Biobleaching of flax fibers by degradation of lignin with Phanerochaete chrysosporium and Trichosporon cutaneum R57

被引:3
作者
University of Chemical Technology and Metallurgy, 8 Kl. Ohridski, 1756 Sofia, Bulgaria [1 ]
机构
[1] University of Chemical Technology and Metallurgy, 1756 Sofia
来源
J. Nat. Fibres | 2008年 / 4卷 / 31-40期
关键词
Ligninolytic enzymes; Ph chrysosporium; Tr cutaneum R57;
D O I
10.1080/15440470801893372
中图分类号
学科分类号
摘要
The possible applications of lignin degrading enzymes obtained through the cultivation of a Trichosporon cutaneum R57 strain and white rot fungus Phanerochaete chrysosporium in flax fiber treatment was studied. The lightness of enzymatically processed fibers is significantly improved while the quantity of nondegraded lignin is lower. It has been found out that the hydrogen peroxide additionally applied to the enzymatic treatment strongly influences these effects. © 2007 by The Haworth Press, Inc. All rights reserved.
引用
收藏
页码:31 / 40
页数:9
相关论文
共 10 条
[1]  
Bonnarme P., Jeffries T., Mn(II) regulation of lignin peroxidases and manganese-dependent peroxidases from lignin-degrading white rot fungi, Appl and Environ Microbiol., 56, pp. 210-217, (1990)
[2]  
Coll P., Fernandez-Abalos J., Villanueva J., Santamaria R., Perez P., Purification and characterization of a Phenoloxidase (Laccase) from the lignin-degrading basidiomycete PM1 (CECT 2971), Appl and Environ Microbiol., 59, pp. 2607-2613, (1993)
[3]  
Heinzkill M., Bech L., Halkier T., Schneider P., Anke T., Characterization of laccases and peroxidases from wood-rotting Fungi (Family Coprinaceae), Appl Environ Microbiol., 64, pp. 1601-1606, (1998)
[4]  
Mester T., Field J., Characterization of a novel manganese peroxidase-lignin peroxidase hybrid isozyme produced by Bjerkandera species strain BOS55 in the absence of manganese, J Biol Chem., 273, pp. 15412-15417, (1998)
[5]  
Slavikova E., Kosikova B., Mikulasova M., Biotransformation of waste lignin products by the soil-inhabiting yeast Trichosporon pullulans, Can J Microbiol., 48, pp. 200-203, (2002)
[6]  
Niku-Paavola M.L., Tamminen T., Hortling B., Viikari L., Poppius-Levlin K., Reactivity of high and low molar mass lignin in the laccase catalysed oxidation, Biotechnology in the Pulp and Paper Industry, Progress in Biotechnology, pp. 121-130, (2002)
[7]  
Petit-Conil M., Semar S., Niku-Paavola M.L., Sigoillot J.C., Asther M., Anke H., Viikari L., Potential of laccases in softwood-hardwood high-yield pulping and bleaching, Biotechnology in the Pulp and Paper Industry, Progress in Biotechnology, 21, pp. 193-201, (2002)
[8]  
Katagiri N., Tsutsumi Y., Nishida T., Correlation of brightening with cumulative enzyme activity related to lignin biodegradation during biobleaching of kraft pulp by white rot fungi in the solid-state fermentation system, Appl and Environ Microbiol., 61, pp. 617-622, (1995)
[9]  
Ivanova N., Alexieva Z., Characteristics of biological peculiarities and content of amino acid in Tr.cutaneum R57, Bulg J of Agr Sci., 2, pp. 761-766, (1996)
[10]  
Linko S., Continuous production of lignin peroxidase by immobilized Phanerochaete chrysosporium in a pilot scale bioreactor, J of Bacteriol., 8, pp. 163-170, (1988)