译:气相色谱法测定植物细胞壁多糖中的醛糖和糖醛酸成分1

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摘要

A major problem in determining the composition of plant cell wall polysaccharides has been the lack of a suitable method for accurately determining the amounts of galacturonic and glucuronic acids in such polymers. A gas chromatographic method for aldose analysis has been extended to include uronic acids. Cell wall polysaccharides are depolymerized by acid hydrolysis followed by treatment with a mixture of fungal polysaccharide-degrading enzymes. The aldoses and uronic acids released by this treatment are then reduced with NaBH4 to alditols and aldonic acids, respectively. The aldonic acids are separated from the alditols with Dowex-1 (acetate form) ion exchange resin, which binds the aldonic acids. The alditols, which do not bind, are washed from the resin and then acetylated with acetic anhydride to form the alditol acetate derivatives. The aldonic acids are eluted from the resin with HCl. After the resin has been removed, the HCl solution of the aldonic acids is evaporated to dryness, converting the aldonic acids to aldonolactones. The aldonolactones are reduced with NaBH4 to the corresponding alditols, dried and acetylated. The resulting alditol acetate mixtures produced from the aldoses and those from the uronic acids are analyzed separately by gas chromatography. This technique has been used to determine the changes in composition of Red Kidney bean (Phaseolus vulgaris) hypocotyl cell walls during growth, and to compare the cell wall polysaccharide compositions of several parts of bean plants. Galacturonic acid is found to be a major component of all the cell wall polysaccharides examined.
机译:确定植物细胞壁多糖的组成的主要问题是缺乏合适的方法来准确确定此类聚合物中半乳糖醛酸和葡萄糖醛酸的量。醛糖分析的气相色谱方法已扩展到包括糖醛酸。通过酸水解使细胞壁多糖解聚,然后用真菌多糖降解酶的混合物处理。然后,用NaBH4将通过该处理释放的醛糖和糖醛酸分别还原为醛糖醇和醛糖酸。用Dowex-1(乙酸盐形式)离子交换树脂将醛糖酸与醛糖醇分离,该离子交换树脂结合醛糖酸。从树脂上洗去不结合的醛糖醇,然后用乙酸酐乙酰化以形成醛糖醇乙酸酯衍生物。用HCl从树脂上洗脱醛糖酸。除去树脂后,将醛糖酸的HCl溶液蒸发至干,将醛糖酸转化为醛内酯。用NaBH4将醛糖内酯还原成相应的糖醇,干燥并乙酰化。由醛糖产生的乙酸醛糖醇混合物和由糖醛酸产生的乙酸醛糖醇混合物分别通过气相色谱法进行分析。该技术已用于确定红芸豆(菜豆)下胚轴细胞壁在生长过程中组成的变化,并用于比较豆类植物几个部位的细胞壁多糖组成。发现半乳糖醛酸是所有检查的细胞壁多糖的主要成分。

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