Department of Biotechnology, Instituto de Agroquímica y Tecnología de Alimentos, Consejo Superior de Investigaciones Científicas, Poligono de la Coma, s/n, PO Box 73. 46100-Burjassot, Valencia, Spain.
Microb Biotechnol. 2010 Mar;3(2):210-21. doi: 10.1111/j.1751-7915.2009.00136.x. Epub 2009 Jul 17.
We used adaptive evolution to improve freeze tolerance of industrial baker's yeast. Our hypothesis was that adaptation to low temperature is accompanied by enhanced resistance of yeast to freezing. Based on this hypothesis, yeast was propagated in a flour-free liquid dough model system, which contained sorbitol and NaCl, by successive batch refreshments maintained constantly at 12°C over at least 200 generations. Relative to the parental population, the maximal growth rate (µ(max)) under the restrictive conditions, increased gradually over the time course of the experiment. This increase was accompanied by enhanced freeze tolerance. However, these changes were not the consequence of genetic adaptation to low temperature, a fact that was confirmed by prolonged selection of yeast cells in YPD at 12°C. Instead, the experimental populations showed a progressive increase in NaCl tolerance. This phenotype was likely achieved at the expense of others traits, since evolved cells showed a ploidy reduction, a defect in the glucose derepression mechanism and a loss in their ability to utilize gluconeogenic carbon sources. We discuss the genetic flexibility of S. cerevisiae in terms of adaptation to the multiple constraints of the experimental design applied to drive adaptive evolution and the technologically advantageous phenotype of the evolved population.
我们利用适应性进化来提高工业面包酵母的耐冻性。我们的假设是,低温适应伴随着酵母对冷冻的抵抗力增强。基于这一假设,酵母在一个不含面粉的液体面团模型系统中繁殖,该系统含有山梨糖醇和 NaCl,通过连续的批处理更新,温度保持在 12°C 至少 200 代。与亲本种群相比,在限制条件下的最大生长速率(µ(max))随着实验时间的推移逐渐增加。这种增加伴随着耐冻性的增强。然而,这些变化并不是遗传适应低温的结果,这一事实通过在 12°C 下长时间选择 YPD 中的酵母细胞得到了证实。相反,实验种群表现出 NaCl 耐受性逐渐增强。这种表型可能是以牺牲其他特性为代价的,因为进化后的细胞显示出倍性降低、葡萄糖去阻遏机制缺陷以及利用生糖碳源的能力丧失。我们讨论了 S. cerevisiae 的遗传灵活性,包括对应用于驱动适应性进化的实验设计的多种限制的适应能力,以及进化种群的技术优势表型。