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Characterization of xanthan production under solid state fermentation on polyurethane foam

机译:聚氨酯泡沫固态发酵下的黄原植物生产的特征

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Time courses of biomass, glucose and xanthan during solid state fermentation with various initial glucose concentrations were determined and analysed with a metabolic flux method. The use of 80 g L~(-1) instead of 40 and 20 g L~(-1) glucose led to higher xanthan production. In the stationary phase of cells, the velocities (ν) of all metabolic pathways are increased with increasing glucose concentration, while the highest specific rates (γ) of glucose consumption and xanthan generation was obtained when the initial glucose concentration was 40 g L~(-1). Hence, under solid-state fermentation, an abundant initial carbon source is advantageous in improving the velocity of xanthan production, while moderately abundant carbon sources promote the conversion of carbon to xanthan.
机译:测定并用代谢助熔剂法测定并分析固态发酵过程中的生物质,葡萄糖和黄原的时间疗程,并用代谢助熔剂法分析。 使用80g l〜(-1)代替40和20g l〜(-1)葡萄糖导致了更高的黄原坦产生。 在细胞的固定阶段,随着葡萄糖浓度的增加,所有代谢途径的速度(ν)增加,而当初始葡萄糖浓度为40g l〜( -1)。 因此,在固态发酵下,丰富的初始碳源方面有利于改善黄原坦生产的速度,而中间碳源促进碳转化为黄原烷。

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