Analysis of the efficiency factors of electrotransformation of Bacillus subtilis to inactivate the aroK gene by the method of homologous recombination

Yui Chao, Aleksei V. Lahodzich
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Abstract

A hyper-osmotic electrotransformation method was developed for strain Bacillus subtilis. Sorbitol and mannitol are included in the hyper-osmotic electroporation medium and recovery medium. In this study, the hyper-osmotic electroporation method was optimised to increase the transformation efficiency of B. subtilis strain 5434 (non-transformable by chemical methods) by 430 fold, with a maximum value of 8.6 ⋅ 105 CFU/µg of integrative plasmid DNA. With the electroporation setted 25 µF, 23 kV/cm, 200 Ω, the method was optimised as follows: a) the OD600 value of the bacterial culture solution was increased to about 1.2, which significantly enhanced survival of bacteria and quantity of viable B.subtilis strain 5434 cells after electroporation; b) the elution frequency of washing solution (hyper-osmotic electroporation medium) for complement cells was increased from 3 to 5 times, resulted in significantly reducing the conductivity of the hyper-osmotic electoporation medium with competent cells (electrocompetent cultue), and effectively extending the pulse time under the same electric field strength; c) quantity of integrative plasmid DNA added to hyper-osmotic electrocompetent culture was optimised. These results indicate that increasing the number of viable B. subtilis strain 5434 cells and reducing the number of metal ions in the electroporation solution mix (integrative plasmid DNA, competent cells of B. subtilis strain 5434, electroporation medium) are useful approach to improve transfomation efficiency of B. subtilis strain 5434. Concentration of shikimic acid in the fermentation medium was quantified by high performance liquid chromatography. Quantification of shikimic acid revealed that B. subtilis strain 5434p4SA produced 403.98 ± 9.1 µg/mL of shikimic acid.
用同源重组法电转化枯草芽孢杆菌灭活aroK基因的效率因素分析
研究了枯草芽孢杆菌的超渗透电转化方法。高渗透电穿孔介质和回收介质中含有山梨醇和甘露醇。本研究优化了高渗透电穿孔法,使枯草芽孢杆菌5434菌株(化学方法不可转化)的转化效率提高了430倍,整合质粒DNA的最大值为8.6⋅105 CFU/µg。在电穿孔温度为25µF, 23 kV/cm, 200 Ω的条件下,优化方法如下:a)将细菌培养液的OD600值提高到1.2左右,电穿孔后细菌的存活率和枯草芽孢杆菌5434株的活细胞数量显著提高;B)补体细胞洗涤液(高渗透电穿孔介质)的洗脱次数从3次增加到5次,使高渗透电穿孔介质与感态细胞(电致培养物)的电导率显著降低,在相同电场强度下有效延长脉冲时间;c)优化高渗透电致能培养中整合质粒DNA的添加量。上述结果表明,增加枯草芽孢杆菌5434的活菌数量,减少电穿孔溶液(整合质粒DNA、枯草芽孢杆菌5434的感态细胞、电穿孔培养基)中金属离子的数量是提高菌株5434转化效率的有效途径。采用高效液相色谱法测定发酵培养基中莽草酸的浓度。结果表明,枯草芽孢杆菌5434p4SA菌株的莽草酸含量为403.98±9.1µg/mL。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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