Guo Jinsong, Ma Ruonan, Su Bo, Li Yinglong, Zhang Jue, Fang Jing
College of Engineering, Peking University, Beijing, 100871, China.
Academy for Advanced Interdisciplinary Studies, Peking University, Beijing, 100871, China.
Sci Rep. 2016 May 16;6:25949. doi: 10.1038/srep25949.
Avermectins, a group of anthelmintic and insecticidal agents produced from Streptomyces avermitilis, are widely used in agricultural, veterinary, and medical fields. This study presents the first report on the potential of using nanosecond pulsed electric fields (nsPEFs) to improve avermectin production in S. avermitilis. The results of colony forming units showed that 20 pulses of nsPEFs at 10 kV/cm and 20 kV/cm had a significant effect on proliferation, while 100 pulses of nsPEFs at 30 kV/cm exhibited an obvious effect on inhibition of agents. Ultraviolet spectrophotometry assay revealed that 20 pulses of nsPEFs at 15 kV/cm increased avermectin production by 42% and reduced the time for reaching a plateau in fermentation process from 7 days to 5 days. In addition, the decreased oxidation reduction potential (ORP) and increased temperature of nsPEFs-treated liquid were evidenced to be closely associated with the improved cell growth and fermentation efficiency of avermectins in S. avermitilis. More importantly, the real-time RT-PCR analysis showed that nsPEFs could remarkably enhance the expression of aveR and malE in S. avermitilis during fermentation, which are positive regulator for avermectin biosynthesis. Therefore, the nsPEFs technology presents an alternative strategy to be developed to increase avermectin output in fermentation industry.
阿维菌素是由阿维链霉菌产生的一类驱虫和杀虫药剂,广泛应用于农业、兽医和医学领域。本研究首次报道了利用纳秒级脉冲电场(nsPEFs)提高阿维链霉菌中阿维菌素产量的潜力。菌落形成单位的结果表明,在10 kV/cm和20 kV/cm下施加20个nsPEF脉冲对增殖有显著影响,而在30 kV/cm下施加100个nsPEF脉冲对抑制作用有明显效果。紫外分光光度法测定显示,在15 kV/cm下施加20个nsPEF脉冲可使阿维菌素产量提高42%,并将发酵过程中达到平稳期的时间从7天缩短至5天。此外,经nsPEF处理的液体的氧化还原电位(ORP)降低和温度升高被证明与阿维链霉菌中细胞生长和阿维菌素发酵效率的提高密切相关。更重要的是,实时RT-PCR分析表明,nsPEF在发酵过程中可显著增强阿维链霉菌中aveR和malE的表达,这两个基因是阿维菌素生物合成的正调控因子。因此,nsPEF技术为发酵工业中提高阿维菌素产量提供了一种可供开发的替代策略。