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Genome-scale reconstruction and in silico analysis of the Ralstonia eutropha H16 for polyhydroxyalkanoate synthesis lithoautotrophic growth and 2-methyl citric acid production

机译:Ralstonia eutropha H16的基因组规模重建和计算机模拟分析用于聚羟基链烷酸酯的合成自养营养的生长和2-甲基柠檬酸的生产

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摘要

BackgroundRalstonia eutropha H16, found in both soil and water, is a Gram-negative lithoautotrophic bacterium that can utillize CO2 and H2 as its sources of carbon and energy in the absence of organic substrates. R. eutropha H16 can reach high cell densities either under lithoautotrophic or heterotrophic conditions, which makes it suitable for a number of biotechnological applications. It is the best known and most promising producer of polyhydroxyalkanoates (PHAs) from various carbon substrates and is an environmentally important bacterium that can degrade aromatic compounds. In order to make R. eutropha H16 a more efficient and robust biofactory, system-wide metabolic engineering to improve its metabolic performance is essential. Thus, it is necessary to analyze its metabolic characteristics systematically and optimize the entire metabolic network at systems level.
机译:背景在土壤和水中都存在的富营养小球藻(Ralstonia eutropha H16)是革兰氏阴性的自养细菌,在没有有机底物的情况下可以利用CO2和H2作为碳和能量的来源。在富营养性或异养性条件下,富营养罗汉果H16可以达到高细胞密度,这使其适用于许多生物技术应用。它是从各种碳基质中生产聚羟基链烷酸酯(PHA)的最著名和最有前途的生产商,并且是一种对环境重要的细菌,可以降解芳香族化合物。为了使富营养R. eutropha H16成为更有效和更强大的生物工厂,提高其代谢性能的全系统代谢工程至关重要。因此,有必要系统地分析其代谢特征并在系统水平上优化整个代谢网络。

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