Fritsch Emilie S, Schacherer Joseph, Bleykasten-Grosshans Claudine, Souciet Jean-Luc, Potier Serge, de Montigny Jacky
Laboratory of Molecular Genetics, Genomics and Microbiology, UMR7156, University of Strasbourg and CNRS, Strasbourg, France.
BMC Genomics. 2009 Mar 6;10:99. doi: 10.1186/1471-2164-10-99.
Chromosomal rearrangements such as duplications and deletions are key factors in evolutionary processes because they promote genomic plasticity. Although the genetic variations in the Saccharomyces cerevisiae species have been well documented, there is little known to date about the impact of the genetic background on the appearance of rearrangements.
Using the same genetic screening, the type of rearrangements and the mutation rates observed in the S288c S. cerevisiae strain were compared to previous findings obtained in the FL100 background. Transposon-associated rearrangements, a major chromosomal rearrangement event selected in FL100, were not detected in S288c. The mechanisms involved in the occurrence of deletions and duplications in the S288c strain were also tackled, using strains deleted for genes implicated in homologous recombination (HR) or non-homologous end joining (NHEJ). Our results indicate that an Yku80p-independent NHEJ pathway is involved in the occurrence of these rearrangements in the S288c background.
The comparison of two different S. cerevisiae strains, FL100 and S288c, allowed us to conclude that intra-species genomic variations have an important impact on the occurrence of chromosomal rearrangement and that this variability can partly be explained by differences in Ty1 retrotransposon activity.
诸如重复和缺失等染色体重排是进化过程中的关键因素,因为它们促进基因组可塑性。尽管酿酒酵母物种的遗传变异已有充分记录,但迄今为止,关于遗传背景对重排出现的影响知之甚少。
使用相同的遗传筛选方法,将在酿酒酵母S288c菌株中观察到的重排类型和突变率与之前在FL100背景中获得的结果进行比较。在FL100中选择的主要染色体重排事件——转座子相关重排在S288c中未检测到。还利用缺失参与同源重组(HR)或非同源末端连接(NHEJ)的基因的菌株,研究了S288c菌株中缺失和重复发生的机制。我们的结果表明,在S288c背景中,一种不依赖Yku80p的NHEJ途径参与了这些重排的发生。
对两种不同的酿酒酵母菌株FL100和S288c的比较使我们得出结论,种内基因组变异对染色体重排的发生有重要影响,并且这种变异性部分可以由Ty1逆转座子活性的差异来解释。