前往化源商城

Bioresource Technology 2015-02-01

Enhancing of sugar cane bagasse hydrolysis by Annulohypoxylon stygium glycohydrolases.

Diogo Robl, Patrícia dos Santos Costa, Fernanda Büchli, Deise Juliana da Silva Lima, Priscila da Silva Delabona, Fabio Marcio Squina, Ida Chapaval Pimentel, Gabriel Padilla, José Geraldo da Cruz Pradella

文献索引:Bioresour. Technol. 177 , 247-54, (2014)

全文:HTML全文

摘要

The aim of this study was to develop a bioprocess for the production of β-glucosidase and pectinase from the fungus Annulohypoxylon stygium DR47. Media optimization and bioreactor cultivation using citrus bagasse and soybean bran were explored and revealed a maximum production of 6.26 U/mL of pectinase at pH 4.0 and 10.13 U/mL of β-glucosidase at pH 5.0. In addition, the enzymes extracts were able to replace partially Celluclast 1.5L in sugar cane bagasse hydrolysis. Proteomic analysis from A. stygium cultures revealed accessory enzymes, mainly belong to the families GH3 and GH54, that would support enhancement of commercial cocktail saccharification yields. This is the first report describing bioreactor optimization for enzyme production from A. stygium with a view for more efficient degradation of sugar cane bagasse.Copyright © 2014 Elsevier Ltd. All rights reserved.

相关化合物

结构式 名称/CAS号 全部文献
甲酸 结构式 甲酸
CAS:64-18-6
蔗糖 结构式 蔗糖
CAS:57-50-1
对硝基苯酚 结构式 对硝基苯酚
CAS:100-02-7
D-木糖 结构式 D-木糖
CAS:58-86-6
3,5-二硝基水杨酸 结构式 3,5-二硝基水杨酸
CAS:609-99-4