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A mutant of Arabidopsis lacking the triose-phosphate/phosphate translocator reveals metabolic regulation of starch breakdown in the light.

机译:缺少磷酸三糖/磷酸转运子的拟南芥突变体揭示了淀粉分解的代谢调控。

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摘要

The chloroplast envelope triose-phosphate/phosphate translocator (TPT) is responsible for carbohydrate export during photosynthesis. Using measurements of carbohydrates, partitioning of assimilated 14CO2, photosynthetic gas exchange, and chlorophyll fluorescence, we show that a mutant of Arabidopsis lacking the TPT increases synthesis of starch compared to the wild type, thereby compensating for a deficiency in its ability to export triose-phosphate from the chloroplast. However, during growth under high light, the capacity for starch synthesis becomes limiting so that the chloroplastic phosphate pool is depleted, resulting in a restriction on electron transport, a reduction in the rate of photosynthesis, and slowed plant growth. Under the same conditions but not under low light, we observe release of 14C label from starch, indicating that its synthesis and degradation occur simultaneously in the light. The induction of starch turnover in the mutant specifically under high light conditions leads us to conclude that it is regulated by one or more metabolic signals, which arise as a result of phosphate limitation of photosynthesis.
机译:叶绿体包膜磷酸三磷酸酯/磷酸转运子(TPT)负责光合作用过程中的碳水化合物输出。通过测量碳水化合物,同化14CO2的分配,光合气体交换和叶绿素荧光,我们发现与野生型相比,缺少TPT的拟南芥突变体可增加淀粉的合成,从而弥补其出口三糖的能力不足。叶绿体中的磷酸盐。然而,在强光下生长期间,淀粉合成的能力受到限制,从而使氯塑料磷酸盐库被耗尽,从而导致电子传输受到限制,光合作用速率降低以及植物生长减慢。在相同条件下但不在弱光下,我们观察到淀粉中14C标签的释放,表明其合成和降解在光照下同时发生。特别是在强光条件下,在突变体中诱导淀粉更新,可以得出结论,淀粉转化受一个或多个代谢信号的调节,这是由于光合作用的磷酸盐限制所致。

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