Detecting positive selection in the genome TR Booker, BC Jackson, PD Keightley BMC biology 15, 1-10, 2017 | 141 | 2017 |
Genetic diversity loss in the Anthropocene M Exposito-Alonso, TR Booker, L Czech, L Gillespie, S Hateley, ... Science 377 (6613), 1431-1435, 2022 | 137 | 2022 |
Variation in recombination rate affects detection of outliers in genome scans under neutrality TR Booker, S Yeaman, MC Whitlock Molecular Ecology 29 (22), 4274-4279, 2020 | 80 | 2020 |
Inferring the frequency spectrum of derived variants to quantify adaptive molecular evolution in protein-coding genes of Drosophila melanogaster PD Keightley, JL Campos, TR Booker, B Charlesworth Genetics 203 (2), 975-984, 2016 | 44 | 2016 |
Understanding the factors that shape patterns of nucleotide diversity in the house mouse genome TR Booker, PD Keightley Molecular biology and evolution 35 (12), 2971-2988, 2018 | 37 | 2018 |
The recombination landscape in wild house mice inferred using population genomic data TR Booker, RW Ness, PD Keightley Genetics 207 (1), 297-309, 2017 | 37 | 2017 |
Global adaptation complicates the interpretation of genome scans for local adaptation TR Booker, S Yeaman, MC Whitlock Evolution Letters 5 (1), 4-15, 2021 | 36* | 2021 |
The immediate costs and long‐term benefits of assisted gene flow in large populations JA Grummer, TR Booker, R Matthey‐Doret, P Nietlisbach, AT Thomaz, ... Conservation biology 36 (4), e13911, 2022 | 32 | 2022 |
The WZA: A window‐based method for characterizing genotype–environment associations TR Booker, S Yeaman, JR Whiting, MC Whitlock Molecular Ecology Resources 24 (2), e13768, 2024 | 24 | 2024 |
How useful are genomic data for predicting maladaptation to future climate? BM Lind, R Candido‐Ribeiro, P Singh, M Lu, D Obreht Vidakovic, ... Global Change Biology 30 (4), e17227, 2024 | 18 | 2024 |
Using genetic relatedness to understand heterogeneous distributions of urban rat‐associated pathogens KA Byers, TR Booker, M Combs, CG Himsworth, J Munshi‐South, ... Evolutionary applications 14 (1), 198-209, 2021 | 15 | 2021 |
Inferring parameters of the distribution of fitness effects of new mutations when beneficial mutations are strongly advantageous and rare TR Booker G3: Genes, Genomes, Genetics 10 (7), 2317-2326, 2020 | 15 | 2020 |
Molecular evolution: breakthroughs and mysteries in Batesian mimicry T Booker, RW Ness, D Charlesworth Current Biology 25 (12), R506-R508, 2015 | 11 | 2015 |
Using genome scans to identify genes used repeatedly for adaptation TR Booker, S Yeaman, MC Whitlock Evolution 77 (3), 801-811, 2023 | 7 | 2023 |
Background selection under evolving recombination rates TR Booker, BA Payseur, A Tigano Proceedings of the Royal Society B 289 (1977), 20220782, 2022 | 7 | 2022 |
Haploid, diploid, and pooled exome capture recapitulate features of biology and paralogy in two non‐model tree species BM Lind, M Lu, D Obreht Vidakovic, P Singh, TR Booker, SN Aitken, ... Molecular Ecology Resources 22 (1), 225-238, 2022 | 4 | 2022 |
Core genes driving climate adaptation in plants S Yeaman, J Whiting, T Booker, C Rougeux, B Lind, P Singh, M Lu, ... | 3 | 2023 |
Disentangling the genetic consequences of demographic change JM Kreiner, TR Booker Molecular Ecology 32 (2), 278-280, 2023 | 2 | 2023 |
Selective sweeps influence diversity over large regions of the mouse genome TR Booker, BC Jackson, RJ Craig, B Charlesworth, PD Keightley bioRxiv, 2021.06. 10.447924, 2021 | 2 | 2021 |
Mosaic haplotypes underlie repeated adaptation to whole genome duplication in Arabidopsis lyrata and Arabidopsis arenosa M Bohutínská, E Petříková, TR Booker, J Vlček, G Šrámková, ... | 1 | 2023 |