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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Cellulase production by Aspergillus japonicus URM5620 using waste from castor bean (Ricinus communis L.) under solid-state fermentation
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Cellulase production by Aspergillus japonicus URM5620 using waste from castor bean (Ricinus communis L.) under solid-state fermentation

机译:在固态发酵条件下,使用蓖麻籽(Ricinus communis L.)的废料,由日本曲霉URM5620生产纤维素酶

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摘要

The activity of β-glucosidase (βG), total cellulase (FPase) and endoglucanase (CMCase), produced by Aspergillus japonicus URM5620, was studied on solid-state fermentation using castor bean meal as substrate. The effect of the substrate amount, initial moisture, pH, and temperature on cellulase production was studied using a full factorial design (2 ~4). The maximum βG, FPase, and CMCase activity was 88.3, 953.4, and 191.6 U/g dry substrate, respectively. The best enzyme activities for all three enzymes were obtained at the same conditions with 5.0 g of substrate, initial moisture 15% at 25 °C and pH 6.0 with 120 h of fermentation. The optimum activity for FPase and CMCase was found at pH 3.0 at an optimum temperature of 50 °C for FPase and of 55 °C for CMCase. The cellulases were stable in the range of pH 3.0-10.0 at 50 °C temperature. The enzyme production optimization demonstrated clearly the impact of the process parameters on the yield of the cellulolytic enzymes.
机译:以蓖麻子粉为底物,对日本曲霉URM5620产生的β-葡萄糖苷酶(βG),总纤维素酶(FPase)和内切葡聚糖酶(CMCase)的活性进行了研究。使用全因子设计(2〜4)研究了底物量,初始水分,pH和温度对纤维素酶生产的影响。最大βG,FPase和CMCase活性分别为干底物88.3、953.4和191.6 U / g。在相同条件下,使用5.0 g底物,在25°C下初始水分为15%,在pH 120下发酵120 h,在相同条件下获得了所有三种酶的最佳酶活性。 FPase和CMCase的最佳活性是在pH值为3.0的最佳温度下(对于FPase为50°C,对于CMCase为55°C)得到的。纤维素酶在50°C温度下在pH 3.0-10.0范围内稳定。酶的生产优化清楚地表明了工艺参数对纤维素分解酶产量的影响。

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