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阿魏侧耳纤维素酶将木质生物质转化为可发酵糖。

Conversion of woody biomass into fermentable sugars by cellulase from Agaricus arvensis.

机构信息

Department of Chemical Engineering, Konkuk University, Seoul, Republic of Korea.

出版信息

Bioresour Technol. 2010 Nov;101(22):8742-9. doi: 10.1016/j.biortech.2010.06.055. Epub 2010 Jul 6.

Abstract

Agaricus arvensis, a newly isolated basidiomycetous fungus, was found to secrete efficient cellulases. The strain produced the highest endoglucanase (EG), cellobiohydrolase (CBH) and beta-glucosidase (BGL) activities of 0.3, 3.2 and 8U/mg-protein, respectively, with rice straw as the carbon source. Saccharification of the woody biomass with A. arvensis cellulase as the enzyme source released a high level of fermentable sugars. Enzymatic hydrolysis of the poplar biomass was optimized using the response surface methodology in order to study the influence of the variables (pH, temperature, cellulases concentration and substrate concentration). The enzyme and substrate concentrations were identified as the limiting factors for the saccharification of poplar wood biomass. A total reducing sugar level of 29g/L (293mg/g-substrate) was obtained at an enzyme concentration of 65FPU/g-substrate after optimization of the hydrolysis parameters. The model validation showed a good agreement between the experimental results and the predicted responses. A. arvensis could be a good candidate for the production of reducing sugars from a cellulosic biomass.

摘要

阿魏侧耳,一种新分离的担子菌真菌,被发现能分泌高效的纤维素酶。该菌株以稻草为碳源时,分别产生最高的内切葡聚糖酶(EG)、纤维二糖水解酶(CBH)和β-葡萄糖苷酶(BGL)活性,为 0.3、3.2 和 8U/mg 蛋白。阿魏侧耳纤维素酶作为酶源对木质生物质进行糖化,可释放出高水平的可发酵糖。为了研究变量(pH 值、温度、纤维素酶浓度和底物浓度)的影响,采用响应面法对杨树生物质的酶解进行了优化。结果表明,酶和底物浓度是木质生物质糖化的限制因素。在优化水解参数后,当酶浓度为 65FPU/g 底物时,可获得 29g/L 的总还原糖(293mg/g 底物)。模型验证表明,实验结果与预测响应之间具有良好的一致性。阿魏侧耳可能是从纤维素生物质生产还原糖的良好候选菌株。

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