Département de Biochimie, de Microbiologie et de Bio-Informatique, Université Laval, Ville de Québec, Québec, Canada.
Genome Biol Evol. 2011;3:505-15. doi: 10.1093/gbe/evr037. Epub 2011 May 5.
In the Chlorophyceae, the chloroplast genome is extraordinarily fluid in architecture and displays unique features relative to other groups of green algae. For the Chaetophorales, 1 of the 5 major lineages of the Chlorophyceae, it has been shown that the distinctive architecture of the 223,902-bp genome of Stigeoclonium helveticum is consistent with bidirectional DNA replication from a single origin. Here, we report the 182,759-bp chloroplast genome sequence of Schizomeris leibleinii, a member of the earliest diverging lineage of the Chaetophorales. Like its Stigeoclonium homolog, the Schizomeris genome lacks a large inverted repeat encoding the rRNA operon and displays a striking bias in coding regions that is associated with a bias in base composition along each strand. Our results support the notion that these two chaetophoralean genomes replicate bidirectionally from a putative origin located in the vicinity of the small subunit ribosomal RNA gene. Their shared structural characteristics were most probably inherited from the common ancestor of all chaetophoralean algae. Short dispersed repeats account for most of the 41-kb size variation between the Schizomeris and Stigeoclonium genomes, and there is no indication that homologous recombination between these repeated elements led to the observed gene rearrangements. A comparison of the extent of variation sustained by the Stigeoclonium and Schizomeris chloroplast DNAs (cpDNAs) with that observed for the cpDNAs of the chlamydomonadalean Chlamydomonas and Volvox suggests that gene rearrangements as well as changes in the abundance of intergenic and intron sequences occurred at a slower pace in the Chaetophorales than in the Chlamydomonadales.
在绿藻门中,叶绿体基因组在结构上非常不稳定,与其他绿藻群相比具有独特的特征。对于Chaetophorales,绿藻门的 5 个主要分支之一,已经表明 Stigeoclonium helveticum 的 223902bp 基因组的独特结构与从单个起点进行双向 DNA 复制一致。在这里,我们报告了 Schizomeris leibleinii 的叶绿体基因组序列,这是 Chaetophorales 中最早分化的谱系的成员。与它的 Stigeoclonium 同源物一样,Schizomeris 基因组缺乏一个大的反向重复序列,该序列编码 rRNA 操纵子,并显示出编码区域的惊人偏向性,这与每条链上的碱基组成偏向性有关。我们的结果支持这样一种观点,即这两个 chaetophoralean 基因组从位于小亚基核糖体 RNA 基因附近的假定起点进行双向复制。它们共享的结构特征很可能是从所有 chaetophoralean 藻类的共同祖先继承而来的。短散布重复序列占 Schizomeris 和 Stigeoclonium 基因组之间 41kb 大小变化的大部分,并且没有迹象表明这些重复元件之间的同源重组导致了观察到的基因重排。Stigeoclonium 和 Schizomeris 叶绿体 DNA(cpDNA)的变异程度与 chlamydomonadalean Chlamydomonas 和 Volvox 的 cpDNA 观察到的变异程度进行比较表明,基因重排以及基因间和内含子序列丰度的变化在 Chaetophorales 中比在 Chlamydomonadales 中发生得更慢。