Department of Chemical Engineering, Texas A&M University, 3122 TAMU Jack E Brown Building, College Station, TX 77843, USA.
Metab Eng. 2012 Sep;14(5):487-95. doi: 10.1016/j.ymben.2012.07.004. Epub 2012 Jul 27.
Evolutionary engineering typically involves asexual propagation of a strain to improve a desired phenotype. However, asexual populations suffer from extensive clonal interference, a phenomenon where distinct lineages of beneficial clones compete and are often lost from the population given sufficient time. Improved adaptive mutants can likely be generated by genetic exchange between lineages, thereby reducing clonal interference. We present a system that allows continuous in situ recombination by using an Esherichia coli F-based conjugation system lacking surface exclusion. Evolution experiments revealed that Hfr-mediated recombination significantly speeds adaptation in certain circumstances. These results show that our system is stable, effective, and suitable for use in evolutionary engineering applications.
进化工程通常涉及无性繁殖菌株以改善所需表型。然而,无性种群受到广泛的克隆干扰,这是一种不同谱系的有益克隆竞争的现象,并且在足够长的时间内,往往会从种群中丢失。通过谱系之间的遗传交换可以产生更好的适应性突变体,从而减少克隆干扰。我们提出了一个系统,该系统使用缺乏表面排斥的基于大肠杆菌 F 的接合系统允许连续的原位重组。进化实验表明,在某些情况下,Hfr 介导的重组显着加快了适应速度。这些结果表明,我们的系统是稳定的、有效的,适用于进化工程应用。