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The scale-up cultivation of Candida utilis in waste potato juice water with glycerol affects biomass and β(13)/(16)-glucan characteristic and yield

机译:甘油在废马铃薯马铃薯汁水中按比例放大栽培念珠菌对生物量和β(13)/(16)-葡聚糖的特性和产量有影响

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摘要

New ideas on production of yeast origin β-glucan preparations for industrial application are attracting interest considering market development of that high-value functional polysaccharide. Sellecting an efficient yeast producer and designing culture conditions are a prerequisite for obtaining high yield of β-glucan. The aim of this study was to describe at the first time the influence of the mode of cultivation (shake-flasks and batch fermentation) and time of culture on characteristic and yield of biomass and β(1,3)/(1,6)-glucan preparations of Candida utilis ATCC 9950 after cultivation in medium based on waste potato juice water supplemented with 10% of glycerol. After shake-flask culture, the biomass was characterized by higher protein content (app. 26.5%) compared to 19% after batch fermentation while the cultivation on a biofermentor scale promoted polysaccharides biosynthesis. The highest output of purified β(1,3)/(1,6)-glucan preparation (5.3 gd.w./L), containing app. 85% of that polysaccharide, was found after 48 h cultivation in biofermentor. Batch fermentation promoted biosynthesis of alkali-insoluble β(1,3)/(1,6)-glucan fraction, decreasing the content of β(1,6)-glucan. The yield of β(1,3)/(1,6)-glucan synthesis was 0.063 (g/g glycerol), while the productivity of that polysaccharide reached 0.094 (g/L/h). Longer batch fermentation (72 h) resulted in reduction of production efficiency of β-glucan preparation under studied conditions. The results of the study provide a new efficient biotechnological solution to produce high-value β-glucan preparations of C. utilis origin based on valorization of agro-waste potato juice water with glycerol.
机译:考虑到该高价值功能性多糖的市场开发,生产用于工业应用的酵母来源的β-葡聚糖制剂的新思路引起了人们的兴趣。寻找有效的酵母生产者并设计培养条件是获得高产量的β-葡聚糖的先决条件。这项研究的目的是第一次描述培养方式(摇瓶和分批发酵)和培养时间对生物质和β(1,3)/(1,6)的特性和产量的影响。在添加了10%甘油的废马铃薯汁水为基础的培养基中培养后,可使用Candida utilis ATCC 9950制成的葡聚糖制剂。摇瓶培养后,生物质的特征在于较高的蛋白质含量(约26.5%),而分批发酵后为19%,而在生物发酵罐规模上的培养促进了多糖的生物合成。含app。的纯化的β(1,3)/(1,6)-葡聚糖制剂的最高产量(5.3 gd.w./L)。在生物发酵罐中培养48小时后发现了85%的多糖。分批发酵促进了碱不溶性β(1,3)/(1,6)-葡聚糖馏分的生物合成,降低了β(1,6)-葡聚糖的含量。 β(1,3)/(1,6)-葡聚糖合成的产量为0.063(g / g甘油),而该多糖的生产率达到0.094(g / L / h)。在研究条件下,较长的分批发酵(72小时)导致β-葡聚糖制剂的生产效率降低。该研究的结果提供了一种新的有效生物技术解决方案,该解决方案可通过利用甘油对农用废弃物马铃薯汁水进行增值来生产高价值的麻产β-葡聚糖制剂。

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