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Kinetic modeling and exploratory numerical simulation of chloroplastic starch degradation

机译:叶绿素淀粉降解的动力学模型和探索性数值模拟

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摘要

BackgroundHigher plants and algae are able to fix atmospheric carbon dioxide through photosynthesis and store this fixed carbon in large quantities as starch, which can be hydrolyzed into sugars serving as feedstock for fermentation to biofuels and precursors. Rational engineering of carbon flow in plant cells requires a greater understanding of how starch breakdown fluxes respond to variations in enzyme concentrations, kinetic parameters, and metabolite concentrations. We have therefore developed and simulated a detailed kinetic ordinary differential equation model of the degradation pathways for starch synthesized in plants and green algae, which to our knowledge is the most complete such model reported to date.
机译:背景技术高级植物和藻类能够通过光合作用固定大气中的二氧化碳,并将这种固定的碳大量存储为淀粉,淀粉可以水解成糖,用作发酵为生物燃料和前体的原料。植物细胞中碳流的合理设计需要对淀粉分解通量如何响应酶浓度,动力学参数和代谢物浓度变化的深入了解。因此,我们开发并模拟了植物和绿藻中合成淀粉降解途径的详细动力学常微分方程模型,据我们所知,这是迄今为止报道的最完整的此类模型。

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