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Mathematical modelling of diurnal regulation of carbohydrate allocation by osmo-related processes in plants

机译:植物中渗透相关过程对碳水化合物分配的昼夜调节的数学模型

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摘要

Plants synthesize sucrose in source tissues (mainly mature leafs) and supply it for growth of sink tissues (young leafs). Sucrose is derived from photosynthesis during daytime and from starch at night. Because the diurnal regulation of sucrose fluxes is not completely understood, we built a mathematical model designed to reproduce all key experimental observations. For this, assumptions were made about the molecular mechanisms underlying the regulations, which are all motivated by experimental facts. The key regulators in our model are two kinases (SnRK1 and osmo-sensitive kinase OsmK) under the control of the circadian clock. SnRK1 is activated in the night to prepare for regularly occurring carbon-limiting conditions, whereas OsmK is activated during the day to prepare for water deficit, which often occurs in the afternoon. Decrease of SnRK1 and increase of OsmK result in partitioning of carbon towards sucrose to supply growing sink tissues. Concomitantly, increasing levels of the growth regulator trehalose-6-phosphate stimulates the development of new sink tissues and thus sink demand, which further activates sucrose supply in a positive feedback loop. We propose that OsmK acts as a timer to measure the length of the photoperiod and suggest experiments how this hypothesis can be validated.
机译:植物在源组织(主要是成熟的叶子)中合成蔗糖,并提供其用于汇宿组织(年轻的叶子)的生长。蔗糖是白天的光合作用,而晚上则是淀粉。由于对蔗糖通量的昼夜调节尚不完全了解,我们建立了一个数学模型,旨在再现所有关键的实验观察结果。为此,对有关法规所依据的分子机制进行了假设,这些假设均受实验事实的推动。在我们的模型中,关键的调控因子是在昼夜节律控制下的两种激酶(SnRK1和渗透敏感激酶OsmK)。 SnRK1在夜间被激活以准备定期发生的碳限制条件,而OsmK在白天被激活以准备通常在下午发生的水分短缺。 SnRK1的减少和OsmK的增加导致碳向蔗糖的分配,从而为生长中的水槽组织提供能量。同时,增加生长调节剂6-磷酸海藻糖的水平会刺激新的汇组织的发展,从而刺激汇的需求,从而在正反馈回路中进一步激活蔗糖的供应。我们建议OsmK充当计时器来测量光周期的长度,并建议实验如何验证这一假设。

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