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Response of the water-water cycle to the change in photorespiration in tobacco

机译:水-水循环对烟草光呼吸变化的响应

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Photosynthetic electron transport produces ATP and NADPH, which are used by the primary metabolism. The production and consumption of ATP and NADPH must be balanced to maintain steady-state rates of CO2 assimilation and photorespiration. It has been indicated that the water water cycle (WWC) is indispensable for driving photosynthesis via increasing ATP/NADPH production. However, the relationship between the WWC and photo respiration is little known. We tested the hypothesis that the WWC responds to change in photorespiration by balancing ATP/NADPH ratio. Measurements of gas exchange and chlorophyll fluorescence were conducted in tobacco plants supplied with high (HN-plants) or low nitrogen concentration (LN-plants). The WWC was activated under high light but not low light in both HN-plants and LN-plants. HN-plants had significantly higher capacities of the WWC and photorespiration than LN-plants. Under high light, the relative high WWC activation in HN-plants was accompanied with relative low levels of NPQ compared LN-plants, suggesting that the main role of the WWC under high light was to favor ATP synthesis but not to activate NPQ Interestingly, the activation of WWC was positively correlated to the electron flow devoted to RuBP oxygenation, indicating that the WWC plays an important role in energy balancing when photorespiration is high. We conclude that the WWC is an important flexible mechanism to optimize the stoichiometry of the ATP/NADPH ratio responding to change in photorespiration. Furthermore, HN-plants enhance the WWC activity to maintain higher rates of CO2 assimilation and photorespiration. (C) 2016 Elsevier B.V. All rights reserved.
机译:光合作用的电子传输产生ATP和NADPH,它们被初级代谢所利用。 ATP和NADPH的生产和消耗必须保持平衡,以保持稳态的CO2同化和光呼吸速率。已经表明,通过增加ATP / NADPH的产生,水循环(WWC)对于驱动光合作用是必不可少的。但是,WWC和光呼吸之间的关系鲜为人知。我们检验了WWC通过平衡ATP / NADPH比来响应光呼吸变化的假设。在供应有高浓度(HN植物)或低氮浓度(LN植物)的烟草植物中进行了气体交换和叶绿素荧光的测量。在HN工厂和LN工厂中,WWC在高光下激活,但在低光下激活。 HN植物比LN植物具有更高的WWC和光呼吸能力。在强光下,HN植物中相对较高的WWC活化伴随着LN植物中相对较低的NPQ水平,这表明高光下WWC的主要作用是促进ATP合成,而不是活化NPQ。 WWC的激活与专门用于RuBP氧合的电子流呈正相关,表明在高光呼吸时WWC在能量平衡中起着重要作用。我们得出的结论是,WWC是一种重要的灵活机制,可优化响应光呼吸变化的ATP / NADPH比的化学计量。此外,HN植物增强了WWC活性,以维持较高的CO2同化和光呼吸速率。 (C)2016 Elsevier B.V.保留所有权利。

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