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Comparative Lipid Production by Oleaginous Yeasts in Hydrolyzates of Lignocellulosic Biomass and Process Strategy for High Titers

机译:油脂比较脂质生产 木质纤维素生物质水解产物中的酵母 和高滴度的过程策略

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摘要

Oleaginous yeasts can convert sugars to lipids with fatty acid profiles similar to those of vegetable oils, making them attractive for production of biodiesel. Lignocellulosic biomass is an attractive source of sugars for yeast lipid production because it is abundant, potentially low cost, and renewable. However, lignocellulosic hydrolyzates are laden with byproducts which inhibit microbial growth and metabolism. With the goal of identifying oleaginous yeast strains able to convert plant biomass to lipids, we screened 32 strains from the ARS Culture Collection, Peoria, IL to identify four robust strains able to produce high lipid concentrations from both acid and base-pretreated biomass. The screening was arranged in two tiers using undetoxified enzyme hydrolyzates of ammonia fiber expansion (AFEX)-pretreated cornstover as the primary screening medium and acid-pretreated switch grass as the secondary screening medium applied to strains passing the primary screen. Hydrolyzates were prepared at approximately 18–20% solids loading to provide approximately 110 g/L sugars at approximately 56:39:5 mass ratio glucose: xylose:arabinose. A two stage process boosting the molar C:N ratio from 60 to well above 400 in undetoxified switchgrass hydrolyzate was optimized with respect to nitrogen source, C:N, and carbon loading. Using this process three strains were able to consume acetic acid and nearly all available sugars to accumulate 50–65% of cell biomass as lipid (w/w), to produce 25–30 g/L lipid at 0.12– 0.22 g/L/h and 0.13–0.15 g/g or 39–45% of the theoretical yield at pH 6 and 7, a performance unprecedented in lignocellulosic hydrolyzates. Three of the top strains have not previously been reported for the bioconversion of lignocellulose to lipids. The successful identification and development of top-performing lipidproducing yeast in lignocellulose hydrolyzates is expected to advance the economic feasibility of high quality biodiesel and jet fuels from renewable biomass, expanding the market potential for lignocellulose-derived fuels beyond ethanol for automobiles to the entire U.S. transportation market.
机译:含油酵母可将糖转化为具有类似于植物油的脂肪酸特征的脂质,从而使其对生物柴油的生产具有吸引力。木质纤维素生物质是酵母脂质生产中糖的诱人来源,因为它含量丰富,成本可能较低且可再生。然而,木质纤维素水解产物中含有抑制微生物生长和代谢的副产物。为了鉴定能够将植物生物量转化为脂质的含油酵母菌株,我们从伊利诺伊州皮奥里亚市的ARS Culture Collection筛选了32株菌株,以鉴定出能够从酸和碱预处理的生物量中产生高脂质浓度的四种强壮菌株。筛选分为两层,使用未经氨氧化的氨纤维膨胀酶水解物(AFEX)预处理的玉米秸秆作为主要筛选介质,并使用酸预处理的switch草作为次要筛选介质,应用于通过初次筛选的菌株。制备的水解产物的固形物含量约为18–20%,以质量比约56:39:5的葡萄糖:木糖:阿拉伯糖提供约110 g / L糖。针对氮源,C:N和碳载量,优化了两步工艺,可将未脱氧的柳枝switch水解液中的C:N摩尔比从60提高到400以上。使用此过程,三株菌株能够消耗乙酸和几乎所有可用的糖,以脂质形式(w / w)积累50-65%的细胞生物量,以0.12-0.22 g / L /的量产生25-30 g / L的脂质。 h和pH值为6和7时为理论产量的0.13-0.15 g / g或39-45%,这在木质纤维素水解产物中是前所未有的。先前尚未报道其中三个顶级菌株将木质纤维素生物转化为脂质。在木质纤维素水解物中成功鉴定和开发出性能最高的产脂酵母,有望提高可再生生物质带来的高质量生物柴油和喷气燃料的经济可行性,从而将木质纤维素衍生燃料的市场潜力从汽车用乙醇扩展到整个美国运输市场。

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