首页> 美国卫生研究院文献>Annals of Botany >Light-dependent activation of phosphoenolpyruvate carboxylase by reversible phosphorylation in cluster roots of white lupin plants: diurnal control in response to photosynthate supply
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Light-dependent activation of phosphoenolpyruvate carboxylase by reversible phosphorylation in cluster roots of white lupin plants: diurnal control in response to photosynthate supply

机译:白羽扇豆植物丛生根中可逆磷酸化对磷酸烯醇丙酮酸羧化酶的光依赖性活化:响应光合产物的昼夜控制

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摘要

>Background and Aims Phosphoenolpyruvate carboxylase (PEPC) is a tightly regulated enzyme that controls carbohydrate partitioning to organic acid anions (malate, citrate) excreted in copious amounts by cluster roots of inorganic phosphate (Pi)-deprived white lupin plants. Excreted malate and citrate solubilize otherwise inaccessible sources of mineralized soil Pi for plant uptake. The aim of this study was to test the hypotheses that (1) PEPC is post-translationally activated by reversible phosphorylation in cluster roots of illuminated white lupin plants, and (2) light-dependent phosphorylation of cluster root PEPC is associated with elevated intracellular levels of sucrose and its signalling metabolite, trehalose-6-phosphate.>Methods White lupin plants were cultivated hydroponically at low Pi levels (≤1 µm) and subjected to various light/dark pretreatments. Cluster root PEPC activity and in vivo phosphorylation status were analysed to assess the enzyme’s diurnal, post-translational control in response to light and dark. Levels of various metabolites, including sucrose and trehalose-6-phosphate, were also quantified in cluster root extracts using enzymatic and spectrometric methods.>Key Results During the daytime the cluster root PEPC was activated by phosphorylation at its conserved N-terminal seryl residue. Darkness triggered a progressive reduction in PEPC phosphorylation to undetectable levels, and this was correlated with 75–80 % decreases in concentrations of sucrose and trehalose-6- phosphate.>Conclusions Reversible, light-dependent regulatory PEPC phosphorylation occurs in cluster roots of Pi-deprived white lupin plants. This likely facilitates the well-documented light- and sucrose-dependent exudation of Pi-solubilizing organic acid anions by the cluster roots. PEPC’s in vivo phosphorylation status appears to be modulated by sucrose translocated from CO2-fixing leaves into the non-photosynthetic cluster roots.
机译:>背景和目的磷酸烯醇丙酮酸羧化酶(PEPC)是一种受严格调节的酶,它控制碳水化合物分配给无机酸(Pi)缺乏的白羽扇豆的簇根排泄出的大量有机酸阴离子(苹果酸,柠檬酸)。植物。排泄的苹果酸和柠檬酸盐可溶解原本无法获得的矿化土壤Pi的来源,以供植物吸收。这项研究的目的是检验以下假设:(1)光照的白羽扇豆植物簇根中的可逆磷酸化可激活PEPC的翻译后作用;(2)簇根PEPC的光依赖性磷酸化与细胞内水平升高相关>方法将白色羽扇豆植物以低Pi含量(≤1µm)水培栽培,并进行了各种明/暗预处理。分析了簇根的PEPC活性和体内磷酸化状态,以评估该酶对明和暗的昼夜,翻译后控制。还使用酶法和分光光度法对簇状根提取物中的各种代谢物(包括蔗糖和6-磷酸海藻糖)进行了定量。>主要结果在白天,簇状根PEPC在其保守位置被磷酸化激活N端丝氨酸残基。黑暗导致PEPC磷酸化逐渐降低至无法检测的水平,这与蔗糖和海藻糖6-磷酸的浓度降低75–80%相关。>结论:发生可逆的,依赖光的调节性PEPC磷酸化在剥夺Pi的白色羽扇豆植物的簇根中。这很可能有助于簇根根充分记录的光和蔗糖依赖性的Pi增溶性有机酸阴离子的渗出。 PEPC的体内磷酸化状态似乎受蔗糖从固定CO2的叶片转移到非光合簇根的调节。

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