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Metabolic flux analysis of Gluconacetobacter xylinus for bacterial cellulose production

机译:木糖葡糖杆菌生产细菌纤维素的代谢通量分析

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Metabolic flux analysis was used to reveal the metabolic distributions in Gluconacetobacter xylinus (CGMCC no. 2955) cultured on different carbon sources. Compared with other sources, glucose, fructose, and glycerol could achieve much higher bacterial cellulose (BC) yields from G. xylinus (CGMCC no. 2955). The glycerol led to the highest BC production with a metabolic yield of 14.7 g/mol C, which was approximately 1.69-fold and 2.38-fold greater than that produced using fructose and glucose medium, respectively. The highest BC productivity from G. xylinus CGMCC 2955 was 5.97 g BC/L (dry weight) when using glycerol as the sole carbon source. Metabolic flux analysis for the central carbon metabolism revealed that about 47.96 % of glycerol was transformed into BC, while only 19.05 % of glucose and 24.78 % of fructose were transformed into BC. Instead, when glucose was used as the sole carbon source, 40.03 % of glucose was turned into the by-product gluconic acid. Compared with BC from glucose and fructose, BC from the glycerol medium showed the highest tensile strength at 83.5 MPa, with thinner fibers and lower porosity. As a main byproduct of biodiesel production, glycerol holds great potential to produce BC with superior mechanical and microstructural characteristics.
机译:代谢通量分析用于揭示在不同碳源上培养的木糖葡糖杆菌(CGMCC No. 2955)的代谢分布。与其他来源相比,葡萄糖,果糖和甘油可以从木霉中获得更高的细菌纤维素(BC)产量(CGMCC No. 2955)。甘油导致最高的BC产量,代谢产量为14.7 g / mol C,分别比使用果糖和葡萄糖培养基生产的产量高约1.69倍和2.38倍。当使用甘油作为唯一碳源时,来自G. xylinus CGMCC 2955的最高BC产量为5.97 g BC / L(干重)。中心碳代谢的代谢通量分析显示,约47.96%的甘油转化为BC,而只有19.05%的葡萄糖和24.78%的果糖转化为BC。相反,当葡萄糖用作唯一的碳源时,40.03%的葡萄糖转化为副产物葡萄糖酸。与葡萄糖和果糖中的BC相比,甘油介质中的BC在83.5 MPa时显示出最高的拉伸强度,纤维更细,孔隙率更低。作为生物柴油生产的主要副产品,甘油具有生产具有优异机械和微观结构特征的BC的巨大潜力。

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