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Random Weighting through Linear Programming into Intracellular Transporters of Rice Metabolic Network

机译:通过线性规划随机加权进入水稻代谢网络的细胞内运输工具

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An eukaryotic cell has different compartments which are specific to different biological activities. The total cellular metabolism is also compartmentalized. The intracellular transporters within a cell are responsible to transport some of the metabolites of one compartment to other. We formulate a model to understand the utility of different transporters. Here, we have taken a partially compartmentalized genome scale metabolic model of rice (Oryza sativa). Depending on the gene-expression, the transporters available to transport the metabolites from one compartment to other would change. We study the effect of transporter's capacity on the overall metabolism. We find that depending on the effectiveness of transporters, the photon demand for a rice leaf's biochemical machinery to synthesize the necessary biomass from inorganic nutrients, changes upto three fold. We also observe, interactions of mitochondrial and chloroplastid reactions are associated with this change.
机译:真核细胞具有不同的隔室,其特异于不同的生物活性。总细胞代谢也是划分的。细胞内的细胞内转运蛋白负责将一个隔室的一些代谢物转运到其他隔室。我们制定了一个模型,以了解不同运输车的效用。在这里,我们采取了稻米(Oryza Sativa)的部分分隔型基因组尺度代谢模型。取决于基因表达,可用于将代谢物从一个隔间运送到其它的转运蛋白。我们研究了运输车对整体新陈代谢的能力的影响。我们发现,根据运输扣的有效性,对大米叶的生化机械的光子需求从无机营养物中合成必要的生物量,达到三倍。我们还观察到,线粒体和叶绿体反应的相互作用与这种变化有关。

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