首页> 外文期刊>Journal of Experimental Botany >Sucrose phosphate synthase activity and the co-ordination of carbon partitioning during sucrose and amino acid accumulation in desiccation-tolerant leaf material of the C4 resurrection plant Sporobolus stapfianus during dehydration
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Sucrose phosphate synthase activity and the co-ordination of carbon partitioning during sucrose and amino acid accumulation in desiccation-tolerant leaf material of the C4 resurrection plant Sporobolus stapfianus during dehydration

机译:C 4 复活植物Sporobolus stapfianus脱水过程中耐脱水叶片材料中蔗糖磷酸合酶活性及蔗糖碳分配与氨基酸积累的协调

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摘要

Both sucrose and amino acids accumulate in desiccation-tolerant leaf material of the C4 resurrection plant, Sporobolus stapfianus Gandoger (Poaceae). The present investigation was aimed at examining sucrose phosphate synthase (SPS) activity and various metabolic checkpoints involved in the co-ordination of carbon partitioning between these competing pathways during dehydration. In the initial phase of dehydration, photosynthesis and starch content declined to immeasurable levels, whilst significant increases in hexose sugars, sucrose, and amino acids were associated with concomitant significant increases in SPS and pyruvate kinase (PK) activities, and maximal activity levels of phosphoenolpyruvate carboxylase (PEPCase), NADP-dependent isocitrate dehydrogenase (NADP-ICDH), and NADH-dependent glutamate synthase (NADH-GOGAT). The next phase of dehydration was characterized by changes in metabolism coinciding with net hexose sugar phosphorylation. This phase was characterized by a further significant increase in sucrose accumulation, with increased rates of net sucrose accumulation and maximum rates of SPS activity measured under both saturating and limiting (inhibitory) conditions. SPS protein was also increased. The stronger competitive edge of SPS for carbon entering glycolysis during hexose phosphorylation was also demonstrated by the further decrease in respiration and the simultaneous, significant decline in both PEPCase and PK activities. A decreased anabolic demand for 2-oxoglutarate (2OG), which remained constant, was shown by the co-ordinated decrease in GOGAT. It is proposed that the further increase in amino acids in this phase of dehydration may be in part attributable to the breakdown of insoluble proteins.
机译:C 4 复活植物Sporobolus stapfianus Gandoger(禾本科)的耐干燥性叶片材料中蔗糖和氨基酸均积累。本研究旨在检查蔗糖磷酸合酶(SPS)活性和脱水过程中参与这些竞争途径之间碳分配协调的各种代谢检查点。在脱水的初期,光合作用和淀粉含量下降到无法测量的水平,而己糖,蔗糖和氨基酸的显着增加与SPS和丙酮酸激酶(PK)活性的同时显着增加以及磷酸烯醇式丙酮酸的最大活性水平相关羧化酶(PEPCase),NADP依赖性异柠檬酸脱氢酶(NADP-ICDH)和NADH依赖性谷氨酸合酶(NADH-GOGAT)。脱水的下一阶段的特征是新陈代谢的变化与净己糖磷酸化相吻合。该阶段的特征是蔗糖积累进一步显着增加,在饱和和限制(抑制)条件下测得的净蔗糖积累速率增加,SPS活性最高速率升高。 SPS蛋白也增加。呼吸的进一步下降以及PEPCase和PK活性同时显着下降也证明了SPS在己糖磷酸化过程中进入糖酵解的碳具有更强的竞争优势。 GOGAT的协调减少表明2-氧代戊二酸酯(2OG)的合成代谢需求量下降,且保持不变。有人提出在该脱水阶段氨基酸的进一步增加可能部分归因于不溶性蛋白质的分解。

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