4.7 Article

Reconstructing the complex evolutionary history of mobile plasmids in red algal genomes

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SCIENTIFIC REPORTS
卷 6, 期 -, 页码 -

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NATURE PORTFOLIO
DOI: 10.1038/srep23744

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  1. Global Ph.D. Fellowship (GPF) Program from the National Research Foundation of Korea (NRF) - Ministry of Education of Korea [2013-034853]
  2. NRF [2013-0699, MEST: 2014R1A2A2A01003588]
  3. Marine Biotechnology Program - Ministry of Oceans and Fisheries, Korea [PJT200620]
  4. Korean RDA Next-generation BioGreen21 [PJ011121]
  5. Div Of Biological Infrastructure
  6. Direct For Biological Sciences [1303909] Funding Source: National Science Foundation

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The integration of foreign DNA into algal and plant plastid genomes is a rare event, with only a few known examples of horizontal gene transfer (HGT). Plasmids, which are well-studied drivers of HGT in prokaryotes, have been reported previously in red algae (Rhodophyta). However, the distribution of these mobile DNA elements and their sites of integration into the plastid (ptDNA), mitochondrial (mtDNA), and nuclear genomes of Rhodophyta remain unknown. Here we reconstructed the complex evolutionary history of plasmid-derived DNAs in red algae. Comparative analysis of 21 rhodophyte ptDNAs, including new genome data for 5 species, turned up 22 plasmid-derived open reading frames (ORFs) that showed syntenic and copy number variation among species, but were conserved within different individuals in three lineages. Several plasmid-derived homologs were found not only in ptDNA but also in mtDNA and in the nuclear genome of green plants, stramenopiles, and rhizarians. Phylogenetic and plasmid-derived ORF analyses showed that the majority of plasmid DNAs originated within red algae, whereas others were derived from cyanobacteria, other bacteria, and viruses. Our results elucidate the evolution of plasmid DNAs in red algae and suggest that they spread as parasitic genetic elements. This hypothesis is consistent with their sporadic distribution within Rhodophyta.

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