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高耐受性拜氏梭菌的离子束诱变选育 被引量:1

Ion Beam Implantation and Breeding for Clostridium beijerinckii Mutant with Highly Inhibitors-tolerance
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摘要 【目的】为了优化生物丁醇生产工艺,研究拜氏梭菌(Clostridium beijerinckii)对有毒物质的耐受性。【方法】利用常温等离子诱变技术选育获得1株突变株C.beijerinckii GZ-9,并通过摇瓶发酵对比原始菌株C.beijerinckii NCIMB 8052和突变株GZ-9对有毒物质的耐受性。【结果】NCIMB 8052在酚浓度为1.5g/L的发酵液中已不能生长,而GZ-9在酚浓度2.4g/L的发酵培养基中生长良好;当可溶性总酚浓度为1.5g/L时,实验总溶剂产量和丁醇产量分别达9.2g/L和6.5g/L。【结论】突变株GZ-9对未脱毒甘蔗渣酸解糖液中毒素物质的耐受性远高于原始菌株NCIMB 8052。 Objective]The tolerance to toxic substances of Clostridium beijerinckii was studied in order to optimize bio-butanol industrial production.[Methods]A mutant strain C. beijerinckii GZ-9 was obtained by ion beam implantation and screening.Its inhibitors tolerance and butanol production were compared with that of the original strain C.beijerinckii NCIMB 8052.[Results]The results showed the strain NCIMB 8052 could not grow in the fermentation broth with the phenol concentration of 1 .5 g/L whereas the mutant GZ-9 grew well in fermen-tation medium with 2.4 g/L phenol.When the total soluble phenolic concentration was 1.5 g/L,the experiment yields of the total solvents and butanol production reached to 9.2 g/L and 6·5 g/L.[Conclusion]The mutant strain GZ-9 had strong tolerance to the toxic substances in non-detoxified acid sugar cane bagasse,which was much higher than the original strain NCIMB 8052.
出处 《广西科学》 CAS 2014年第6期629-633,共5页 Guangxi Sciences
基金 科技部转制科研院所创新能力专项资金项目(2014EG111227) 国家自然科学青年基金项目(21306032) 广州甘蔗糖业研究所面上基金项目(A201302)资助
关键词 拜氏梭菌 丁醇 耐受性 等离子诱变 Clostridium beijerinckii butanol tolerance ARTP
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  • 1Zhang Y, Zhu Y, Li Y. The importance of engineering physiological functionality into microbes E J 1- Trends Biotechnol, 2009,27 ( 12 ) : 664-672.
  • 2. Durre P. Biobutanol: An attractive biofuel[J]. Bioteehnol J ,2007,2(12) : 1525-1534.
  • 3刘力强,杨丽萍,李立强,米造吉,谢萍,黄品奇,王正品.生物丁醇燃料产业化制造中的问题及发展趋势[J].生物产业技术,2008(5):36-44. 被引量:16
  • 4Ezeji T, Qureshi N,Blaschek H P, et al. Butanol produc tion from agricultural residues: Impact of degradation products on Clostridium beijerincleii growth and buta- nol fermentation[J]. Biotechnol Bioeng, 2007, 97 (6): 1460-1469.
  • 5Qureshi N, Ezeji T C,Ebener J, et al. Butanol production lay Clostridium beijerinckii part I :Use of acid and en- zyme hydrolyzed corn fiber[J]. Bioresour Technol, 2008,99(13) :5915-5922.
  • 6姜岷,郭亭,汤艳,等.一株高抗逆性贝氏梭菌及其应用:中国,ZL201110020102.6[P].2011-09-07.
  • 7Guo T,Tang Y,Zhang Q Y,et al. Clostridium beijerinckii mutant with high inhibitor tolerance ob-tained by low-energy ion implantation[J]. J Ind Microbi- ol Biotechnol, 2012,39 (3) : 401-407.
  • 8Laroussi M. Low temperature plasma-based steriliza- tion: Overview and state- of- the- art [J]. PIasma Proc Polym, 2005,2 (5) :391-400.

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