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The use of plant cell wall-degrading enzymes from newly isolated Penicillium ochrochloron Biourge for viscosity reduction in ethanol production with fresh sweet potato tubers as feedstock

机译:利用新分离的草青霉Biourge中的植物细胞壁降解酶,以新鲜的甘薯块茎为原料,降低乙醇生产中的粘度

摘要

Penicillium ochrochloron Biourge, which was isolated from rotten sweet potato, can produce plant cell wall-degrading enzymes (PCWDEs) with high viscosity reducing capability for ethanol production using fresh sweet potato tubers as feedstock. The enzyme preparation was characterized by a broad enzyme spectrum including 13 kinds of enzymes with the activity to hydrolyze cellulose, hemicellulose, pectin, starch, and protein. The maximum viscosity-reducing capability was observed when the enzyme preparation was obtained after 5 days of fermentation using 20 g/L corncob as a sole carbon source, 4.5 g/L NH4NO3 as a sole nitrogen source, and an initial medium pH of 6.5. The sweet potato mash treated with the enzyme preparation exhibited much higher fermentation efficiency (92.58%) compared with commercial cellulase (88.06%) and control (83.5%). The enzyme production was then scaled up to 0.5, 5, and 100 L, and the viscosity-reducing rates were found to be 85%, 90%, and 91%, respectively. Thus, P. ochrochloron Biourge displays potential viscosity-reducing capability for ethanol production. (C) 2013 International Union of Biochemistry and Molecular Biology, Inc. Volume 61, Number 4, Pages 480-491, 2014
机译:从腐烂的甘薯中分离出的草青霉Biourge可以产生具有高粘度降低能力的植物细胞壁降解酶(PCWDE),以新鲜甘薯块茎为原料生产乙醇。该酶制剂具有广泛的酶谱特征,包括13种酶,具有水解纤维素,半纤维素,果胶,淀粉和蛋白质的活性。当使用20 g / L玉米芯作为唯一碳源,4.5 g / L NH4NO3作为唯一氮源,初始培养基pH为6.5发酵5天后获得酶制剂时,观察到最大的降粘能力。与商业纤维素酶(88.06%)和对照(83.5%)相比,用酶制剂处理的甘薯具有更高的发酵效率(92.58%)。然后将酶的生产规模扩大到0.5、5和100 L,并且发现降低粘度的速率分别为85%,90%和91%。因此,P。ochrochloron Biourge显示出潜在的降低乙醇生产的粘度的能力。 (C)2013年国际生物化学与分子生物学联盟,第61卷,第4号,第480-491页,2014年

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