State Key Laboratory of Food Nutrition and Safety, Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin Industrial Microbiology Key Laboratory, College of Biotechnology, Tianjin University of Science and Technology, Tianjin 300457, China.
Key Laboratory of Wuliangye-flavor Liquor Solid-state Fermentation, China National Light Industry, China.
Biomed Res Int. 2019 May 9;2019:6723849. doi: 10.1155/2019/6723849. eCollection 2019.
The security of engineering is becoming more focused on industrial production in consideration of the public concern regarding genetically modified organisms. In this work, a rapid and highly efficient system for seamless gene deletion in was developed through two-step integration protocol combined with endonuclease I-SCEI expression. The factors affecting the frequency of the second homologous recombination were optimized, and studies indicated that the mutant strains with 500 bp direct repeats and that have been incubating in galactose (0.5 g/100 mL) medium at 30°C and 180 r/min for 24 h permit high frequency (6.86 × 10) of the second homologous recombination. Furthermore, DNA sequence assays showed only self-DNA in native location without any foreign genes after deletion using this method. The seamless gene deletion method was applied to the construction of the engineering strains with (encoding aminotransferase) deletion and (alcohol acetyltransferases) overexpression. The mutants exhibited significant effects on higher alcohol reduction and ester improvement after Baijiu fermentation. The engineered strains can be used in industrial production in security, thereby meeting the requirements of modern science and technology.
工程安全性越来越关注公众对转基因生物的担忧,考虑到工业生产。在这项工作中,通过两步整合方案与内切酶 I-SCEI 表达相结合,开发了一种在 中快速高效的无缝基因缺失系统。优化了影响第二次同源重组频率的因素,研究表明,具有 500bp 直接重复且在含有 0.5g/100ml 半乳糖的培养基中于 30°C 和 180r/min 孵育 24h 的突变株具有第二次同源重组的高频率(6.86×10)。此外,DNA 序列分析表明,使用该方法进行缺失后,仅在原始位置存在自身 DNA,而无任何外源基因。该无缝基因缺失方法应用于构建缺失(编码氨基转移酶)和过表达(醇乙酰转移酶)的工程菌株。突变株在白酒发酵后对高醇还原和酯类改善有显著影响。该工程菌株可安全用于工业生产,从而满足现代科学技术的要求。