首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >A novel osmotic pressure control fed-batch fermentation strategy for improvement of erythritol production by Yarrowia lipolytica from glycerol
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A novel osmotic pressure control fed-batch fermentation strategy for improvement of erythritol production by Yarrowia lipolytica from glycerol

机译:一种新的渗透压控制补料分批发酵策略,用于提高解脂耶氏酵母从甘油生产赤藓糖醇的能力

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摘要

The effect of osmotic pressure on erythritol and mannitol production by an osmophilic yeast strain of Yarrowia lipolytica CICC 1675 using glycerol as the sole carbon source was investigated. Appropriately high osmotic pressure was found to enhance erythritol production and inhibit mannitol formation. A novel two-stage osmotic pressure control fed-batch strategy based on the kinetic analysis was developed for higher erythritol yield and productivity. During the first 96 h, the osmotic pressure was maintained at 4.25 osmol/kg by feeding glycerol to reduce the inhibition of cell growth. After 132 h, the osmotic pressure was controlled at 4.94 osmol/kg to maintain a high dp_(ery)/dt. Maximum erythritol yield of 194.3 g/L was obtained with 0.95 g/L/h productivity, which were 25.7% and 2.2%, respectively, improvement over the best results in one-stage fed-batch fermentation. This is the first report that a novel osmotic pressure control fed-batch strategy significantly enhanced erythritol production.
机译:研究了渗透压对以甘油为唯一碳源的解脂耶氏酵母(Yarrowia lipolytica CICC 1675)的渗透性酵母菌株对赤藓糖醇和甘露醇产量的影响。发现适当的高渗透压可增加赤藓糖醇的产生并抑制甘露醇的形成。开发了一种基于动力学分析的新型两阶段渗透压控制补料分批策略,以提高赤藓糖醇的产率和生产率。在最初的96小时内,通过加入甘油以减少细胞生长的抑制作用,渗透压保持在4.25 osmol / kg。 132小时后,将渗透压控制在4.94 osmol / kg,以维持高dp_(ery)/ dt。赤藓糖醇的最大产量为194.3 g / L,生产率为0.95 g / L / h,分别为25.7%和2.2%,比一阶段分批分批发酵的最佳结果有所提高。这是第一个报道,一种新型的渗透压控制补料分批策略显着提高了赤藓糖醇的产量。

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