Environmental Friendly Deproteinization and Saccharification of Industrial Fungal Biomass by Enzymatic Processing

J. Fuentes, N. Balagurusamy, Carolina E. Vita, R. Hours, Cristóbal N. Aguilar, S. Cavalitto
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Abstract

Aspergillus niger biomass, an industrial by-product of citric acid fermentation is an emergent source of glycoderivatives with applications in biofuel, cosmetics, feed, energy, food, medicine, and nanotechnology. In this study, the effect of purified neutral protease for deprotenization of fungal biomass studied at various levels (0, 5, 10, 20 and 40 U/100 mg of biomass) and the saccharification of fungal biomass was evaluated with amylolytic enzymes and chitosanases. The efficiency of deproteinization of fungal biomass was based on the enzyme concentration and contact time. Protease at a concentration of 20 U/100 mg of dry biomass and with a contact time of 8 h achieved 30% final deproteinization. No effect on saccharification of A. niger biomass was observed by treatment with purified amylolytic enzymes. Meanwhile, the endo- and exo-chitosanases treatment yielded 54 g of g reducing sugars (equivalent to amino sugars)/ kg of fungal biomass, which can be employed for tailor-made carbohydrate production.
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工业真菌生物质的酶处理环境友好脱蛋白和糖化
黑曲霉生物质是柠檬酸发酵的工业副产物,是糖衍生物的新兴来源,应用于生物燃料、化妆品、饲料、能源、食品、医药和纳米技术。在本研究中,研究了纯化的中性蛋白酶在不同水平(0、5、10、20和40 U/100 mg生物量)下对真菌生物质去蛋白酶化的影响,并利用淀粉酶和壳聚糖酶对真菌生物质的糖化进行了评价。真菌生物量的脱蛋白效率与酶的浓度和接触时间有关。蛋白酶在20 U/100 mg干生物质浓度下,接触时间为8 h,最终脱蛋白率达到30%。纯化的淀粉酶处理对黑曲霉生物量的糖化没有影响。同时,内壳聚糖酶和外壳聚糖酶处理每千克真菌生物量产生54克g还原糖(相当于氨基糖),可用于定制碳水化合物生产。
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