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The sucrose analog palatinose leads to a stimulation of sucrose degradation and starch synthesis when supplied to discs of growing potato tubers

机译:当提供给正在生长的马铃薯块茎圆盘时,蔗糖类似物帕拉金糖会刺激蔗糖降解和淀粉合成

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dIn the present paper we investigated the effect of the sucrose (Suc) analog palatinose on potato (Solanum tuberosum) tuber metabolism. In freshly cut discs of growing potato tubers, addition of 5 mM palatinose altered the metabolism of exogenously supplied [(UC)-C-14]Suc. There was slight inhibition of the rate of C-14-Suc uptake, a 1.5-fold increase in the rate at which C-14 Suc was subsequently metabolized, and a shift in the allocation of the metabolized label in favor of starch synthesis. The sum result of these changes was a 2-fold increase in the absolute rate of starch synthesis. The increased rate of starch synthesis was accompanied by a 3-fold increase in inorganic pyrophosphate, a 2-fold increase in UDP, decreased UTP/UDP, ATP/ADP, and ATP/AMP ratios, and decreased adenylate energy charge, whereas glycolytic and Krebs cycle intermediates were unchanged. In addition, feeding palatinose to potato discs also stimulated the metabolism of exogenous C-14-glucose in favor of starch synthesis. In vitro studies revealed that palatinose is not metabolized by Suc synthases or invertases within potato tuber extracts. Enzyme kinetics revealed different effects of palatinose on Suc synthase and invertase activities, implicating palatinose as an allosteric effector leading to an inhibition of Suc synthase and (surprisingly) to an activation of invertase in vitro. However, measurement of tissue palatinose levels revealed that these were too low to have significant effects on Suc degrading activities in vivo. These results suggest that supplying palatinose to potato tubers represents a novel way to increase starch synthesis. [References: 52]
机译:d在本文中,我们研究了蔗糖(Suc)类似物帕拉金糖对马铃薯(Solanum tuberosum)块茎代谢的影响。在刚切下的马铃薯块茎圆盘中,添加5 mM帕拉金糖会改变外源供应的[(UC)-C-14] Suc的代谢。 C-14-Suc摄取速率受到轻微抑制,C-14 Suc随后被代谢的速率增加了1.5倍,并且代谢标记的分配发生了变化,有利于淀粉合成。这些变化的总和是淀粉合成绝对速率提高了2倍。淀粉合成速率的增加伴随着无机焦磷酸盐增加3倍,UDP增加2倍,UTP / UDP,ATP / ADP和ATP / AMP比降低,腺苷酸能电荷降低,而糖酵解和克雷布斯循环中间体未变。另外,将帕拉金糖喂入马铃薯圆盘也刺激了外源C-14-葡萄糖的代谢,有利于淀粉合成。体外研究表明,马铃薯块茎提取物中的Suc合酶或转化酶不会使帕拉金糖代谢。酶动力学揭示了帕拉金糖对Suc合酶和转化酶活性的不同影响,暗示帕拉金糖是一种变构效应物,导致抑制Suc合酶并(令人惊讶地)在体外激活了转化酶。但是,对组织帕拉金糖水平的测量表明,它们太低,无法对体内的Suc降解活性产生重大影响。这些结果表明,向马铃薯块茎供应帕拉金糖代表增加淀粉合成的新方法。 [参考:52]

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