Fermentation Technology Innovation Center of Hebei Province, College of Food Science and Biology, Hebei University of Science and Technology, No.26 Yuxiang Road, Yuhua District, Shijiazhuang 050018, PR China.
Qinhuangdao Bohai Biological Research Institute of Beijing University of Chemical Technology, No.41 Shuguxiangyuan Park, Longhai Road, Economic and technological development District, Qinhuangdao 066000, PR China.
FEMS Microbiol Lett. 2022 Jan 25;368(21-24). doi: 10.1093/femsle/fnab154.
CoQ10, which has been widely applied in medicine by dietary supplement, possesses important functions in antioxidant process and bioenergy generation. Iterative mutagenesis introduced by atmospheric and room temperature plasma (ARTP) treatment was studied to improve the coenzyme Q10 (CoQ10) production of Rhodobacter sphaeroides (R. sphaeroides), and multiple selection pressures including vitamin K3 (VK3), Na2S and benzoic acid (BA) were adopted for the first time. After two rounds of mutation and screening, a mutant strain R.S 17 was obtained, and the product titer was increased by 80.37%. The CoQ10 titer and cell density reached 236.7 mg L-1 and 57.09 g L-1, respectively, in the fed-batch fermentation, and the CoQ10 content was 22.1% higher than that of the parent strain. In addition, the spectral scanning results indicated the metabolic flux improvement contributing to the CoQ10 production in R.S 17, and the genetic stability was validated. Based on the iterative mutagenesis introduced by ARTP under multiple selection pressures, the promotion of CoQ10 production by R. sphaeroides was achieved. The significant improvement in fermentation performances and the good genetic stability of R.S 17 indicate a potential way for the efficient biosynthesis of CoQ10.
辅酶 Q10 作为一种广泛应用于医学领域的膳食补充剂,在抗氧化过程和生物能量生成中具有重要功能。本研究采用常压室温等离子体(ARTP)诱变迭代技术,首次采用维生素 K3(VK3)、Na2S 和苯甲酸(BA)等多种选择压力来提高球形红杆菌(R. sphaeroides)辅酶 Q10(CoQ10)的产量。经过两轮诱变和筛选,得到了一株突变株 R.S 17,产物滴度提高了 80.37%。在分批补料发酵中,CoQ10 的产量和细胞密度分别达到 236.7 mg/L 和 57.09 g/L,比出发菌株提高了 22.1%。此外,光谱扫描结果表明,R.S 17 中代谢通量的改善有助于 CoQ10 的产生,并且遗传稳定性得到了验证。基于 ARTP 介导的多轮选择压力下的迭代诱变,实现了球形红杆菌 CoQ10 的产量提升。R.S 17 发酵性能的显著改善和良好的遗传稳定性表明,这为 CoQ10 的高效生物合成提供了一种潜在途径。