Peter Keightley
Affiliations: | Intitute of Evolutionary Biology | University of Edinburgh, Edinburgh, Scotland, United Kingdom |
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"Peter Keightley"Children
Sign in to add traineeLel Eory | grad student | Edinburgh | |
Daniel Gaffney | grad student | Edinburgh | |
Daniel Halligan | grad student | Edinburgh | |
Matthew Hartfield | grad student | Edinburgh | |
Athanasios Kousathanas | grad student | Edinburgh | |
Rob Ness | post-doc | Edinburgh | |
Jobran Maurice Chebib | post-doc | 2019- | Edinburgh |
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Publications
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López-Cortegano E, Chebib J, Jonas A, et al. (2024) The rate and spectrum of new mutations in mice inferred by long-read sequencing. Genome Research |
Chebib J, Jonas A, López-Cortegano E, et al. (2024) An estimate of fitness reduction from mutation accumulation in a mammal allows assessment of the consequences of relaxed selection. Plos Biology. 22: e3002795 |
López-Cortegano E, Chebib J, Jonas A, et al. (2024) Variation in the spectrum of new mutations among inbred strains of mice. Molecular Biology and Evolution |
Wang Y, McNeil P, Abdulazeez R, et al. (2023) Variation in mutation, recombination, and transposition rates in and . Genome Research |
López-Cortegano E, Craig RJ, Chebib J, et al. (2022) Rates and spectra of de novo structural mutations in . Genome Research |
Böndel KB, Samuels T, Craig RJ, et al. (2022) The distribution of fitness effects of spontaneous mutations in Chlamydomonas reinhardtii inferred using frequency changes under experimental evolution. Plos Genetics. 18: e1009840 |
López-Cortegano E, Craig RJ, Chebib J, et al. (2021) De novo mutation rate variation and its determinants in Chlamydomonas. Molecular Biology and Evolution |
Craig RJ, Hasan AR, Ness RW, et al. (2021) Comparative genomics of Chlamydomonas. The Plant Cell |
Chebib J, Jackson BC, López-Cortegano E, et al. (2020) Inbred lab mice are not isogenic: genetic variation within inbred strains used to infer the mutation rate per nucleotide site. Heredity |
Craig RJ, Böndel KB, Arakawa K, et al. (2019) Patterns of population structure and complex haplotype sharing among field isolates of the green alga Chlamydomonas reinhardtii. Molecular Ecology |