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Plos Genetics|August 9, 2008
Evolutionary convergence on highly-conserved 3' intron structures in intron-poor eukaryotes and insights into the ancestral eukaryotic genomeManuel Irimia, Scott William RoyCurrent Biology : CB|July 14, 2012
Genome evolution: where do new introns come from?Scott William Roy, Manuel IrimiaMethods in Molecular Biology (Clifton, N.J.)|February 20, 2014
Diversity and evolution of spliceosomal systemsScott William Roy, Manuel IrimiaGenome Biology|February 29, 2008
Intron mis-splicing: no alternative?Scott William Roy, Manuel IrimiaMolecular Biology and Evolution|February 19, 2008
Rare genomic characters do not support Coelomata: intron loss/gainScott William Roy, Manuel IrimiaBioessays : News and Reviews in Molecular, Cellular and Developmental Biology|May 15, 2008
When good transcripts go bad: artifactual RT-PCR 'splicing' and genome analysisScott William Roy, Manuel IrimiaMolecular Biology and Evolution|March 25, 2008
Origins of human malaria: rare genomic changes and full mitochondrial genomes confirm the relationship of Plasmodium falciparum to other mammalian parasites but complicate the origins of Plasmodium vivaxScott William Roy, Manuel IrimiaJournal of Molecular Evolution|March 6, 2008
Rare genomic characters do not support Coelomata: RGC_CAMsScott William Roy, Manuel IrimiaTrends in Ecology & Evolution|July 7, 2009
Splicing in the eukaryotic ancestor: form, function and dysfunctionScott William Roy, Manuel IrimiaCold Spring Harbor Perspectives in Biology|June 4, 2014
Origin of spliceosomal introns and alternative splicingManuel Irimia, Scott William RoyPageof 20