Convergent Evolution of Fern-Specific Mitochondrial Group II Intron atp1i361g2 and Its Ancient Source Paralogue rps3i249g2 and Independent Losses of Intron and RNA Editing among Pteridaceae
Autor: | Nils Knie, Volker Knoop, Simon Maria Zumkeller |
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Rok vydání: | 2016 |
Předmět: |
intron loss
0301 basic medicine Pteridaceae RNA editing monilophytes Genes Plant Evolution Molecular 03 medical and health sciences Exon Convergent evolution group II introns Genetics Gene Phylogeny Ecology Evolution Behavior and Systematics biology Intron Group II intron biology.organism_classification Introns Genes Mitochondrial 030104 developmental biology intron transfer RNA splicing Research Article |
Zdroj: | Genome Biology and Evolution |
ISSN: | 1759-6653 |
DOI: | 10.1093/gbe/evw173 |
Popis: | Mitochondrial intron patterns are highly divergent between the major land plant clades. An intron in the atp1 gene, atp1i361g2, is an example for a group II intron specific to monilophytes (ferns). Here, we report that atp1i361g2 is lost independently at least 4 times in the fern family Pteridaceae. Such plant organelle intron losses have previously been found to be accompanied by loss of RNA editing sites in the flanking exon regions as a consequence of genomic recombination of mature cDNA. Instead, we now observe that RNA editing events in both directions of pyrimidine exchange (C-to-U and U-to-C) are retained in atp1 exons after loss of the intron in Pteris argyraea/biaurita and in Actiniopteris and Onychium. We find that atp1i361g2 has significant similarity with intron rps3i249g2 present in lycophytes and gymnosperms, which we now also find highly conserved in ferns. We conclude that atp1i361g2 may have originated from the more ancestral rps3i249g2 paralogue by a reverse splicing copy event early in the evolution of monilophytes. Secondary structure elements of the two introns, most characteristically their domains III, show strikingly convergent evolution in the monilophytes. Moreover, the intron paralogue rps3i249g2 reveals relaxed evolution in taxa where the atp1i361g2 paralogue is lost. Our findings may reflect convergent evolution of the two related mitochondrial introns exerted by co-evolution with an intron-binding protein simultaneously acting on the two paralogues. |
Databáze: | OpenAIRE |
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