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从苍耳和菠菜叶片中分离并定量测定β-D-吡喃葡萄糖基脱落酸

Isolation and Quantitation of beta-d-Glucopyranosyl Abscisate from Leaves of Xanthium and Spinach.

作者信息

Boyer G L, Zeevaart J A

机构信息

Michigan State University-Department of Energy Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824.

出版信息

Plant Physiol. 1982 Jul;70(1):227-31. doi: 10.1104/pp.70.1.227.

Abstract

From previous work (Zeevaart 1980 Plant Physiol 66: 672-678) Xanthium leaves are known to contain a high level of alkali-hydrolyzable conjugated abscisic acid. This abscisic acid conjugate has been isolated and identified by mass spectrometry, nuclear magnetic resonance, and chemical and enzymic degradation techniques, as the glucosyl ester of abscisic acid, beta-d-glucopyranosyl abscisate. The glucosyl ester of abscisic acid was the only abscisic acid conjugate found in Xanthium leaves. It was also isolated from spinach leaves.An insignificant amount of the glucosyl ester of abscisic acid partitioned into diethyl ether, whereas 12% partitioned into ethyl acetate. Consequently, removal of abscisic acid by partitioning with ethyl acetate will result in considerable losses of the glucosyl ester of abscisic acid from the aqueous phase. Diethyl ether is, therefore, recommended for separation of abscisic acid and the glucosyl ester of abscisic acid by solvent partitioning.A method for quantitation of the glucosyl ester of abscisic acid as the tetraacetate derivative by gas-liquid chromatography with an electron capture detector was developed. The level of beta-d-glycopyranosyl abscisate in Xanthium leaves increased from 3.6 nanomoles per gram fresh weight in turgid leaves to 22.9 nanomoles in leaves from plants subjected to seven wilting-recovery cycles. beta-d-glycopyranosyl abscisate in Xanthium leaves may be a stable end product of abscisic acid metabolism.

摘要

根据之前的研究工作(泽瓦特,1980年,《植物生理学》66卷:672 - 678页)可知,苍耳叶片含有高水平的碱可水解共轭脱落酸。这种脱落酸共轭物已通过质谱分析、核磁共振以及化学和酶降解技术分离并鉴定为脱落酸的葡萄糖酯,即β - D - 吡喃葡萄糖基脱落酸酯。脱落酸葡萄糖酯是在苍耳叶片中发现的唯一脱落酸共轭物。它也从菠菜叶片中分离得到。极少量的脱落酸葡萄糖酯分配到乙醚中,而12%分配到乙酸乙酯中。因此,通过用乙酸乙酯分配来去除脱落酸会导致水相中脱落酸葡萄糖酯大量损失。所以,推荐使用乙醚通过溶剂分配法分离脱落酸和脱落酸葡萄糖酯。开发了一种通过带有电子捕获检测器的气液色谱法定量测定作为四乙酸酯衍生物的脱落酸葡萄糖酯的方法。苍耳叶片中β - D - 吡喃葡萄糖基脱落酸酯的含量从膨压叶片中的每克鲜重3.6纳摩尔增加到经历7次萎蔫 - 恢复循环的植株叶片中的22.9纳摩尔。苍耳叶片中的β - D - 吡喃葡萄糖基脱落酸酯可能是脱落酸代谢的稳定终产物。

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