Zhang Junjiao, Zhao Xiangying, Zhang Jiaxiang, Zhao Chen, Liu Jianjun, Tian Yanjun, Yang Liping
a Key Laboratory of Food and Fermentation Engineering of Shandong Province , Shandong Food Ferment Industry Research & Design Institute , Jinan , PR China.
Prep Biochem Biotechnol. 2017 Sep 14;47(8):761-767. doi: 10.1080/10826068.2017.1320293. Epub 2017 Apr 20.
The present work aims to block 2,3-butanediol synthesis in acetoin fermentation of Bacillus subtilis. First, we constructed a recombinant strain BS168D by deleting the 2,3-butanediol dehydrogenase gene bdhA of the B. subtilis168, and there was almost no 2,3-butanediol production in 20 g/L of glucose media. The acetoin yield of BS168D reached 6.61 g/L, which was about 1.5 times higher than that of the control B. subtilis168 (4.47 g/L). Then, when the glucose concentration was increased to 100 g/L, the acetoin yield reached 24.6 g/L, but 2.4 g/L of 2,3-butanediol was detected at the end of fermentation. The analysis of 2,3-butanediol chiral structure indicated that the main 2,3-butanediol production of BS168D was meso-2,3-butanediol, and the bdhA gene was only responsible for (2R,3R)-2,3-butanediol synthesis. Therefore, we speculated that there may exit another pathway relating to the meso-2,3-butanediol synthesis in the B. subtilis. In addition, the results of low oxygen condition fermentation showed that deletion of bdhA gene successfully blocked the reversible transformation between acetoin and 2,3-butanediol and eliminated the effect of dissolved oxygen on the transformation.
本研究旨在阻断枯草芽孢杆菌乙偶姻发酵中2,3-丁二醇的合成。首先,我们通过缺失枯草芽孢杆菌168的2,3-丁二醇脱氢酶基因bdhA构建了重组菌株BS168D,在20 g/L葡萄糖培养基中几乎没有2,3-丁二醇产生。BS168D的乙偶姻产量达到6.61 g/L,约为对照枯草芽孢杆菌168(4.47 g/L)的1.5倍。然后,当葡萄糖浓度提高到100 g/L时,乙偶姻产量达到24.6 g/L,但在发酵结束时检测到2.4 g/L的2,3-丁二醇。对2,3-丁二醇手性结构的分析表明,BS168D产生的主要2,3-丁二醇是内消旋-2,3-丁二醇,bdhA基因仅负责(2R,3R)-2,3-丁二醇的合成。因此,我们推测枯草芽孢杆菌中可能存在另一条与内消旋-2,3-丁二醇合成相关的途径。此外,低氧条件发酵结果表明,bdhA基因的缺失成功阻断了乙偶姻与2,3-丁二醇之间的可逆转化,并消除了溶解氧对该转化的影响。