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Enzyme Activities and Substrate Degradation by Fungal Isolates on Cassava Waste During Solid State Fermentation

机译:木薯废物固态发酵过程中真菌分离物对酶活性和底物的降解

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摘要

The growth and bioconversion potential of selected strains growing on cassava waste substrate during solid state fermentation were assessed. Rhizopus stolonifer showed the highest and the fastest utilization of starch and cellulose in the cassava waste substrate. It showed 70% starch utilization and 81% cellulose utilization within eight days. The release of reducing sugars indicating the substrate saccharification or degradation potential of the organisms reached the highest value of 406.5 mg/g by R. stolonifer on cassava waste during the eighth day of fermentation. The protein content was gradually increased (89.4 mg/g) on the eighth day of fermentation in cassava waste by R. stolonifer. The cellulase and amylase activity is higher in R. stolonifer than A. niger and P. chrysosporium. The molecular mass of purified amylase and cellulase seemed to be 75 KDal, 85 KDal respectively.
机译:评估了固态发酵过程中在木薯废物基质上生长的选定菌株的生长和生物转化潜力。木薯废料中,根茎腐殖质显示出最高和最快的淀粉和纤维素利用率。它在八天内显示了70%的淀粉利用率和81%的纤维素利用率。还原糖的释放表明生物的底物糖化或降解潜能,在发酵的第八天,斯托氏菌在木薯废物上达到了最高值406.5 mg / g。 stolonifer发酵木薯废料的第八天,蛋白质含量逐渐增加(89.4 mg / g)。 stolonifer中的纤维素酶和淀粉酶活性高于黑曲霉和金孢假单胞菌。纯化的淀粉酶和纤维素酶的分子量分别为75 KDal和85 KDal。

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