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通过统计设计实验优化纤维素酶混合物以高效水解蒸汽爆破玉米秸秆

Optimization of cellulase mixture for efficient hydrolysis of steam-exploded corn stover by statistically designed experiments.

作者信息

Zhou Jin, Wang Yong-Hong, Chu Ju, Luo Ling-Zhi, Zhuang Ying-Ping, Zhang Si-Liang

机构信息

State Key Laboratory of Bioreactor Engineering, National Engineering Research Center for Biotechnology (Shanghai), East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, PR China.

出版信息

Bioresour Technol. 2009 Jan;100(2):819-25. doi: 10.1016/j.biortech.2008.06.068. Epub 2008 Sep 3.

Abstract

To improve the enzymatic hydrolytic efficiency and reduce production cost, a statistically designed experimental approach was used to optimize the composition of cellulase mixture so as to maximize the amount of glucose produced from steam-exploded corn stover (SECS). Using seven purified enzymes (cellobiohydrolases, Cel7A, Cel6A, Cel6B; endoglucanases, Cel7B, Cel12A, Cel61A; and beta-glucosidase) from Trichoderma viride T 100-14 mutant strain, a multi-enzyme mixture was constituted after screening and optimization. The final optimal composition (mol%) of the multi-enzyme mixture was Cel7A (19.8%), Cel6A (37.5%), Cel6B (4.7%), Cel7B (17.7%), Cel12A (15.2%), Cel61A (2.3%) and beta-glucosidase (2.8%). The subsequent verification experiments followed by glucose assay together with scanning electron microscopy (SEM) observation confirmed the validity of the models. The multi-enzyme mixture displayed a high performance in converting the cellulosic substrate (SECS). The amount of glucose produced (15.5mg/ml) was 2.1 times as that of the crude cellulase preparation. The results indicated that the optimized cellulase mixture is an available and efficient paradigm for the hydrolysis of lignocellulosic substrate. The enhanced cellulolytic activity displayed by the constructed cellulase mixture could be used as an effective tool for producing bioethanol efficiently from cellulose.

摘要

为提高酶水解效率并降低生产成本,采用了一种经统计学设计的实验方法来优化纤维素酶混合物的组成,以实现蒸汽爆破玉米秸秆(SECS)产生葡萄糖的量最大化。使用来自绿色木霉T 100 - 14突变株的七种纯化酶(纤维二糖水解酶,Cel7A、Cel6A、Cel6B;内切葡聚糖酶,Cel7B、Cel12A、Cel61A;以及β - 葡萄糖苷酶),经过筛选和优化构建了一种多酶混合物。该多酶混合物的最终最佳组成(摩尔百分比)为Cel7A(19.8%)、Cel6A(37.5%)、Cel6B(4.7%)、Cel7B(17.7%)、Cel12A(15.2%)、Cel61A(2.3%)和β - 葡萄糖苷酶(2.8%)。随后进行的验证实验结合葡萄糖测定以及扫描电子显微镜(SEM)观察证实了模型的有效性。该多酶混合物在转化纤维素底物(SECS)方面表现出高性能。产生的葡萄糖量(15.5mg/ml)是粗纤维素酶制剂的2.1倍。结果表明,优化后的纤维素酶混合物是用于木质纤维素底物水解的一种可行且高效的范例。构建的纤维素酶混合物所表现出的增强的纤维素分解活性可作为从纤维素高效生产生物乙醇的有效工具。

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