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Optimization of carbon source efficiency for lipid production with the oleaginous yeast Saitozyma podzolica DSM 27192 applying automated continuous feeding

机译:脂质生产碳源效率优化含有油脂酵母的脂质生产SAITOZYMA Podzolica DSM 27192应用自动连续喂养

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Biotechnologically produced microbial lipids are of interest as potential alternatives for crude and plant oils. Their lipid profile is similar to plant oils and can therefore be a substitute for the production of biofuels, additives for food and cosmetics industry as well as building blocks for oleochemicals. Commercial microbial lipids production, however, is still not profitable and research on process optimization and cost reduction is required. This study reports on the process optimization using glucose or xylose with the unconventional oleaginous yeast Saitozyma podzolica DSM 27192 aiming to reduce the applied carbon source amount without sacrificing lipid productivity. By optimizing the process parameters temperature and pH, lipid productivity was enhanced by 40%. Thereupon, by establishing a two-phase strategy with an initial batch phase and a subsequent fed-batch phase for lipid production in which a constant sugar concentration of about 10?g/L was maintained, resulted in saving of?~?41% of total glucose and?~?26% of total xylose. By performing the automated continuous sugar feed the total sugar uptake was improved to?~?91% for glucose and?~?92% for xylose and thus, prevented waste of unused carbon source in the cultivation medium. In addition, reduced glucose cultivation resulted in to 28% higher cell growth and 19% increase of lipid titer. By using xylose, the by-product xylonic acid was identified for the first time as by-product of S. podzolica. These findings provide a broad view of different cultivation process strategies with subsequent comparison and evaluation for lipid production with S. podzolica. Additionally, new biotechnological characteristics of this yeast were highlighted regarding the ability to produce valuable organic acids from sustainable and renewable sugars.
机译:生物技术产生的微生物脂质是粗糙和植物油的潜在替代品。它们的脂质型材类似于植物油,因此可以是生物燃料生产的替代品,食品和化妆品的添加剂以及油化学物质的构建块。然而,商业微生物脂质脂质生产仍然没有盈利,需要研究过程优化和降低成本。本研究报告了使用葡萄糖或木糖的过程优化,与非传统的含油酵母Seast Saitozyma Podzolica DSM 27192旨在减少施加的碳源量而不会牺牲脂质生产率。通过优化工艺参数温度和pH,脂质生产率增强了40%。在那里,通过建立具有初始分批相的两相策略和随后的脂肪批液进行脂质生产,其中维持了约10μl约10μl的恒定糖浓度,导致节省?〜41%总葡萄糖和?〜?26%的木糖。通过进行自动连续的糖饲料,总糖摄取得到改善为葡萄糖的〜91%,~~~~~~~~~~~~的,因此,防止培养培养基中的未使用的碳源。此外,降低的葡萄糖栽培导致细胞生长更高的28%和脂质滴度增加19%。通过使用木糖,将副产物的木聚糖作为S. Podzolica的副产物鉴定。这些发现提供了对不同培养过程策略的广泛看法,随后对脂质生产的比较和评价,脂质生产与S. Podzolica。此外,突出了该酵母的新生物技术特征,关于生产来自可持续和可再生糖的有价值的有机酸的能力。

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