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A Method of Accounting for Enzyme Costs in Flux Balance Analysis Reveals Alternative Pathways and Metabolite Stores in an Illuminated Arabidopsis Leaf

机译:一种在通量平衡分析中考虑酶成本的方法,揭示了拟南芥叶片中的替代途径和代谢产物存储

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Flux balance analysis of plant metabolism is an established method for predicting metabolic flux phenotypes and for exploring the way in which the plant metabolic network delivers specific outcomes in different cell types, tissues, and temporal phases. A recurring theme is the need to explore the flexibility of the network in meeting its objectives and, in particular, to establish the extent to which alternative pathways can contribute to achieving specific outcomes. Unfortunately, predictions from conventional flux balance analysis minimize the simultaneous operation of alternative pathways, but by introducing flux weighting factors to allow for the variable intrinsic cost of supporting each flux, it is possible to activate different pathways in individual simulations and, thus, to explore alternative pathways by averaging thousands of simulations. This new method has been applied to a diel genome-scale model of Arabidopsis (Arabidopsis thaliana) leaf metabolism to explore the flexibility of the network in meeting the metabolic requirements of the leaf in the light. This identified alternative flux modes in the Calvin-Benson cycle revealed the potential for alternative transitory carbon stores in leaves and led to predictions about the light-dependent contribution of alternative electron flow pathways and futile cycles in energy rebalancing. Notable features of the analysis include the light-dependent tradeoff between the use of carbohydrates and four-carbon organic acids as transitory storage forms and the way in which multiple pathways for the consumption of ATP and NADPH can contribute to the balancing of the requirements of photosynthetic metabolism with the energy available from photon capture.
机译:植物新陈代谢的通量平衡分析是一种预测代谢通量表型和探索植物新陈代谢网络在不同细胞类型,组织和时间阶段传递特定结果的方法的既定方法。一个经常出现的主题是需要探索网络在实现其目标方面的灵活性,尤其是确定替代途径可以在多大程度上有助于实现特定成果。不幸的是,来自常规通量平衡分析的预测将替代路径的同时运行减至最少,但是通过引入通量加权因子以考虑支持每种通量的可变内在成本,有可能在单独的模拟中激活不同的路径,因此可以探索通过平均数千个模拟来选择其他途径。该新方法已应用于拟南芥(Arabidopsis thaliana)叶片代谢的狄尔基因组规模模型,以探索网络在满足光照条件下叶片代谢需求方面的灵活性。这种在Calvin-Benson循环中确定的替代通量模式揭示了叶片中替代性瞬态碳存储的潜力,并导致了对替代电子流路和能量循环中无用循环的光依赖性贡献的预测。该分析的显着特征包括使用碳水化合物和四碳有机酸作为暂时存储形式之间的光依赖权衡,以及消耗ATP和NADPH的多种途径可以有助于平衡光合作用的方式通过光子捕获获得的能量进行新陈代谢。

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