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蛋壳作为解毒和缓冲剂,用于从大麦秸秆水解物中高效生产聚苹果酸,由 Aureobasidium pullulans NRRL Y-2311-1 实现。

Valorization of egg shell as a detoxifying and buffering agent for efficient polymalic acid production by Aureobasidium pullulans NRRL Y-2311-1 from barley straw hydrolysate.

机构信息

Bioenergy Research Unit, National Center for Agricultural Utilization Research, Agricultural Research Service, US Department of Agriculture, Peoria, IL, USA; Department of Food Engineering, Ege University, 35100 Bornova, Izmir, Turkey.

Bioenergy Research Unit, National Center for Agricultural Utilization Research, Agricultural Research Service, US Department of Agriculture, Peoria, IL, USA.

出版信息

Bioresour Technol. 2019 Apr;278:130-137. doi: 10.1016/j.biortech.2018.12.119. Epub 2019 Jan 2.

Abstract

Stepwise formulation of a versatile and cost-effective medium based on barley straw hydrolysate and egg shell for efficient polymalic acid production by A. pullulans NRRL Y-2311-1 was carried out for the first time. The strain did not grow and produce polymalic acid when dilute acid pretreated barley straw hydrolysate (total fermentable sugars: 94.60 g/L; furfural: 1.01 g/L; hydroxymethylfurfural: 0.55 g/L; acetic acid: 5.06 g/L) was directly used in medium formulation without detoxification (e.g. charcoal pretreatment). When CaCO in the medium formulation was substituted with egg shell powder, efficient production of polymalic acid was achieved without a detoxification step. Utilization of 40 g/L of egg shell powder led to 43.54 g polymalic acid production per L with the productivity of 0.30 g/L/h and yield of 0.48 g/g. The bioprocess strategy used in this study can also be utilized for mass production of several other industrially important microbial organic acids and biomaterials.

摘要

首次针对出芽短梗霉 NRRL Y-2311-1 ,以大麦秸秆水解物和蛋壳为基础,分阶段制定了一种通用且具有成本效益的培养基,用于高效生产聚苹果酸。当未经解毒(例如用活性炭预处理)的稀酸预处理大麦秸秆水解物(总可发酵糖:94.60 g/L;糠醛:1.01 g/L;羟甲基糠醛:0.55 g/L;乙酸:5.06 g/L)直接用于培养基配方中时,该菌株不会生长和生产聚苹果酸。在培养基配方中用蛋壳粉代替 CaCO3 时,无需解毒步骤即可实现聚苹果酸的高效生产。利用 40 g/L 的蛋壳粉,每升可生产 43.54 g 聚苹果酸,生产强度为 0.30 g/L/h,得率为 0.48 g/g。本研究中使用的生物工艺策略也可用于大规模生产其他几种工业上重要的微生物有机酸和生物材料。

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