Knie Nils, Grewe Felix, Knoop Volker
Abteilung Molekulare Evolution, IZMB-Institut für Zelluläre und Molekulare Botanik, Universität Bonn, D-53115 Bonn, Germany.
RNA. 2016 Sep;22(9):1338-48. doi: 10.1261/rna.056572.116. Epub 2016 Jun 28.
Intron patterns in plant mitochondrial genomes differ significantly between the major land plant clades. We here report on a new, clade-specific group II intron in the rps1 gene of monilophytes (ferns). This intron, rps1i25g2, is strikingly similar to rpl2i846g2 previously identified in the mitochondrial rpl2 gene of seed plants, ferns, and the lycophyte Phlegmariurus squarrosus Although mitochondrial ribosomal protein genes are frequently subject to endosymbiotic gene transfer among plants, we could retrieve the mitochondrial rps1 gene in a taxonomically wide sampling of 44 monilophyte taxa including basal lineages such as the Ophioglossales, Psilotales, and Marattiales with the only exception being the Equisetales (horsetails). Introns rps1i25g2 and rpl2i846g2 were likewise consistently present with only two exceptions: Intron rps1i25g2 is lost in the genus Ophioglossum and intron rpl2i846g2 is lost in Equisetum bogotense Both intron sequences are moderately affected by RNA editing. The unprecedented primary and secondary structure similarity of rps1i25g2 and rpl2i846g2 suggests an ancient retrotransposition event copying rpl2i846g2 into rps1, for which we suggest a model. Our phylogenetic analysis adding the new rps1 locus to a previous data set is fully congruent with recent insights on monilophyte phylogeny and further supports a sister relationship of Gleicheniales and Hymenophyllales.
主要陆地植物分支之间,植物线粒体基因组中的内含子模式存在显著差异。我们在此报告一种新的、特定分支的II类内含子,存在于薄囊蕨类植物(蕨类植物)的rps1基因中。这个内含子,rps1i25g2,与之前在种子植物、蕨类植物和石松类植物方枝石松的线粒体rpl2基因中发现的rpl2i846g2惊人地相似。尽管线粒体核糖体蛋白基因在植物中经常发生内共生基因转移,但我们能够在44个薄囊蕨类分类群的广泛分类抽样中检索到线粒体rps1基因,这些分类群包括基部谱系,如瓶尔小草目、松叶蕨目和合囊蕨目,唯一的例外是木贼目(木贼)。内含子rps1i25g2和rpl2i846g2同样始终存在,只有两个例外:内含子rps1i25g2在瓶尔小草属中缺失,内含子rpl2i846g2在波哥大木贼中缺失。两个内含子序列都受到RNA编辑的适度影响。rps1i25g2和rpl2i846g2前所未有的一级和二级结构相似性表明,存在一个古老的逆转座事件,将rpl2i846g2复制到rps1中,我们为此提出了一个模型。我们的系统发育分析将新的rps1基因座添加到先前的数据集中,这与最近关于薄囊蕨类系统发育的见解完全一致,并进一步支持了里白目和膜蕨目的姐妹关系。