Integrated delignification and simultaneous saccharification and fermentation of hard wood by a white-rot fungus, Phlebia sp MG-60

被引:62
作者
Kamei, Ichiro [1 ]
Hirota, Yoshiyuki [1 ]
Meguro, Sadatoshi [1 ]
机构
[1] Miyazaki Univ, Dept Forest & Environm Sci, Fac Agr, Miyazaki 8892192, Japan
关键词
White-rot fungi; Bioethanol; Simultaneous saccharification and fermentation; Fungal fermentation; PHANEROCHAETE-CHRYSOSPORIUM; MANGANESE PEROXIDASE; PRETREATMENT; ETHANOL; STRAW;
D O I
10.1016/j.biortech.2012.09.007
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
We propose a new process of unified aerobic delignification and anaerobic saccharification and fermentation of wood by a single microorganism, the white-rot fungus Phlebia sp. MG-60. This fungus is able to selectively degrade lignin under aerobic solid state fermentation conditions, and to produce ethanol directly from delignified oak wood under semi-aerobic liquid culture conditions. After 56 d aerobic incubation, 40.7% of initial lignin and negligible glucan were degraded. Then under semi-aerobic conditions without the addition of cellulase, 43.9% of theoretical maximum ethanol was produced after 20 d. Changing from aerobic conditions (biological delignification pretreatment) to semi-aerobic conditions (saccharification and fermentation) enabled the fermentation of wood by solely biological processes. This is the first report of ethanol production from woody biomass using a single microorganism without addition of chemicals or enzymes. (C) 2012 Elsevier Ltd. All rights reserved.
引用
收藏
页码:137 / 141
页数:5
相关论文
共 23 条
[1]   Pretreatment of Japanese cedar wood by white rot fungi and ethanolysis for bioethanol production [J].
Baba, Yasunori ;
Tanabe, Toshiaki ;
Shirai, Nobuaki ;
Watanabe, Takahito ;
Honda, Yoichi ;
Watanabe, Takashi .
BIOMASS & BIOENERGY, 2011, 35 (01) :320-324
[2]   Fungal Pretreatment of Lignocellulose by Phanerochaete chrysosporium to Produce Ethanol From Rice Straw [J].
Bak, Jin Seop ;
Ko, Ja Kyong ;
Choi, In-Geol ;
Park, Yong-Cheol ;
Seo, Jin-Ho ;
Kim, Kyoung Heon .
BIOTECHNOLOGY AND BIOENGINEERING, 2009, 104 (03) :471-482
[3]  
Isroi, 2011, BIORESOURCES, V6, P5224
[4]   Bioorganosolve pretreatments for simultaneous saccharification and fermentation of beech wood by ethanolysis and white rot fungi [J].
Itoh, H ;
Wada, M ;
Honda, Y ;
Kuwahara, M ;
Watanabe, T .
JOURNAL OF BIOTECHNOLOGY, 2003, 103 (03) :273-280
[5]   Saline-dependent regulation of manganese peroxidase genes in the hypersaline-tolerant white rot fungus Phlebia sp strain MG-60 [J].
Kamei, Ichiro ;
Daikoku, Chieko ;
Tsutsumi, Yuji ;
Kondo, Ryuichiro .
APPLIED AND ENVIRONMENTAL MICROBIOLOGY, 2008, 74 (09) :2709-2716
[6]   Direct ethanol production from cellulosic materials by the hypersaline-tolerant white-rot fungus Phlebia sp MG-60 [J].
Kamei, Ichiro ;
Hirota, Yoshiyuki ;
Mori, Toshio ;
Hirai, Hirofumi ;
Meguro, Sadatoshi ;
Kondo, Ryuichiro .
BIORESOURCE TECHNOLOGY, 2012, 112 :137-142
[7]  
Kirk T.K., 1982, DECOM POSER BASIDIOM, P67
[8]   Studies on hypersaline-tolerant white-rot fungi I: screening of lignin-degrading fungi in hypersaline conditions [J].
Li, X ;
Kondo, R ;
Sakai, K .
JOURNAL OF WOOD SCIENCE, 2002, 48 (02) :147-152
[9]   Biodegradation of sugarcane bagasse with marine fungus Phlebia sp MG-60 [J].
Li, X ;
Kondo, R ;
Sakai, K .
JOURNAL OF WOOD SCIENCE, 2002, 48 (02) :159-162
[10]   Lignin-modifying enzymes in filamentous basidiomycetes - ecological, functional and phylogenetic review [J].
Lundell, Taina K. ;
Makela, Miia R. ;
Hilden, Kristiina .
JOURNAL OF BASIC MICROBIOLOGY, 2010, 50 (01) :5-20