首页> 外文期刊>International Journal of Molecular Sciences >Optimization of β-Glucosidase, β-Xylosidase and Xylanase Production by Colletotrichum graminicola under Solid-State Fermentation and Application in Raw Sugarcane Trash Saccharification
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Optimization of β-Glucosidase, β-Xylosidase and Xylanase Production by Colletotrichum graminicola under Solid-State Fermentation and Application in Raw Sugarcane Trash Saccharification

机译:固态发酵炭疽菌发酵生产β-葡萄糖苷酶,β-木糖苷酶和木聚糖酶的工艺优化及其在甘蔗原糖蔗糖化中的应用

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Efficient, low-cost enzymatic hydrolysis of lignocellulosic residues is essential for cost-effective production of bioethanol. The production of β-glucosidase, β-xylosidase and xylanase by Colletotrichum graminicola was optimized using Response Surface Methodology (RSM). Maximal production occurred in wheat bran. Sugarcane trash, peanut hulls and corncob enhanced β-glucosidase, β-xylosidase and xylanase production, respectively. Maximal levels after optimization reached 159.3 ± 12.7 U g−1, 128.1 ± 6.4 U g−1 and 378.1 ± 23.3 U g−1, respectively, but the enzymes were produced simultaneously at good levels under culture conditions optimized for each one of them. Optima of pH and temperature were 5.0 and 65 °C for the three enzymes, which maintained full activity for 72 h at 50 °C and for 120 min at 60 °C (β-glucosidase) or 65 °C (β-xylosidase and xylanase). Mixed with Trichoderma reesei cellulases, C. graminicola crude extract hydrolyzed raw sugarcane trash with glucose yield of 33.1% after 48 h, demonstrating good potential to compose efficient cocktails for lignocellulosic materials hydrolysis.
机译:木质纤维素残留物的高效,低成本酶解对于经济高效地生产生物乙醇至关重要。使用响应表面方法(RSM)优化了禾本科炭疽菌对β-葡萄糖苷酶,β-木糖苷酶和木聚糖酶的生产。麦麸产量最高。甘蔗垃圾,花生壳和玉米芯分别提高了β-葡萄糖苷酶,β-木糖苷酶和木聚糖酶的产量。优化后的最大水平达到159.3±12.7 U g -1 ,128.1±6.4 U g -1 和378.1±23.3 U g -1 ,分别酶,但在为每种酶优化的培养条件下,酶同时以良好的水平产生。这三种酶的最适pH和温度分别为5.0和65°C,它们在50°C时可保持72小时的全活性,在60°C(β-葡糖苷酶)或65°C(β-木糖苷酶和木聚糖酶)下可保持120分钟的全活性。 )。混合了里氏木霉纤维素酶的克雷米纳德里亚粗提物粗提物水解了原始的甘蔗废料,48小时后的葡萄糖收率为33.1%,这显示出构成用于木质纤维素材料水解的有效混合物的良好潜力。

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