Design of an enzyme cocktail consisting of different fungal platforms for efficient hydrolysis of sugarcane bagasse: Optimization and synergism studies

被引:28
|
作者
Arias, Johanna Mendez [1 ]
Amarante Modesto, Luiz Felipe [1 ]
Polikarpov, Igor [2 ]
Pereira, Nei, Jr. [1 ]
机构
[1] Univ Fed Rio de Janeiro, Dept Engn Bioquim, Labs Desenvolvimento Bioproc, Escola Quim, BR-21949900 Rio De Janeiro, Brazil
[2] Univ Sao Paulo, Inst Fis Sao Carlos, Dept Fis & Ciencia Interdisciplinar, Sao Paulo, Brazil
关键词
cellulase; synergism; enzymatic hydrolysis; enzymatic cocktails; experimental mixture design; ETHANOL-PRODUCTION; LIGNOCELLULOSIC BIOMASS; PRETREATMENT; CELLULOSE; LIGNIN; ACID; SACCHARIFICATION; DELIGNIFICATION; HEMICELLULASES; CELLULASES;
D O I
10.1002/btpr.2306
中图分类号
Q81 [生物工程学(生物技术)]; Q93 [微生物学];
学科分类号
071005 ; 0836 ; 090102 ; 100705 ;
摘要
Lignocellulosic materials represent a very important and promising source of renewable biomass. In order to turn them into fermentable sugars, synergism among the different enzymes that carry out bioconversion of these materials is one of the main factors that should be considered. Experimental mixture design was performed to optimize the proportion of enzymes produced by native strains of Trichoderma harzianum IOC 3844, Penicillium funiculosum ATCC 11797, and Aspergillus niger ATCC 1004, resulting in a proportion of 15, 50, and 35%, respectively. This mixture was able to hydrolyze 25 g/L of pretreated sugarcane bagasse with 91% of yield after 48 h of enzymatic reaction. Synergism along the hydrolysis process, besides the influence of lignin, hemicellulose, and solids loading, were also studied. Response surface methodology (RSM) based on Central Composite Rotatable Design was used to optimize solids and protein loadings to increase glucose release and enzymatic hydrolysis yield. The optimum solid and protein loadings established with RSM were 196 g/L and 24 mg/g cellulose, respectively, and under these conditions (94.1 +/- 8) g/L of glucose were obtained, corresponding to a hydrolysis yield of 64%. (c) 2016 American Institute of Chemical Engineers Biotechnol. Prog., 32:1222-1229, 2016
引用
收藏
页码:1222 / 1229
页数:8
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