School of Chemical Engineering, Sichuan University, Chengdu, 610065, China.
Appl Biochem Biotechnol. 2013 Apr;169(8):2362-73. doi: 10.1007/s12010-013-0142-1. Epub 2013 Mar 1.
As an efficient means of strain improvement, adaptive evolution is a technique with great potential. Long-term cultivation of Saccharomyces cerevisiae was performed in a polydimethylsiloxane membrane bioreactor system which was constructed by coupling the fermentation with pervaporation. A parent strain was subjected to three rounds of fermentation-screening-transfer procedure lasting 1,500 h in a continuous and closed circulating fermentation (CCCF) system, and its 600-generation descendant S33 was screened. In shaking flask culture test, the selected strain S33 from the third round showed great superiority over the parent strain in the residual broth medium, with the ethanol yield and specific ethanol productivity increasing by 34.5 and 34.7 %, respectively. In the long-term CCCF test, the fermentation performance of the descendant strain in the third round was higher than that of its parent strain in the second round. These results show the potential of this novel adaptive evolution approach in optimization of yeast strains.
作为一种有效的菌株改良手段,适应性进化是一种具有巨大潜力的技术。通过将发酵与渗透蒸发相结合,在聚二甲基硅氧烷膜生物反应器系统中对酿酒酵母进行了长期培养。将出发菌株在连续封闭循环发酵(CCCF)系统中进行了三轮发酵-筛选-转移过程,历时 1500 小时,筛选出其 600 代后代 S33。在摇瓶培养试验中,第三轮筛选出的菌株 S33 在残液培养基中比出发菌株具有很大的优势,乙醇得率和比乙醇生产率分别提高了 34.5%和 34.7%。在长期 CCCF 试验中,第三轮筛选出的后代菌株的发酵性能优于第二轮的出发菌株。这些结果表明,这种新的适应性进化方法在酵母菌株优化方面具有潜力。