Dipartimento di Scienze Biomolecolari e Biotecnologie, Università degli Studi di Milano, Via Celoria 26, 20133, Milan, Italy.
J Ind Microbiol Biotechnol. 2011 Aug;38(8):1037-44. doi: 10.1007/s10295-010-0878-3. Epub 2010 Sep 29.
Glycerol is a residue generated during biodiesel production and represents around 10% of the total product output. Biodiesel production is currently having a significant impact on glycerol price, leading to an increased interest in the use of glycerol as a cheap substrate for fermentation processes. We have analysed the growth kinetics of two wild-type strains of Saccharomyces cerevisiae grown on synthetic media containing glycerol as the sole carbon and energy source. Both strains were initially unable to grow when cultivated under these conditions, and an unusually long lag phase was necessary prior to the appearance of slow-growing cells. Following the application of an "evolutionary engineering" approach, we obtained S. cerevisiae strains with an improved ability to grow on glycerol. We report here the isolation of an evolved strain that exhibits a reduction of the lag phase, a threefold increase of the specific growth rate and a higher glycerol consumption rate compared to wild-type strains. The evolved strain has retained its fermentative activity, producing ethanol at the same rate and yield as the wild type. Interestingly, the yeast biomass obtained by cultivating the evolved strain on synthetic glycerol-based media also showed a high viability after prolonged storage at -20°C. The strategy adopted in our study could be easily applied to obtain S. cerevisiae strains with new industrially relevant traits, such as an improved ability to use cheap substrates and high resistance to freeze and thaw procedures.
甘油是生物柴油生产过程中产生的残留物质,约占总产物的 10%。生物柴油的生产目前对甘油价格产生了重大影响,导致人们对甘油作为廉价发酵基质的应用产生了浓厚的兴趣。我们分析了在含有甘油作为唯一碳源和能源的合成培养基上生长的两种野生型酿酒酵母的生长动力学。在这些条件下培养时,两种菌株最初都无法生长,并且在出现缓慢生长的细胞之前需要经历异常长的迟滞期。在应用“进化工程”方法后,我们获得了能够在甘油上更好生长的酿酒酵母菌株。我们在此报告了一种经过进化的菌株的分离,该菌株的迟滞期缩短,比野生型菌株的比生长速率提高了三倍,甘油消耗速率也更高。与野生型菌株相比,该进化菌株保留了其发酵活性,能够以相同的速率和产率生产乙醇。有趣的是,在 -20°C 下长时间储存后,在合成甘油基培养基上培养进化菌株获得的酵母生物量也表现出很高的存活率。我们在研究中采用的策略可以很容易地应用于获得具有新的工业相关特性的酿酒酵母菌株,例如能够更好地利用廉价基质以及对冷冻和解冻过程具有更高抗性的能力。