UPMC, UMR7238, Génomique des Microorganismes, Paris, France.
Genome Biol Evol. 2013;5(2):370-88. doi: 10.1093/gbe/evt014.
We generated a genome-wide replication profile in the genome of Lachancea kluyveri and assessed the relationship between replication and base composition. This species diverged from Saccharomyces cerevisiae before the ancestral whole genome duplication. The genome comprises eight chromosomes among which a chromosomal arm of 1 Mb has a G + C-content much higher than the rest of the genome. We identified 252 active replication origins in L. kluyveri and found considerable divergence in origin location with S. cerevisiae and with Lachancea waltii. Although some global features of S. cerevisiae replication are conserved: Centromeres replicate early, whereas telomeres replicate late, we found that replication origins both in L. kluyveri and L. waltii do not behave as evolutionary fragile sites. In L. kluyveri, replication timing along chromosomes alternates between regions of early and late activating origins, except for the 1 Mb GC-rich chromosomal arm. This chromosomal arm contains an origin consensus motif different from other chromosomes and is replicated early during S-phase. We showed that precocious replication results from the specific absence of late firing origins in this chromosomal arm. In addition, we found a correlation between GC-content and distance from replication origins as well as a lack of replication-associated compositional skew between leading and lagging strands specifically in this GC-rich chromosomal arm. These findings suggest that the unusual base composition in the genome of L. kluyveri could be linked to replication.
我们在 Lachancea kluyveri 的基因组中生成了全基因组复制图谱,并评估了复制与碱基组成之间的关系。该物种在酵母属的祖先全基因组复制之前就已经从酿酒酵母中分化出来了。该基因组由八个染色体组成,其中 1 Mb 的染色体臂的 G + C 含量远高于基因组的其他部分。我们在 L. kluyveri 中鉴定出 252 个活跃的复制起点,发现与酿酒酵母和 Lachancea waltii 相比,起点位置存在相当大的差异。尽管酿酒酵母复制的一些全局特征是保守的:着丝粒复制较早,而端粒复制较晚,但我们发现 L. kluyveri 和 L. waltii 中的复制起点都不作为进化脆弱的位点。在 L. kluyveri 中,除了 1 Mb 的 GC 丰富的染色体臂外,染色体上的复制时间在早期和晚期激活的起点之间交替。这个富含 GC 的染色体臂包含一个不同于其他染色体的起始共识基序,并且在 S 期早期被复制。我们表明,早熟复制是由于该染色体臂中特定的晚期起始原点缺失造成的。此外,我们发现 GC 含量与复制原点之间的距离以及在这个富含 GC 的染色体臂中,前导链和滞后链之间缺乏与复制相关的组成性倾斜之间存在相关性。这些发现表明,L. kluyveri 基因组中异常的碱基组成可能与复制有关。