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Molecular Biology and Evolution|May 25, 2007
Widespread intron loss suggests retrotransposon activity in ancient apicomplexansScott William Roy, David PennyCurrent 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 IrimiaProceedings of the National Academy of Sciences of the United States of America|March 17, 2005
Resolution of a deep animal divergence by the pattern of intron conservationScott William Roy, Walter GilbertGenome 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 IrimiaMolecular Biology and Evolution|May 2, 2007
On the incidence of intron loss and gain in paralogous gene familiesScott William Roy, David PennyMolecular Biology and Evolution|March 14, 2007
A very high fraction of unique intron positions in the intron-rich diatom Thalassiosira pseudonana indicates widespread intron gainScott William Roy, David PennyProceedings of the National Academy of Sciences of the United States of America|February 3, 2026
Controlling for life-history traits in vertebrates reveals that effective population size does not affect mutation rate or genome sizeBrooke Weinstein, Scott William RoyContemporary Nurse|July 8, 2024
A qualitative exploration of transitions, compliance, and onboarding challenges for international students in health professional education degreesScott William, Iman Hegazi, Kath PetersPageof 10