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d-Glucosone and l-Sorbosone Putative Intermediates of l-Ascorbic Acid Biosynthesis in Detached Bean and Spinach Leaves

机译:d-葡糖酮和l-山梨糖酮分离的豆类和菠菜叶中l-抗坏血酸生物合成的假定中间体

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摘要

d-[6-14C]Glucosone that had been prepared enzymically from d-[6-14C]glucose was used to compare relative efficiencies of these two sugars for l-ascorbic acid (AA) biosynthesis in detached bean (Phaseolus vulgaris L., cv California small white) apices and 4-week-old spinach (Spinacia oleracea L., cv Giant Noble) leaves. At tracer concentration, 14C from glucosone was utilized by spinach leaves for AA biosynthesis much more effectively than glucose. Carbon-14 from [6-14C]glucose underwent considerable redistribution during AA formation, whereas 14C from [6-14C]glucosone remained almost totally in carbon 6 of AA. In other experiments with spinach leaves, l-[U-14C]sorbosone was found to be equivalent to [6-14C]glucose as a source of 14C for AA. In the presence of 0.1% d-glucosone, conversion of [6-14C] glucose into labeled AA was greatly repressed. In a comparable experiment with l-sorbosone replacing d-glucosone, the effect was much less. The experiments described here give substance to the proposal that d-glucosone and l-sorbosone are putative intermediates in the conversion of d-glucose to AA in higher plants.
机译:用d- [6- 14 C]葡萄糖葡萄糖酶法制备的d- [6- 14 C]葡糖酮用于比较这两种糖对l的相对效率。豆(菜豆(Phaseolus vulgaris L.),加利福尼亚小白色)和4周龄菠菜(Spinacia oleracea L.,cv Giant Noble)叶中的抗坏血酸(AA)生物合成。在示踪剂浓度下,菠菜叶利用葡糖苷中的 14 C比葡萄糖更有效地用于AA生物合成。 [6- 14 C]葡萄糖中的碳14在AA形成过程中发生大量重新分布,而[6- 14 C]葡萄糖苷中的 14 C几乎完全保留在AA的碳6中。在其他用菠菜叶进行的实验中,发现l- [U- 14 C]山梨糖醇相当于[6- 14 C]葡萄糖作为的来源14 C代表AA。在0.1%d-葡萄糖苷的存在下,[6- 14 C]葡萄糖向标记的AA的转化被大大抑制。在用l-山梨糖酮替代d-葡萄糖苷的可比实验中,效果要差得多。此处描述的实验充分说明了在高级植物中d-葡萄糖苷和l-山梨糖酮是d-葡萄糖向AA转化的假定中间体。

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