Optimization of Cellulase Production by Aspergillus niger InaCC F506 in Solid-State Fermentation of Tofu Dreg

Talisia Kresna Shih, A. L. Aminin, N. Mulyani
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Abstract

Indonesia has a growing demand for cellulase enzymes; however, 99% of the enzymes are imported from other countries. Aspergillus niger is well recognized for using the widely accessible tofu by-product, often known as tofu dreg, as a growth medium for synthesizing cellulase enzymes. This study aims to optimize the production of cellulase enzymes by Aspergillus niger InaCC F506 using tofu dregs as a substrate through the Solid-State Fermentation (SSF) method by varying the additives. The results showed that the E fermentation system with the composition of urea 0.5%; CMC 0.5%; KH2PO4 0.2%; MgSO4.7H2O 0.2% produced the highest cellulase enzymes from the tofu dregs substrate. The highest cellulase enzyme activity was at a fraction of ammonium sulfate saturation level of 40-60%. The optimum condition of enzyme activity was observed at pH 5 with an activity of 33 x 10-4 Units/mg protein and at 30℃ with an activity of 31 x 10-4 Units/mg protein.
黑曲霉InaCC F506在豆腐渣固态发酵中产纤维素酶的优化
印度尼西亚对纤维素酶的需求不断增长;然而,99%的酶是从其他国家进口的。黑曲霉是公认的广泛使用豆腐副产品,通常被称为豆腐渣,作为合成纤维素酶的生长培养基。本研究旨在通过改变添加剂,以豆渣为底物,通过固态发酵(SSF)法优化黑曲霉InaCC F506生产纤维素酶。结果表明,E发酵体系中尿素的组成为0.5%;CMC 0.5%;KH2PO4 0.2%;从豆渣底物中,MgSO4.7H2O 0.2%产生的纤维素酶最高。纤维素酶活性在硫酸铵饱和水平40 ~ 60%时最高。在pH为5时,酶活性为33 × 10-4 Units/mg蛋白;在30℃时,酶活性为31 × 10-4 Units/mg蛋白。
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17 weeks
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