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首页> 外文期刊>Journal of biosciences >Flux balance analysis of genome-scale metabolic model of rice (Oryza sativa): Aiming to increase biomass
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Flux balance analysis of genome-scale metabolic model of rice (Oryza sativa): Aiming to increase biomass

机译:水稻基因组规模代谢模型的通量平衡分析:旨在增加生物量

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Due to socio-economic reasons, it is essential to design efficient stress-tolerant, more nutritious, high yielding rice varieties. A systematic understanding of the rice cellular metabolism is essential for this purpose. Here, we analyse a genome-scale metabolic model of rice leaf using Flux Balance Analysis to investigate whether it has potential metabolic flexibility to increase the biosynthesis of any of the biomass components. We initially simulate the metabolic responses under an objective to maximize the biomass components. Using the estimated maximum value of biomass synthesis as a constraint, we further simulate the metabolic responses optimizing the cellular economy. Depending on the physiological conditions of a cell, the transport capacities of intracellular transporters (ICTs) can vary. To mimic this physiological state, we randomly vary the ICTsa€? transport capacities and investigate their effects. The results show that the rice leaf has the potential to increase glycine and starch in a wide range depending on the ICTsa€? transport capacities. The predicted biosynthesis pathways vary slightly at the two different optimization conditions. With the constraint of biomass composition, the cell also has the metabolic plasticity to fix a wide range of carbon-nitrogen ratio.
机译:由于社会经济原因,设计有效的耐胁迫,营养丰富,高产水稻品种至关重要。为此目的,对水稻细胞代谢的系统了解至关重要。在这里,我们使用通量平衡分析法分析了水稻叶片的基因组规模代谢模型,以研究它是否具有潜在的代谢柔性来增加任何生物量成分的生物合成。我们最初在最大程度地利用生物量成分的目标下模拟代谢反应。使用估计的最大生物量合成值作为约束,我们进一步模拟了优化细胞经济的代谢反应。取决于细胞的生理条件,细胞内转运蛋白(ICT)的转运能力可能会有所不同。为了模拟这种生理状态,我们随机改变ICTsa。运输能力并研究其影响。结果表明,根据ICT的不同,稻叶有可能广泛增加甘氨酸和淀粉的含量。运输能力。在两个不同的优化条件下,预测的生物合成途径略有不同。受生物质组成的限制,细胞还具有代谢可塑性,可固定宽范围的碳氮比。

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