首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Evaluation of combination treatments of sodium hydroxide and steam explosion for the production of cellulase-systems by two T-reesei mutants under solid-state fermentation conditions
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Evaluation of combination treatments of sodium hydroxide and steam explosion for the production of cellulase-systems by two T-reesei mutants under solid-state fermentation conditions

机译:固态发酵条件下两个T-reesei突变体对氢氧化钠和蒸汽爆炸联合处理纤维素酶系统生产的评估

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摘要

A central composite orthogonal design model was used to optimize pretreatment and culture conditions for the production of cellulase-systems by T. reesei QMY-1 and MCG 80 using wheat straw as carbon source. The model was capable of predicting conditions for maximum filter paper activity (FPA) and beta-glucosidase activity (beta GA). Statistical analysis showed close agreement between the experimental FPA and beta GA activities and predicted values. Maximum FPA of 9.88 IU/ml and 8.38 IU/ml were obtained for T. reesei MCG 80 and T. reesei QMY-1, respectively, using 4% NaOH pretreatment and initial culture pH 6, under solid-state fermentation conditions. The cellulase-systems produced were capable of hydrolyzing over 80% delignified wheat straw. Combination of NaOH pretreatment with steam explosion did not enhance the activity of the cellulase-systems of the two mutants. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 25]
机译:中央复合正交设计模型用于优化以小麦秸秆为碳源的里氏木霉QMY-1和MCG 80生产纤维素酶系统的预处理和培养条件。该模型能够预测最大滤纸活性(FPA)和β-葡萄糖苷酶活性(βGA)的条件。统计分析表明,实验FPA和beta GA活性与预测值之间有着密切的一致性。在固态发酵条件下,使用4%NaOH预处理和初始培养pH 6,分别对里氏木霉MCG 80和里氏木霉QMY-1分别获得9.88 IU / ml和8.38 IU / ml的最大FPA。产生的纤维素酶系统能够水解超过80%的脱木质麦秸。 NaOH预处理与蒸汽爆炸的组合并没有增强两个突变体的纤维素酶系统的活性。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:25]

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