Chris G. Knight
Affiliations: | University of Manchester, Manchester, England, United Kingdom |
Area:
genotype-phenotype map, experimental evolutionGoogle:
"Chris Knight"Parents
Sign in to add mentorMichael Akam | research assistant | 1996-1996 | Cambridge (FlyTree) |
Armand Marie Leroi | grad student | 1997-2001 | Imperial College London |
Paul B. Rainey | post-doc | 2002-2005 | Oxford |
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Publications
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Krašovec R, Richards H, Gomez G, et al. (2019) Measuring Microbial Mutation Rates with the Fluctuation Assay. Journal of Visualized Experiments : Jove |
Gifford DR, Krašovec R, Aston E, et al. (2018) Environmental pleiotropy and demographic history direct adaptation under antibiotic selection. Heredity |
Krašovec R, Richards H, Gifford DR, et al. (2018) Opposing effects of final population density and stress on Escherichia coli mutation rate. The Isme Journal |
Aston E, Channon A, Belavkin RV, et al. (2017) Critical Mutation Rate has an Exponential Dependence on Population Size for Eukaryotic-length Genomes with Crossover. Scientific Reports. 7: 15519 |
Krašovec R, Richards H, Gifford DR, et al. (2017) Spontaneous mutation rate is a plastic trait associated with population density across domains of life. Plos Biology. 15: e2002731 |
Belavkin RV, Channon A, Aston E, et al. (2016) Monotonicity of fitness landscapes and mutation rate control. Journal of Mathematical Biology |
Knight C, Krasovec R, Belavkin R, et al. (2016) Critical Mutation Rate has an Exponential Dependence on Population Size for Eukaryotic-Length Genomes Artificial Life. 172-179 |
Krašovec R, Belavkin RV, Aston JA, et al. (2014) Mutation rate plasticity in rifampicin resistance depends on Escherichia coli cell-cell interactions. Nature Communications. 5: 3742 |
Aston E, Channon A, Day C, et al. (2013) Critical mutation rate has an exponential dependence on population size in haploid and diploid populations. Plos One. 8: e83438 |
Knight CG, Zhang XX, Gunn A, et al. (2010) Testing temperature-induced proteomic changes in the plant-associated bacterium Pseudomonas fluorescens SBW25. Environmental Microbiology Reports. 2: 396-402 |