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利用含可溶物的干酒糟微生物生产d-乳酸。

Microbial production of d-lactic acid from dried distiller's grains with solubles.

作者信息

Zaini Nurul Aqilah Binti Mohd, Chatzifragkou Afroditi, Charalampopoulos Dimitris

机构信息

Department of Food and Nutritional Sciences University of Reading Whiteknights UK.

Centre of Biotechnology and Functional Food Faculty of Science and Technology Universiti Kebangsaan Malaysia Selangor Malaysia.

出版信息

Eng Life Sci. 2018 Nov 2;19(1):21-30. doi: 10.1002/elsc.201800077. eCollection 2019 Jan.

Abstract

d-Lactic acid production is gaining increasing attention due to the thermostable properties of its polymer, poly-d-lactic acid . In this study, subsp. , was evaluated for its ability to produce d-lactic acid using Dried Distiller's Grains with Solubles (DDGS) hydrolysate as the substrate. DDGS was first subjected to alkaline pretreatment with sodium hydroxide to remove the hemicellulose component and the generated carbohydrate-rich solids were then subjected to enzymatic hydrolysis using cellulase mixture Accellerase® 1500. When comparing separate hydrolysis and fermentation and simultaneous saccharification and fermentation (SSF) of on DDGS hydrolysate, the latter method demonstrated higher d-lactic acid production (27.9 g/L, 99.9% optical purity of d-lactic acid), with a higher glucose to d-lactic acid conversion yield (84.5%) compared to the former one (24.1 g/L, 99.9% optical purity of d-lactic acid). In addition, the effect of increasing the DDGS concentration in the fermentation system was investigated via a fed-batch SSF approach, where it was shown that the d-lactic acid production increased to 38.1 g/L and the conversion yield decreased to 70%. In conclusion, the SSF approach proved to be an efficient strategy for the production of d-lactic acid from DDGS as it reduced the overall processing time and yielded high d-lactic acid concentrations.

摘要

由于聚-D-乳酸聚合物具有热稳定特性,D-乳酸的生产日益受到关注。在本研究中,对[具体菌种名称]亚种利用干酒糟及其可溶物(DDGS)水解产物作为底物生产D-乳酸的能力进行了评估。首先用氢氧化钠对DDGS进行碱性预处理以去除半纤维素成分,然后使用纤维素酶混合物Accellerase® 1500对生成的富含碳水化合物的固体进行酶水解。在比较DDGS水解产物的分步水解和发酵以及同步糖化和发酵(SSF)时,后一种方法显示出更高的D-乳酸产量(27.9 g/L,D-乳酸光学纯度为99.9%),与前一种方法(24. g/L,D-乳酸光学纯度为99.9%)相比,葡萄糖到D-乳酸的转化率更高(84.5%)。此外,通过补料分批SSF方法研究了提高发酵系统中DDGS浓度的影响,结果表明D-乳酸产量增加到38.1 g/L,转化率降至70%。总之,SSF方法被证明是一种从DDGS生产D-乳酸的有效策略,因为它减少了整体加工时间并产生了高浓度的D-乳酸。

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