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Sucrose Metabolism in Tubers of Potato (Solanum tuberosum L.)

机译:马铃薯(Solanum tuberosum L.)块茎中的蔗糖代谢

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摘要

Excision of developing potato (Solanum tuberosum L.) tubers from the mother plant, followed by storage at 10°C, resulted in a rapid, substantial decrease in sucrose synthase activity and considerable increases in hexose content and acid invertase activity. A comparison of the response of three genotypes, known to accumulate different quantities of hexoses in storage, showed that both sucrose synthase activity and the extent to which activity declined following excision were similar in all cases. However, there was significant genotypic variation in the extent to which acid invertase activity developed, with tubers accumulating the highest hexose content also developing the highest extractable activity of invertase. Similar effects were found in nondetached tubers when growing plants were maintained in total darkness for a prolonged period. Furthermore, supplying sucrose to detached tubers through the cut stolon surface prevented the decline in sucrose synthase activity. Maltose proved to be ineffective. Western blots using antibodies raised against maize sucrose synthase showed that the decline in sucrose synthase activity was associated with the loss of protein rather than the effect of endogenous inhibitors. Although there were indications that maintaining a flux of sucrose into isolated tubers could prevent the increase in acid invertase activity, the results were not conclusive.
机译:从母本植物中拔出正在发育的马铃薯(Solanum tuberosum L.)块茎,然后在10°C下储存,导致蔗糖合酶活性迅速,显着下降,而己糖含量和酸转化酶活性显着增加。比较三种基因型的响应,已知这些基因型在储存时会积累不同数量的己糖,结果表明,在所有情况下,蔗糖合酶活性和切除后活性下降的程度均相似。但是,酸转化酶活性的发展程度存在显着的基因型差异,块茎积累的最高己糖含量也具有最高的可提取酶活性。当生长中的植物长时间处于完全黑暗的环境中时,在未分离的块茎中发现了类似的效果。此外,通过切成的sto茎表面向分离的块茎供应蔗糖可防止蔗糖合酶活性下降。麦芽糖被证明是无效的。使用针对玉米蔗糖合酶的抗体进行的蛋白质印迹表明,蔗糖合酶活性的下降与蛋白质的损失有关,而不是与内源性抑制剂的作用有关。尽管有迹象表明保持蔗糖流入分离的块茎中可以阻止酸转化酶活性的增加,但结果尚无定论。

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