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Effect of Different Mutation Methods on Xylanase Production Ability by Aspergillus Niger

Received: 3 May 2016    Accepted:     Published: 4 May 2016
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Abstract

Based on the Aspergillus niger AS3.350, the mutants were brewed through inducing five treatments.The effect of different mutation methods on enzyme production ability of Xylanase was disscused and obtainedmutant strain of Xylanase production high ability. The results indicate that: the mutagenesis of UV irradiation and fast neutron irradiation was sensitive to increasing Xylanase activity. UV irradiation seted at 256 nm wavelength,the vertical distance was 20cm,exposure time was 90s, obtained mutant UV256-90 of the emzyme activity was 170.79U/ml,it was 2.18 times of the original strain.The rate 0.0025Gy / s of fast neutron irradiation and vertical distance 12cm,the optimal dose is 0.75Gy, screened out the mutant Fn5-2, the activity is 134.77U/ml,its 1.72 times of the original strain. Mutagenesis by diethyl sulfate, sodium nitrite, and nitrosoguanidine, enzyme activityof the optimal mutant strains were recently starting strain of 1.51 times, 1.46 times, and 1.38 times.Two physical mutagenic methods include ultraviolet mutagenesis and fast neutron irradiation were more sensitive on producing xylanase based on aspergillus Niger.

Published in Science Discovery (Volume 4, Issue 2)
DOI 10.11648/j.sd.20160402.13
Page(s) 70-74
Creative Commons

This is an Open Access article, distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution and reproduction in any medium or format, provided the original work is properly cited.

Copyright

Copyright © The Author(s), 2024. Published by Science Publishing Group

Keywords

Mutation, AspergillusNiger, Xylanase,EnzymeActivity

References
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Cite This Article
  • APA Style

    Zheng Lili, Sheng Zhanwu, Ai Binling, Zheng Xiaoyan, Jin Zhiqiang. (2016). Effect of Different Mutation Methods on Xylanase Production Ability by Aspergillus Niger. Science Discovery, 4(2), 70-74. https://doi.org/10.11648/j.sd.20160402.13

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    ACS Style

    Zheng Lili; Sheng Zhanwu; Ai Binling; Zheng Xiaoyan; Jin Zhiqiang. Effect of Different Mutation Methods on Xylanase Production Ability by Aspergillus Niger. Sci. Discov. 2016, 4(2), 70-74. doi: 10.11648/j.sd.20160402.13

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    AMA Style

    Zheng Lili, Sheng Zhanwu, Ai Binling, Zheng Xiaoyan, Jin Zhiqiang. Effect of Different Mutation Methods on Xylanase Production Ability by Aspergillus Niger. Sci Discov. 2016;4(2):70-74. doi: 10.11648/j.sd.20160402.13

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  • @article{10.11648/j.sd.20160402.13,
      author = {Zheng Lili and Sheng Zhanwu and Ai Binling and Zheng Xiaoyan and Jin Zhiqiang},
      title = {Effect of Different Mutation Methods on Xylanase Production Ability by Aspergillus Niger},
      journal = {Science Discovery},
      volume = {4},
      number = {2},
      pages = {70-74},
      doi = {10.11648/j.sd.20160402.13},
      url = {https://doi.org/10.11648/j.sd.20160402.13},
      eprint = {https://article.sciencepublishinggroup.com/pdf/10.11648.j.sd.20160402.13},
      abstract = {Based on the Aspergillus niger AS3.350, the mutants were brewed through inducing five treatments.The effect of different mutation methods on enzyme production ability of Xylanase was disscused and obtainedmutant strain of Xylanase production high ability. The results indicate that: the mutagenesis of UV irradiation and fast neutron irradiation was sensitive to increasing Xylanase activity. UV irradiation seted at 256 nm wavelength,the vertical distance was 20cm,exposure time was 90s, obtained mutant UV256-90 of the emzyme activity was 170.79U/ml,it was 2.18 times of the original strain.The rate 0.0025Gy / s of fast neutron irradiation and vertical distance 12cm,the optimal dose is 0.75Gy, screened out the mutant Fn5-2, the activity is 134.77U/ml,its 1.72 times of the original strain. Mutagenesis by diethyl sulfate, sodium nitrite, and nitrosoguanidine, enzyme activityof the optimal mutant strains were recently starting strain of 1.51 times, 1.46 times, and 1.38 times.Two physical mutagenic methods include ultraviolet mutagenesis and fast neutron irradiation were more sensitive on producing xylanase based on aspergillus Niger.},
     year = {2016}
    }
    

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  • TY  - JOUR
    T1  - Effect of Different Mutation Methods on Xylanase Production Ability by Aspergillus Niger
    AU  - Zheng Lili
    AU  - Sheng Zhanwu
    AU  - Ai Binling
    AU  - Zheng Xiaoyan
    AU  - Jin Zhiqiang
    Y1  - 2016/05/04
    PY  - 2016
    N1  - https://doi.org/10.11648/j.sd.20160402.13
    DO  - 10.11648/j.sd.20160402.13
    T2  - Science Discovery
    JF  - Science Discovery
    JO  - Science Discovery
    SP  - 70
    EP  - 74
    PB  - Science Publishing Group
    SN  - 2331-0650
    UR  - https://doi.org/10.11648/j.sd.20160402.13
    AB  - Based on the Aspergillus niger AS3.350, the mutants were brewed through inducing five treatments.The effect of different mutation methods on enzyme production ability of Xylanase was disscused and obtainedmutant strain of Xylanase production high ability. The results indicate that: the mutagenesis of UV irradiation and fast neutron irradiation was sensitive to increasing Xylanase activity. UV irradiation seted at 256 nm wavelength,the vertical distance was 20cm,exposure time was 90s, obtained mutant UV256-90 of the emzyme activity was 170.79U/ml,it was 2.18 times of the original strain.The rate 0.0025Gy / s of fast neutron irradiation and vertical distance 12cm,the optimal dose is 0.75Gy, screened out the mutant Fn5-2, the activity is 134.77U/ml,its 1.72 times of the original strain. Mutagenesis by diethyl sulfate, sodium nitrite, and nitrosoguanidine, enzyme activityof the optimal mutant strains were recently starting strain of 1.51 times, 1.46 times, and 1.38 times.Two physical mutagenic methods include ultraviolet mutagenesis and fast neutron irradiation were more sensitive on producing xylanase based on aspergillus Niger.
    VL  - 4
    IS  - 2
    ER  - 

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Author Information
  • Haikou Experimental Station, Chinese Academy of Tropical Agricultural Science, Haikou, China; Hainan Key Laboratory of Banana Genetic Improvement, Haikou, China

  • Haikou Experimental Station, Chinese Academy of Tropical Agricultural Science, Haikou, China; Hainan Key Laboratory of Banana Genetic Improvement, Haikou, China

  • Haikou Experimental Station, Chinese Academy of Tropical Agricultural Science, Haikou, China; Hainan Key Laboratory of Banana Genetic Improvement, Haikou, China

  • Haikou Experimental Station, Chinese Academy of Tropical Agricultural Science, Haikou, China; Hainan Key Laboratory of Banana Genetic Improvement, Haikou, China

  • Haikou Experimental Station, Chinese Academy of Tropical Agricultural Science, Haikou, China; Hainan Key Laboratory of Banana Genetic Improvement, Haikou, China

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