Xylanase production in solid state fermentation by Aspergillus niger mutant using statistical experimental designs

被引:0
|
作者
Y. Park
S. Kang
J. Lee
S. Hong
S. Kim
机构
[1] Graduate School of Biotechnology,
[2] Korea University,undefined
[3] 1,undefined
[4] Anam-dong,undefined
[5] Sungbuk-ku,undefined
[6] Seoul,undefined
[7] 136–701,undefined
[8] Korea,undefined
[9] Korea Institute of Energy Research,undefined
[10] P.O. Box 103,undefined
[11] Yusong,undefined
[12] Taejon,undefined
[13] 305–600,undefined
[14] Korea,undefined
[15] Department of Chemical and Biological Engineering,undefined
[16] Korea University,undefined
[17] 1,undefined
[18] Anam-dong,undefined
[19] Sungbuk-ku,undefined
[20] Seoul,undefined
[21] 136–701,undefined
[22] Korea,undefined
来源
Applied Microbiology and Biotechnology | 2002年 / 58卷
关键词
Fermentation; Corn; Solid State; Straw; Aspergillus;
D O I
暂无
中图分类号
学科分类号
摘要
The initial moisture content, cultivation time, inoculum size and concentration of basal medium were optimized in solid state fermentation (SSF) for the production of xylanase by an Aspergillusniger mutant using statistical experimental designs. The cultivation time and concentration of basal medium were the most important factors affecting xylanase activity. An inoculum size of 5×105 spores/g, initial moisture content of 65%, cultivation time of 5 days and 10 times concentration of basal medium containing 50 times concentration of corn steep liquor were optimum for xylanase production in SSF. Under the optimized conditions, the activity and productivity of xylanase obtained after 5 days of fermentation were 5,071 IU/g of rice straw and 14,790 IU l–1 h–1, respectively. The xylanase activity predicted by a polynomial model was 5,484 IU/g of rice straw.
引用
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页码:761 / 766
页数:5
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