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Molecular Biology and Evolution|February 4, 2014
The relation between recombination rate and patterns of molecular evolution and variation in Drosophila melanogasterJosé L Campos, Daniel L Halligan, Penelope R Haddrill, et al.Heredity|September 2, 2020
Inbred lab mice are not isogenic: genetic variation within inbred strains used to infer the mutation rate per nucleotide siteJobran Chebib, Benjamin C Jackson, Eugenio López-Cortegano, et al.Genome Research|May 15, 2009
Analysis of the genome sequences of three Drosophila melanogaster spontaneous mutation accumulation linesPeter D Keightley, Urmi Trivedi, Marian Thomson, et al.Current Biology : CB|March 21, 2006
Natural selection drives extremely rapid evolution in antiviral RNAi genesDarren J Obbard, Francis M Jiggins, Daniel L Halligan, et al.Plos Biology|August 22, 2008
Direct estimation of the mitochondrial DNA mutation rate in Drosophila melanogasterCathy Haag-Liautard, Nicole Coffey, David Houle, et al.Evolution; International Journal of Organic Evolution|September 9, 2017
Fitness change in relation to mutation number in spontaneous mutation accumulation lines of Chlamydomonas reinhardtiiSusanne A Kraemer, Katharina B Böndel, Robert W Ness, et al.Genome Research|January 8, 2023
Rates and spectra of de novo structural mutations in Chlamydomonas reinhardtiiEugenio López-Cortegano, Rory J Craig, Jobran Chebib, et al.Heredity|December 27, 2025
Tissue-specific differences of gene expression variance in mutation accumulation lines of miceEugenio López-Cortegano, Jobran Chebib, Anika Jonas, et al.Plos Biology|September 26, 2024
An estimate of fitness reduction from mutation accumulation in a mammal allows assessment of the consequences of relaxed selectionJobran Chebib, Anika Jonas, Eugenio López-Cortegano, et al.Genome Research|August 12, 2015
Extensive de novo mutation rate variation between individuals and across the genome of Chlamydomonas reinhardtiiRob W Ness, Andrew D Morgan, Radhakrishnan B Vasanthakrishnan, et al.Pageof 13