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Genome-scale metabolic model of Rhodococcus jostii RHA1 (iMT1174) to study the accumulation of storage compounds during nitrogen-limited condition

机译:研究约氏红球菌RHA1(iMT1174)的基因组规模代谢模型研究氮限制条件下贮藏化合物的积累

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摘要

BackgroundRhodococcus jostii RHA1 growing on different substrates is capable of accumulating simultaneously three types of carbon storage compounds: glycogen, polyhydroxyalkanoates (PHA), and triacylglycerols (TAG). Under nitrogen-limited (N-limited) condition, the level of storage increases as is commonly observed for other bacteria. The proportion of each storage compound changes with substrate, but it remains unclear what modelling approach should be adopted to predict the relative composition of the mixture of the storage compounds. We analyzed the growth of R. jostii RHA1 under N-limited conditions using a genome-scale metabolic modelling approach to determine which global metabolic objective function could be used for the prediction.
机译:背景生长在不同底物上的约氏红球菌RHA1能够同时积聚三种类型的碳存储化合物:糖原,聚羟基链烷酸酯(PHA)和三酰基甘油(TAG)。在氮限制(N限制)条件下,存储水平会增加,就像其他细菌通常会观察到的那样。每种存储化合物的比例随底物而变化,但尚不清楚应采用哪种建模方法来预测存储化合物混合物的相对组成。我们使用基因组规模的代谢建模方法,在N受限条件下分析了R. jostii RHA1的生长,以确定哪些全局代谢目标功能可用于预测。

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