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Biosci Biotechnol Biochem ; 81(7): 1289-1299, 2017 Jul.
Article in English | MEDLINE | ID: mdl-28489493

ABSTRACT

Schizophyllum commune is a basidiomycete equipped with an efficient cellulolytic enzyme system capable of growth on decaying woods. In this study, production of lignocellulose-degrading enzymes from S. commune mutant G-135 (SC-Cel) on various cellulosic substrates was examined. The highest cellulase activities including CMCase, FPase, and ß-glucosidase were obtained on Avicel-PH101 while a wider range of enzymes attacking non-cellulosic polysaccharides and lignin were found when grown on alkaline-pretreated biomass. Proteomic analysis of SC-Cel also revealed a complex enzyme system comprising seven glycosyl hydrolase families with an accessory carbohydrate esterase, polysaccharide lyase, and auxiliary redox enzymes. SC-Cel obtained on Avicel-PH101 effectively hydrolyzed all agricultural residues with the maximum glucan conversion of 98.0% using corn cobs with an enzyme dosage of 5 FPU/g-biomass. The work showed potential of SC-Cel on hydrolysis of various herbaceous biomass with enhanced efficiency by addition external ß-xylosidase.


Subject(s)
Cellulases/chemistry , Cellulose/chemistry , Fungal Proteins/chemistry , Lignin/chemistry , Proteome/metabolism , Schizophyllum/chemistry , Biomass , Cellulases/isolation & purification , Cellulose/metabolism , Fermentation , Fungal Proteins/isolation & purification , Gene Expression , Hydrolysis , Isoenzymes/chemistry , Isoenzymes/isolation & purification , Lignin/metabolism , Mutation , Oryza/chemistry , Proteome/genetics , Saccharum/chemistry , Schizophyllum/enzymology , Schizophyllum/genetics , Waste Products , Wood/chemistry , Xylosidases/chemistry , Zea mays/chemistry
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