Optimization of the Medium for the Production of Cellulase by the Mutant Trichoderma reesei WX-112 Using Response Surface Methodology

The mutant strain Trichoderma reesei WX-112 with high cellulase activity was isolated by a newly invented plate. The mutant’s ability to produce cellulase increased 1.95 times after the treatment with UV and N-methyl-N’-nitro-N-nitrosoguanidine (MNNG). Also, the medium composition was optimized usin...

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Main Authors: Xue-Cai Hao, Zhong-Li Yan, Xiao-Bin Yu
Format: Article
Language:English
Published: University of Zagreb 2006-01-01
Series:Food Technology and Biotechnology
Subjects:
Online Access:http://hrcak.srce.hr/file/161745
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spelling doaj-4c4bd205f42549198dea6a287cc07cf62020-11-25T01:41:01ZengUniversity of ZagrebFood Technology and Biotechnology1330-98621334-26062006-01-014418994Optimization of the Medium for the Production of Cellulase by the Mutant Trichoderma reesei WX-112 Using Response Surface MethodologyXue-Cai Hao0Zhong-Li Yan1Xiao-Bin Yu2The Key Laboratory of Industrial Biotechnology, Ministry of Education, Southern Yangtze University,College of Food Science and Bioenginering, Tianjin University of Science and Technology,The Key Laboratory of Industrial Biotechnology, Ministry of Education, Southern Yangtze University,The mutant strain Trichoderma reesei WX-112 with high cellulase activity was isolated by a newly invented plate. The mutant’s ability to produce cellulase increased 1.95 times after the treatment with UV and N-methyl-N’-nitro-N-nitrosoguanidine (MNNG). Also, the medium composition was optimized using response surface methodology (RSM). A fractional factorial design (26–2) was applied to elucidate the medium components that significantly affect cellulase production. The concentration of Avicel and soybean cake flour in the medium were significant factors. The steepest ascent method was used to locate the optimal domain and a central composite design was used to estimate the quadratic response surface from which the factor levels for maximum production of cellulase were determined. The composition of fermentation medium optimized with response surface methodology was (in g/L): wheat bran 30, Avicel 36.4, soybean cake flour 24.7, KH2PO4 4 and corn steep flour 5. Compared to the original medium, the cellulase activity increased from 7.2 to 10.6 IU/mL.http://hrcak.srce.hr/file/161745cellulaseTrichoderma reesei WX-112optimizationfractional factorial design (FFD)central composition design (CCD)response surface methodology (RSM)
collection DOAJ
language English
format Article
sources DOAJ
author Xue-Cai Hao
Zhong-Li Yan
Xiao-Bin Yu
spellingShingle Xue-Cai Hao
Zhong-Li Yan
Xiao-Bin Yu
Optimization of the Medium for the Production of Cellulase by the Mutant Trichoderma reesei WX-112 Using Response Surface Methodology
Food Technology and Biotechnology
cellulase
Trichoderma reesei WX-112
optimization
fractional factorial design (FFD)
central composition design (CCD)
response surface methodology (RSM)
author_facet Xue-Cai Hao
Zhong-Li Yan
Xiao-Bin Yu
author_sort Xue-Cai Hao
title Optimization of the Medium for the Production of Cellulase by the Mutant Trichoderma reesei WX-112 Using Response Surface Methodology
title_short Optimization of the Medium for the Production of Cellulase by the Mutant Trichoderma reesei WX-112 Using Response Surface Methodology
title_full Optimization of the Medium for the Production of Cellulase by the Mutant Trichoderma reesei WX-112 Using Response Surface Methodology
title_fullStr Optimization of the Medium for the Production of Cellulase by the Mutant Trichoderma reesei WX-112 Using Response Surface Methodology
title_full_unstemmed Optimization of the Medium for the Production of Cellulase by the Mutant Trichoderma reesei WX-112 Using Response Surface Methodology
title_sort optimization of the medium for the production of cellulase by the mutant trichoderma reesei wx-112 using response surface methodology
publisher University of Zagreb
series Food Technology and Biotechnology
issn 1330-9862
1334-2606
publishDate 2006-01-01
description The mutant strain Trichoderma reesei WX-112 with high cellulase activity was isolated by a newly invented plate. The mutant’s ability to produce cellulase increased 1.95 times after the treatment with UV and N-methyl-N’-nitro-N-nitrosoguanidine (MNNG). Also, the medium composition was optimized using response surface methodology (RSM). A fractional factorial design (26–2) was applied to elucidate the medium components that significantly affect cellulase production. The concentration of Avicel and soybean cake flour in the medium were significant factors. The steepest ascent method was used to locate the optimal domain and a central composite design was used to estimate the quadratic response surface from which the factor levels for maximum production of cellulase were determined. The composition of fermentation medium optimized with response surface methodology was (in g/L): wheat bran 30, Avicel 36.4, soybean cake flour 24.7, KH2PO4 4 and corn steep flour 5. Compared to the original medium, the cellulase activity increased from 7.2 to 10.6 IU/mL.
topic cellulase
Trichoderma reesei WX-112
optimization
fractional factorial design (FFD)
central composition design (CCD)
response surface methodology (RSM)
url http://hrcak.srce.hr/file/161745
work_keys_str_mv AT xuecaihao optimizationofthemediumfortheproductionofcellulasebythemutanttrichodermareeseiwx112usingresponsesurfacemethodology
AT zhongliyan optimizationofthemediumfortheproductionofcellulasebythemutanttrichodermareeseiwx112usingresponsesurfacemethodology
AT xiaobinyu optimizationofthemediumfortheproductionofcellulasebythemutanttrichodermareeseiwx112usingresponsesurfacemethodology
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