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Model-Assisted Analysis of Sugar Metabolism throughout Tomato Fruit Development Reveals Enzyme and Carrier Properties in Relation to Vacuole Expansion

机译:番茄果实发育过程中糖代谢的模型辅助分析揭示了与液泡扩张有关的酶和载体性质

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摘要

A kinetic model combining enzyme activity measurements and subcellular compartmentation was parameterized to fit the sucrose, hexose, and glucose-6-P contents of pericarp throughout tomato (Solanum lycopersicum) fruit development. The model was further validated using independent data obtained from domesticated and wild tomato species and on transgenic lines. A hierarchical clustering analysis of the calculated fluxes and enzyme capacities together revealed stage-dependent features. Cell division was characterized by a high sucrolytic activity of the vacuole, whereas sucrose cleavage during expansion was sustained by both sucrose synthase and neutral invertase, associated with minimal futile cycling. Most importantly, a tight correlation between flux rate and enzyme capacity was found for fructokinase and PPi-dependent phosphofructokinase during cell division and for sucrose synthase, UDP-glucopyrophosphorylase, and phosphoglucomutase during expansion, thus suggesting an adaptation of enzyme abundance to metabolic needs. In contrast, for most enzymes, flux rates varied irrespectively of enzyme capacities, and most enzymes functioned at < 5% of their maximal catalytic capacity. One of the major findings with the model was the high accumulation of soluble sugars within the vacuole together with organic acids, thus enabling the osmotic-driven vacuole expansion that was found during cell division.
机译:参数化酶活性测量和亚细胞区隔的动力学模型参数化以适合整个番茄(茄属植物)果实发育过程中果皮的蔗糖,己糖和葡萄糖-6-P含量。使用从驯养和野生番茄物种以及转基因品系获得的独立数据进一步验证了该模型。计算通量和酶容量的层次聚类分析一起揭示了阶段依赖性特征。细胞分裂的特征在于液泡具有高的糖酵解活性,而蔗糖合酶和中性转化酶均能维持扩张过程中的蔗糖裂解,从而使无效的循环最少。最重要的是,发现果糖激酶和PPi依赖性磷酸果糖激酶在细胞分裂过程中以及蔗糖合酶,UDP-葡萄糖焦磷酸化酶和磷酸葡萄糖突变酶的通量率和酶容量之间存在紧密的联系,从而表明酶丰度适应了代谢需求。相反,对于大多数酶而言,通量率随酶容量的变化而变化,并且大多数酶的功能均小于其最大催化容量的5%。该模型的主要发现之一是液泡中的可溶性糖与有机酸一起大量积累,从而实现了在细胞分裂过程中发现的渗透驱动液泡膨胀。

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