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马铃薯块茎中的淀粉磷酸化与淀粉的从头生物合成同时进行。

Starch Phosphorylation in Potato Tubers Proceeds Concurrently with de Novo Biosynthesis of Starch.

作者信息

Nielsen T. H., Wischmann B., Enevoldsen K., Moller B. L.

机构信息

Department of Plant Biology, Royal Agricultural and Veterinary University, 40 Thorvaldsensvej, DK-1871 Frederiksberg C, Copenhagen, Denmark (T.H.N., B.W., B.L.M.).

出版信息

Plant Physiol. 1994 May;105(1):111-117. doi: 10.1104/pp.105.1.111.

Abstract

The in vivo phosphorylation of starch was studied in Solanum tuberosum cv Dianella and Posmo. Small starch granules contain 25% more ester-bound phosphate per glucose residue than large starch granules. The degree of phosphorylation was found to be almost constant during tuber development. Isolated tuber discs synthesize starch from externally supplied glucose at a significant rate. Tuber discs supplied with glucose and [32P]orthophosphate incorporate radiolabeled phosphorus into the starch. The level of 32P incorporation is proportional to the amount of starch synthesized. The incorporation of 32P from orthophosphate is correlated to de novo synthesis of starch, since the incorporation of 32P is diminished upon inhibition of starch synthesis by fluoride. Based on the amount of [14C]glucose phosphate isolated after hydrolysis of purified starch from tuber discs incubated in the presence of [U-14C]glucose, approximately 0.5% of the glucose residues of the de novo-synthesized starch are phosphorylated. This value is in general agreement with the observed levels of phosphorus in starch accumulated during tuber development. Thus, the enzyme system responsible for starch phosphorylation is fully active in the isolated tuber discs, and the starch phosphorylation proceeds as an integrated part of de novo starch synthesis.

摘要

对马铃薯品种Dianella和Posmo中淀粉的体内磷酸化作用进行了研究。小淀粉颗粒每个葡萄糖残基的酯结合磷比大淀粉颗粒多25%。发现在块茎发育过程中磷酸化程度几乎恒定。分离的块茎圆盘以显著速率从外部供应的葡萄糖合成淀粉。供应葡萄糖和[32P]正磷酸盐的块茎圆盘将放射性标记的磷掺入淀粉中。32P掺入水平与合成的淀粉量成比例。正磷酸盐中32P的掺入与淀粉的从头合成相关,因为在氟化物抑制淀粉合成时32P的掺入减少。根据在[U-14C]葡萄糖存在下孵育的块茎圆盘中纯化淀粉水解后分离的[14C]葡萄糖磷酸的量,从头合成的淀粉中约0.5%的葡萄糖残基被磷酸化。该值与块茎发育过程中积累的淀粉中观察到的磷水平总体一致。因此,负责淀粉磷酸化的酶系统在分离的块茎圆盘中完全活跃,并且淀粉磷酸化作为从头淀粉合成的一个组成部分进行。

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