Roberts R M, Shah R H, Loewus F
Department of Biology, State University of New York, Buffalo, New York 14214.
Plant Physiol. 1967 May;42(5):659-66. doi: 10.1104/pp.42.5.659.
The biosynthesis of apiose was investigated in cell wall polysaccharide of Lemna gibba G3 (duckweed) and in detached leaves of Petroselinum crispum (parsley). Lemna grown either in short days or in continuous light incorporated (14)C from a medium containing myo-inositol-2-(14)C into d-apiosyl and d-xylosyl units of cell wall polysaccharides. Labeled d-apiose was characterized by paper chromatography, by formation of labeled crystalline di-O-isopropylidene d-apiose, and by gas chromatography of trimethylsilyl derivatives of apiose and of its sodium borohydride reduction product, apiitol. Periodate oxidation of labeled apiose revealed 86 to 94% of the (14)C was located in formaldehyde fragments corresponding to C3' and C4. Comparison of this result with work reported by Grisebach and Doebereiner and by Beck and Kandler supports the conclusion that myo-inositol-2-(14)C was converted to d-apiose labeled specifically at C4.When l-arabinose-l-(14)C was supplied to Lemna, both l-arabinosyl and d-xylosyl units of cell wall polysaccharides became labeled, but no (14)C was found in d-apiose. Analysis of the medium external to the plants revealed the presence of a polysaccharide-like polymer that also contained labeled xylose and arabinose.Petroselinum leaves utilized myo-inositol-2-(3)H for the synthesis of apiose in apiin.These results provide direct evidence for a pathway of apiose biosynthesis involving d-glucuronic acid metabolism.
在浮萍(Lemna gibba G3)的细胞壁多糖以及皱叶欧芹(Petroselinum crispum)的离体叶片中研究了芹糖的生物合成。在短日照或连续光照条件下生长的浮萍,能将含有肌醇 -2-(14)C的培养基中的(14)C掺入到细胞壁多糖的D - 芹糖基和D - 木糖基单元中。标记的D - 芹糖通过纸色谱法、标记的结晶二 - O - 异丙叉基D - 芹糖的形成以及芹糖及其硼氢化钠还原产物芹糖醇的三甲基硅烷基衍生物的气相色谱法进行表征。标记芹糖的高碘酸盐氧化显示,86%至94%的(14)C位于对应于C3'和C4的甲醛片段中。将该结果与格里斯巴赫和德贝雷纳以及贝克和坎德勒报道的工作进行比较,支持了肌醇 -2-(14)C转化为在C4处特异性标记的D -芹糖的结论。当向浮萍供应L - 阿拉伯糖 -1-(14)C时,细胞壁多糖的L - 阿拉伯糖基和D - 木糖基单元都被标记,但在D - 芹糖中未发现(14)C。对植物外部培养基的分析表明存在一种也含有标记木糖和阿拉伯糖的多糖样聚合物。皱叶欧芹叶片利用肌醇 -2-(3)H合成芹菜苷中的芹糖。这些结果为涉及D - 葡萄糖醛酸代谢的芹糖生物合成途径提供了直接证据。