首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Efficient hydrolysis of corncob residue through cellulolytic enzymes from Trichoderma strain G26 and L-lactic acid preparation with the hydrolysate
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Efficient hydrolysis of corncob residue through cellulolytic enzymes from Trichoderma strain G26 and L-lactic acid preparation with the hydrolysate

机译:通过木霉G26菌株的纤维素分解酶有效水解玉米芯残留物,并使用水解产物制备L-乳酸

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摘要

To prepare fermentable hydrolysate from corncob residue (CCR), Trichoderma strain G26 was cultured on medium containing CCR for production of cellulolytic enzymes through solid-state fermentation (SSF), resulting in 71.3 IU/g (FPA), 136.2 IU/g (CMCase), 85.1 IU/g (beta-glucosidase) and 11,344 IU/g (xylanase), respectively. Through a three-stage saccharification strategy, CCR was hydrolyzed by the enzymatic solution (6.5 FPU/ml) into fermentable hydrolysate containing 60.1 g/l glucose (81.2% cellulose was converted at solid loading of 12.5%), 21.4% higher than that by the one-stage method. And then the hydrolysate was used to produce L-lactic acid by a previous screened strain Bacillus coagulans ZX25 in the submerged fermentation. 52.0 g/l L-lactic acid was obtained after fermentation for 44 h, with 86.5% glucose being converted to L-lactic acid. The results indicate that the strains and the hydrolysis strategy are promising for commercial production of L-lactic acid from CCR and other biomass. (C) 2015 Elsevier Ltd. All rights reserved.
机译:为了从玉米芯残渣(CCR)制备可发酵的水解产物,将木霉G26菌株培养在含有CCR的培养基上,以通过固态发酵(SSF)产生纤维素分解酶,产生71.3 IU / g(FPA),136.2 IU / g(CMCase ),85.1 IU / g(β-葡萄糖苷酶)和11,344 IU / g(木聚糖酶)。通过三阶段糖化策略,CCR被酶溶液(6.5 FPU / ml)水解为含有60.1 g / l葡萄糖的可发酵水解产物(81.2%的纤维素以12.5%的固含量转化,比后者高21.4%)。一阶段方法。然后,在水下发酵中,通过先前筛选的凝结芽孢杆菌ZX25菌株,将水解产物用于生产L-乳酸。发酵44小时后获得52.0g / l L-乳酸,其中86.5%的葡萄糖被转化为L-乳酸。结果表明,菌株和水解策略对于从CCR和其他生物质商业生产L-乳酸是有前途的。 (C)2015 Elsevier Ltd.保留所有权利。

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