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将玉米芯中的纤维素和半纤维素生物转化为 L-乳酸和木低聚糖。

Bioconversion of cellulose and hemicellulose in corn cob into L-lactic acid and xylo-oligosaccharides.

机构信息

Liaoning Key Lab of Lignocellulose Chemistry and Biomaterials, Liaoning Collaborative Innovation Center for Lignocellulosic Biorefinery, College of Light Industry and Chemical Engineering, Dalian Polytechnic University, Dalian 116034, China.

College of Engineering, Huazhong Agricultural University, Wuhan 430070, China; College of Horticulture & Forestry Science, Huazhong Agricultural University, Wuhan 430070, China.

出版信息

Int J Biol Macromol. 2023 Dec 31;253(Pt 3):126775. doi: 10.1016/j.ijbiomac.2023.126775. Epub 2023 Sep 11.

Abstract

With the banning of antibiotic chemical feed additives, multi-functional bioactive feed additives have been extensively sought after by the feed industry. In this study, low-cost and renewable corn cobs were treated with liquid hot water and converted into bioactive xylo-oligosaccharides and L-lactic acid after enzymatic hydrolysis, strain activation, and fermentation under mild conditions, which achieved a full utilization of cellulose and hemicellulose in corn cobs. Simultaneous saccharification fermentation after strain activation with enzymatic hydrolysate delivered the highest conversion rate of glucose to L-lactic acid (93.00 %) and yielded 17.38 g/L L-lactic acid and 2.68 g/L xylo-oligosaccharides. On this basis, batch-feeding fermentation resulted in a 78.03 % conversion rate of glucose to L-lactic acid, 18.99 g/L L-lactic acid, and 2.84 g/L xylo-oligosaccharides. This work not only provided a green and clean bioconversion strategy to produce multi-functional feed additives but can also boost the full utilization of renewable and cheap biomass resources.

摘要

随着抗生素化学饲料添加剂的禁用,多功能生物活性饲料添加剂受到饲料行业的广泛追捧。本研究采用廉价可再生的玉米芯,经液体热预处理,酶解、菌株激活、温和发酵转化为生物活性木二糖和 L-乳酸,实现了玉米芯中纤维素和半纤维素的全利用。酶解物经菌株激活后的同步糖化发酵,葡萄糖到 L-乳酸的转化率最高(93.00%),产 L-乳酸 17.38g/L,木二糖 2.68g/L。在此基础上,分批补料发酵,葡萄糖到 L-乳酸的转化率为 78.03%,产 L-乳酸 18.99g/L,木二糖 2.84g/L。该工作不仅为多功能饲料添加剂的生产提供了绿色清洁的生物转化策略,而且可以促进可再生和廉价生物质资源的充分利用。

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