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Response of Cellulase Activity in pH-Controlled Cultures of the Filamentous Fungus Acremonium cellulolyticus

机译:pH控制的丝状真菌解球菌纤维素酶培养物中纤维素酶活性的响应

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摘要

Cellulase production was investigated in pH-controlled cultures of Acremonium cellulolyticus. The response to culture pH was investigated for three cellulolytic enzymes, carbomethyl cellulase (CMCase), avicelase, and β-glucosidase. Avicelase and β-glucosidase showed similar profiles, with maximum activity in cultures at pH 5.5–6. The CMCase activity was highest in a pH 4 culture. At an acidic pH, the ratios of CMCase and avicelase activity to cellulase activity defined by filter paper unit were high, but at a neutral pH, the β-glucosidase ratio was high. The pH 6.0 culture showed the highest cellulase activity within the range of pH 3.5–6.5 cultures. The saccharification activity from A. cellulolyticus was compared to those of the cellulolytic enzymes from other species. The A. cellulolyticus culture broth had a saccharification yield comparable to those of the Trichoderma enzymes GC220 and Cellulosin T2, under conditions with the same cellulase activity. The saccharification yields from Solka floc, Avicel, and waste paper, measured as the percent of released reducing sugar to dried substrate, were greater than 80% after 96 h of reaction. The yields were 16% from carboxymethylcellulose and 26% from wood chip refiner. Thus, the A. cellulolyticus enzymes were suitable for converting cellulolytic biomass to reducing sugars for biomass ethanol production. This study is a step toward the establishment of an efficient system to reutilize cellulolytic biomass.
机译:在pH控制的解孢菌纤维素培养物中研究了纤维素酶的产生。研究了三种纤维素分解酶,羧甲基纤维素酶(CMCase),avicelase和β-葡萄糖苷酶对培养pH的响应。 Avicelase和β-葡萄糖苷酶显示出相似的特征,在pH 5.5-6的培养物中具有最大的活性。在pH 4培养物中,CMCase活性最高。在酸性pH下,由滤纸单元确定的CMCase和avicelase活性与纤维素酶活性的比率高,但是在中性pH下,β-葡萄糖苷酶比率高。 pH 6.0培养物在pH 3.5-6.5培养物中显示出最高的纤维素酶活性。将来自纤维素分解曲霉的糖化活性与来自其他物种的纤维素分解酶的糖化活性进行了比较。在具有相同纤维素酶活性的条件下,溶纤维素曲霉培养液的糖化产率可与木霉属酶GC220和纤维素酶T2相比。反应96小时后,Solka絮状物,Avicel和废纸的糖化收率以还原糖向干燥底物中释放的百分比计,大于80%。羧甲基纤维素的产率为16%,木片精制机的产率为26%。因此,纤维素分解酶适于将纤维素分解生物质转化为还原糖以生产生物质乙醇。这项研究是朝着建立有效利用纤维素分解生物质的系统迈出的一步。

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