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Feedback regulation by trehalose 6‐phosphate slows down starch mobilization below the rate that would exhaust starch reserves at dawn in Arabidopsis leaves

机译:海藻糖6-磷酸的反馈调节将淀粉的动员速度减慢到低于拟南芥叶片黎明时耗尽淀粉储备的速率

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摘要

Trehalose 6‐phosphate (Tre6P), a sucrose signaling metabolite, inhibits transitory starch breakdown in Arabidopsis (Arabidopsis thaliana) leaves and potentially links starch turnover to leaf sucrose status and demand from sink organs (Plant Physiology, 163, 2013, 1142). To investigate this relationship further, we compared diel patterns of starch turnover in ethanol‐inducible Tre6P synthase (iTPS) lines, which have high Tre6P and low sucrose after induction, with those in sweet11;12 sucrose export mutants, which accumulate sucrose in their leaves and were predicted to have high Tre6P. Short‐term changes in irradiance were used to investigate whether the strength of inhibition by Tre6P depends on starch levels. sweet11;12 mutants had twofold higher levels of Tre6P and restricted starch mobilization. The relationship between Tre6P and starch mobilization was recapitulated in iTPS lines, pointing to a dominant role for Tre6P in feedback regulation of starch mobilization. Tre6P restricted mobilization across a wide range of conditions. However, there was no correlation between the level of Tre6P and the absolute rate of starch mobilization. Rather, Tre6P depressed the rate of mobilization below that required to exhaust starch at dawn, leading to incomplete use of starch. It is discussed how Tre6P interacts with the clock to set the rate of starch mobilization.
机译:6-磷酸海藻糖(Tre6P)是一种蔗糖信号代谢产物,可抑制拟南芥(Arabidopsis thaliana)叶片中的瞬时淀粉分解,并可能将淀粉周转率与叶片蔗糖的状态和水槽器官的需求联系起来(Plant Physiology,163,2013,1142)。为了进一步研究这种关系,我们比较了诱导后具有高Tre6P和低蔗糖的乙醇诱导性Tre6P合酶(iTPS)品系中淀粉周转的迪尔模式,与甜11; 12蔗糖出口突变体中的蔗糖积累在叶片中积累了蔗糖。并且被预测为具有高Tre6P。辐照度的短期变化用于研究Tre6P的抑制强度是否取决于淀粉水平。 sweet11; 12突变体的Tre6P水平高两倍,并且淀粉动员受到限制。在iTPS品系中概述了Tre6P和淀粉动员之间的关系,指出Tre6P在淀粉动员的反馈调节中起着主导作用。 Tre6P在多种情况下都限制了动员。但是,Tre6P的水平与淀粉动员的绝对速率之间没有相关性。相反,Tre6P将动员速度降低到黎明时耗尽淀粉所需的速度,从而导致淀粉的不完全使用。讨论了Tre6P如何与时钟相互作用以设置淀粉动员速率。

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