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首页> 外文期刊>Biotechnology Letters >Statistical optimization of a cellulase from Aspergillus glaucus CCHA for hydrolyzing corn and rice straw by RSM to enhance yield of reducing sugar
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Statistical optimization of a cellulase from Aspergillus glaucus CCHA for hydrolyzing corn and rice straw by RSM to enhance yield of reducing sugar

机译:从RSM通过RSM水解玉米秸秆的曲霉菌纤维素酶的统计优化,以提高还原糖的产量

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Objective The unique GH5 cellulase, AgCMCase, from Aspergillus glaucus CCHA was identified and characterized as having high cellulose and straw hydrolysis activities that were thermostable, pH stable and salt-tolerant. Therefore, it is a potential straw-degradation enzyme that can release reducing sugars in industrial applications. To increase the efficiency of the AgCMCase' hydrolysis of straw to release simple sugars, response surface methodology (RSM) was introduced to optimize hydrolysis parameters such as pH, temperature, reaction time and enzyme dose. Results The enzyme showed only one major protein band from the fermentation broth by the Pichia pastoris GS115 expression. The crude enzyme (without purification) showed a satisfactory capability to hydrolyze CMC-Na after 4 days of production. Here, the crude AgCMCase also showed cellulose and straw hydrolysis capabilities as assessed by scanning electron microscopic and Fourier-transform infrared spectroscopic analyses. A high-performance liquid chromatographic analysis demonstrated that the degradation of corn and rice straw by crude AgCMCase mainly produced glucose and cellobiose. Temperature, reaction time and enzyme dose were the significant variables affecting corn and rice straw degradation. After the optimization of RSM, a model was proposed to predict 1.48% reducing sugar yield with the optimum temperature (51.45 degrees C) and reaction time (3.84 h) from the straw degradation. The reaction of crude AgCMCase and rice straw in the optimized condition resulted in reducing sugar production of 1.61% that agrees the prediction. Conclusion Our findings suggest that the crude AgCMCase is suitable to be used in straw conversion.
机译:目的,鉴定来自Aspergillus glaucus CCHA的独特GH5纤维素酶Agcmcase,并表征具有高纤维素和秸秆水解活性,其是热稳定的,pH稳定和耐盐剂。因此,它是一种潜在的秸秆降解酶,可在工业应用中释放还原糖。为了提高Agcmcase的秸秆水解的效率以释放简单的糖,引入了响应表面方法(RSM)以优化水解参数,例如pH,温度,反应时间和酶剂量。结果酶仅通过Pichia Pastoris GS115表达显示来自发酵液的一个主要蛋白质带。粗酶(无纯化)显示出在生产4天后水解CMC-Na的令人满意的能力。这里,粗药物CASCE还显示纤维素和秸秆水解能力,通过扫描电子显微镜和傅里叶变换红外光谱分析评估。高性能液相色谱分析证明,玉米和稻草的粗症的降解主要产生葡萄糖和纤维二糖。温度,反应时间和酶剂量是影响玉米和稻草降解的显着变量。在RSM的优化之后,提出了一种模型,以预测从秸秆降解的最佳温度(51.45℃)和反应时间(3.84小时)降低糖产量的1.48%。粗药物箱和稻草在优化条件下的反应导致减少糖的产量为1.61%,同意预测。结论我们的研究结果表明,粗症AGCMCASE适用于秸秆转换。

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