SKLMM, School of Life Sciences and Biotechnology, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai, 200240, People's Republic of China.
Appl Microbiol Biotechnol. 2013 Sep;97(17):7767-78. doi: 10.1007/s00253-013-4921-y. Epub 2013 May 1.
We constructed a non-scar triple-deleted mutant Pseudomonas aeruginosa to improve phenazine-1-carboxylic acid (PCA) yield and then optimized the culture conditions for PCA production. Using a non-scar deletion strategy, the 5'-untranslated region of the phz1 gene cluster and two genes, phzM and phzS, were knocked out of the P. aeruginosa strain M18 genome. The potential ability for high-yield PCA production in this triple-deleted mutant M18MSU1 was successfully realized by using statistical experimental designs. A 2(5-1) fractional factorial design was used to show that the three culture components of soybean meal, corn steep liquor and ethanol had the most significant effect on PCA production. Using a central composite design, the concentration of the three components was optimized. The maximum PCA production was predicted to be 4,725.1 mg/L. With the optimal medium containing soybean meal 74.25 g/L, corn steep liquor 13.01 g/L and ethanol 21.84 ml/L, a PCA production of 4,771.2 mg/L was obtained in the validation experiments, which was nearly twofold of that before optimization and tenfold of that in the wild-type strain. This non-scar triple-deleted mutant M18MSU1 may be a suitable strain for industrial production of this biologically synthesized fungicide due to its high PCA production, presumed safety, thermal adaptability and cost-effectiveness.
我们构建了一个非疤痕三缺失突变的铜绿假单胞菌,以提高吩嗪-1-羧酸(PCA)的产量,然后优化了 PCA 生产的培养条件。使用非疤痕缺失策略,敲除了铜绿假单胞菌 M18 基因组中 phz1 基因簇的 5'-非翻译区和两个基因 phzM 和 phzS。通过使用统计实验设计,成功地实现了这种三缺失突变体 M18MSU1 高产 PCA 的潜在能力。使用 2(5-1)部分析因设计表明,大豆粉、玉米浆和乙醇这三种培养成分对 PCA 生产的影响最大。使用中心复合设计优化了这三种成分的浓度。预测最大 PCA 产量为 4725.1mg/L。在含有大豆粉 74.25g/L、玉米浆 13.01g/L 和乙醇 21.84ml/L 的最佳培养基中,验证实验中获得了 4771.2mg/L 的 PCA 产量,是优化前的近两倍,是野生型菌株的十倍。由于该非疤痕三缺失突变体 M18MSU1 具有较高的 PCA 产量、假定的安全性、热适应性和成本效益,因此可能是一种适合工业生产这种生物合成杀菌剂的合适菌株。