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首页> 外文期刊>Electronic Journal of Biotechnology >Production of β-glucosidase on solid-state fermentation by Lichtheimia ramosa in agroindustrial residues: characterization and catalytic properties of the enzymatic extract
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Production of β-glucosidase on solid-state fermentation by Lichtheimia ramosa in agroindustrial residues: characterization and catalytic properties of the enzymatic extract

机译:农杆菌残基中固态利莫氏酵母固态发酵生产β-葡萄糖苷酶的特性:酶提取物的表征和催化性能

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Background: β-glucosidases catalyze the hydrolysis of cellobiose and cellodextrins, releasing glucose as the main product. This enzyme is used in the food, pharmaceutical, and biofuel industries. The aim of this work is to improve the β-glucosidase production by the fungus Lichtheimia ramosa by solid-state fermentation (SSF) using various agroindustrial residues and to evaluate the catalytic properties of this enzyme. Results: A high production of β-glucosidase, about 274 U/g of dry substrate (or 27.4 U/mL), was obtained by cultivating the fungus on wheat bran with 65% of initial substrate moisture, at 96 h of incubation at 35oC. The enzymatic extract also exhibited carboxymethylcellulase (CMCase), xylanase, and β-xylosidase activities. The optimal activity of β-glucosidase was observed at pH 5.5 and 65oC and was stable over a pH range of 3.5 - 10.5. The enzyme maintained its activity (about 98% residual activity) after 1 h at 55oC. The enzyme was subject to reversible competitive inhibition with glucose and showed high catalytic activity in solutions containing up to 10% of ethanol. Conclusions: β-glucosidase characteristics associated with its ability to hydrolyze cellobiose, underscore the utility of this enzyme in diverse industrial processes.
机译:背景:β-葡萄糖苷酶催化纤维二糖和纤维糊精的水解,释放出葡萄糖作为主要产物。该酶用于食品,制药和生物燃料行业。这项工作的目的是通过使用各种农用工业残基的固态发酵(SSF)来改善红毛木霉(Lichtheimia ramosa)真菌产生的β-葡萄糖苷酶,并评估该酶的催化性能。结果:在35oC孵育96 h的条件下,将真菌在麦麸上以65%的初始底物水分进行培养,获得了高产量的β-葡萄糖苷酶(约274 U / g干燥底物)(或27.4 U / mL)。 。酶提取物还表现出羧甲基纤维素酶(CMCase),木聚糖酶和β-木糖苷酶活性。在pH 5.5和65°C时观察到了β-葡萄糖苷酶的最佳活性,并且在3.5-10.5的pH范围内稳定。该酶在55oC下保持1小时后仍保持其活性(约98%的残留活性)。该酶受到葡萄糖的可逆竞争性抑制,在含有最多10%乙醇的溶液中显示出高催化活性。结论:β-葡萄糖苷酶的特性与其水解纤维二糖的能力有关,突显了该酶在各种工业过程中的实用性。

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