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Metabolic Flux Analysis of Clostridium thermocellum

机译:Clostridium Thermocellum的代谢通量分析

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摘要

Low-cost biochemical and/or fuel production from lignocellulosic materials is a national research focus. Few microorganisms are able to produce enzymes for degrading complex sugars into simple sugars which are necessary for the process. One such microorganism is the cellulolytic thermophilic anaerobe, Clostridium thermocellum. However, engineering improvements are needed before this organism will be economically viable in commercial fermentations. A complete metabolic model was developed for evaluating the carbon flux distribution through the metabolic pathway of Clostridium thermocellum in terms of milli-equivalent carbon per gram dry cells per hour. The model was derived from steady state stoichiometric equations of the biochemical network. A carbon recovery (%) analysis confirmed that the model including the central metabolism and biomass formation accounted for the majority of carbon. The importance of including the G1P/G6P network node into the model was verified, resulting in more reliable model performance.
机译:木质纤维素材料的低成本生化和/或燃料生产是国家研究重点。少量微生物能够生产用于将复合糖降解成工艺所必需的糖的酶。一种这样的微生物是纤维素溶解嗜热厌氧,梭菌热团簇。然而,在商业发酵中经济上可行之前需要工程改进。开发了一种完整的代谢模型,用于评估通过在每小时每克干细胞的毫克当量的碳的梭菌热团块的代谢途径来评估碳通量分布。该模型源自生物化网络的稳态化学计量方程。碳回收率(%)分析证实,包括中央代谢和生物质形成的模型占大多数碳。验证了将G1P / G6P网络节点包含G1P / G6P网络节点的重要性,导致更可靠的模型性能。

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