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Genetics|September 29, 2011
A method for inferring the rate of occurrence and fitness effects of advantageous mutationsAdrian Schneider, Brian Charlesworth, Adam Eyre-Walker, et al.Molecular Biology and Evolution|November 29, 2015
Direct Estimate of the Spontaneous Mutation Rate Uncovers the Effects of Drift and Recombination in the Chlamydomonas reinhardtii Plastid GenomeRob W Ness, Susanne A Kraemer, Nick Colegrave, et al.Genetics|October 12, 2012
Estimate of the spontaneous mutation rate in Chlamydomonas reinhardtiiRob W Ness, Andrew D Morgan, Nick Colegrave, et al.Genetics|April 22, 2016
Inferring the Frequency Spectrum of Derived Variants to Quantify Adaptive Molecular Evolution in Protein-Coding Genes of Drosophila melanogasterPeter D Keightley, José L Campos, Tom R Booker, et al.Evolution; International Journal of Organic Evolution|May 16, 2014
Spontaneous mutation accumulation in multiple strains of the green alga, Chlamydomonas reinhardtiiAndrew D Morgan, Rob W Ness, Peter D Keightley, et al.Genome Biology|February 8, 2007
Reduced efficacy of selection in regions of the Drosophila genome that lack crossing overPenelope R Haddrill, Daniel L Halligan, Dimitris Tomaras, et al.Genome Biology|August 10, 2005
Patterns of intron sequence evolution in Drosophila are dependent upon length and GC contentPenelope R Haddrill, Brian Charlesworth, Daniel L Halligan, et al.The Plant Cell|April 1, 2021
Comparative genomics of ChlamydomonasRory J Craig, Ahmed R Hasan, Rob W Ness, et al.Molecular Biology and Evolution|November 26, 2002
Quantifying the slightly deleterious mutation model of molecular evolutionAdam Eyre-Walker, Peter D Keightley, Nick G C Smith, et al.Evolution; International Journal of Organic Evolution|October 24, 2014
Fitness decline in spontaneous mutation accumulation lines of Caenorhabditis elegans with varying effective population sizesVaishali Katju, Lucille B Packard, Lijing Bu, et al.Pageof 13