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Butanol production by a Clostridium beijerinckii mutant with high ferulic acid tolerance

机译:具有高阿魏酸耐受性的拜氏梭状芽胞杆菌突变体生产丁醇

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摘要

A mutant strain of Clostridium beijerinckii, with high tolerance to ferulic acid, was generated using atmospheric pressure glow discharge and high-throughput screening of C. beijerinckii NCIMB 8052. The mutant strain M11 produced 7.24g/L of butanol when grown in P2 medium containing 30g/L of glucose and 0.5g/L of ferulic acid, which is comparable to the production from non-ferulic acid cultures (8.11g/L of butanol). When 0.8g/L of ferulic acid was introduced into the P2 medium, C. beijerinckii M11 grew well and produced 4.91g/L of butanol. Both cell growth and butanol production of C. beijerinckii M11 were seriously inhibited when 0.9g/L of ferulic acid was added into the P2 medium. Furthermore, C. beijerinckii M11 could produce 6.13g/L of butanol using non-detoxified hemicellulosic hydrolysate from diluted sulfuric acid-treated corn fiber (SAHHC) as the carbon source. These results demonstrate that C. beijerinckii M11 has a high ferulic acid tolerance and is able to use non-detoxified SAHHC for butanol production. (C) 2015 International Union of Biochemistry and Molecular Biology, Inc.
机译:使用大气压辉光放电和高通量筛选拜氏梭菌NCIMB 8052,产生了对阿魏酸具有高耐受性的梭状芽胞杆菌突变株。当在含有P2的P2培养基中生长时,突变株M11产生7.24g / L的丁醇。 30 g / L的葡萄糖和0.5 g / L的阿魏酸,与非阿魏酸培养物的产量(8.11 g / L的丁醇)相当。当将0.8g / L的阿魏酸引入P2培养基中时,拜氏梭菌M11生长良好,并产生4.91g / L的丁醇。当向P2培养基中加入0.9g / L阿魏酸时,严重抑制了拜氏梭菌M11的细胞生长和丁醇生产。此外,使用未脱毒的半纤维素水解产物,从稀硫酸处理过的玉米纤维(SAHHC)作为碳源,拜氏梭菌M11可以生产6.13g / L的丁醇。这些结果表明,拜氏梭菌M11具有高的阿魏酸耐受性,并且能够使用非解毒的SAHHC生产丁醇。 (C)2015国际生物化学与分子生物学联合会

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