Carolin Kosiol, Ph.D.
Affiliations: | Institute of Population Genetics | Vetmeduni Vienna |
Area:
Phylogeny, Population Genetics, Experimental EvolutionGoogle:
"Carolin Kosiol"Children
Sign in to add traineeAgnes Jonas | grad student | 2012- | Vetmeduni Vienna |
Dominik Schrempf | grad student | 2013- | Vetmeduni Vienna |
Carolina Barata | grad student | 2017- | University of St Andrews |
Nicola De Maio | grad student | 2009-2013 | Vetmeduni Vienna |
Rui Carlos Borges | post-doc | (Evolution Tree) |
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Publications
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Barata C, Snook RR, Ritchie MG, et al. (2023) Selection on the Fly: Short-Term Adaptation to an Altered Sexual Selection Regime in Drosophila pseudoobscura. Genome Biology and Evolution. 15 |
Barata C, Borges R, Kosiol C. (2022) Bait-ER: A Bayesian method to detect targets of selection in Evolve-and-Resequence experiments. Journal of Evolutionary Biology. 36: 29-44 |
Borges R, Boussau B, Szöllősi GJ, et al. (2022) Nucleotide Usage Biases Distort Inferences of the Species Tree. Genome Biology and Evolution. 14 |
Borges R, Kosiol C. (2019) Consistency and identifiability of the polymorphism-aware phylogenetic models. Journal of Theoretical Biology. 110074 |
Kosiol C, Anisimova M. (2019) Selection Acting on Genomes. Methods in Molecular Biology (Clifton, N.J.). 1910: 373-397 |
Borges R, Szöllősi G, Kosiol C. (2019) Quantifying GC-Biased Gene Conversion in Great Ape Genomes Using Polymorphism-Aware Models. Genetics |
Rogers J, Raveendran M, Harris RA, et al. (2019) The comparative genomics and complex population history of baboons. Science Advances. 5: eaau6947 |
Bergman J, Schrempf D, Kosiol C, et al. (2017) Inference in population genetics using forward and backward, discrete and continuous time processes. Journal of Theoretical Biology. 439: 166-180 |
Bertl J, Ewing G, Kosiol C, et al. (2017) Approximate maximum likelihood estimation for population genetic inference. Statistical Applications in Genetics and Molecular Biology |
Balao F, Trucchi E, Wolfe T, et al. (2017) Adaptive sequence evolution is driven by biotic stress in a pair of orchid species (Dactylorhiza) with distinct ecological optima. Molecular Ecology |