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Testing sensory drive speciation in cichlid fish: linking light conditions to opsin expression, opsin genotype and female mate preference
Wright, D. S., van Eijk, R., Schuart, L., Seehausen, O., Groothuis, T. G. G., & Maan, M. E. (2020). Testing sensory drive speciation in cichlid fish: linking light conditions to opsin expression, opsin genotype and female mate preference. Journal of Evolutionary Biology, 33(4), 422-434. https://doi.org/10.1111/jeb.13577
Genomic insights into the vulnerability of sympatric whitefish species flocks
Feulner, P. G. D., & Seehausen, O. (2019). Genomic insights into the vulnerability of sympatric whitefish species flocks. Molecular Ecology, 28, 615-629. https://doi.org/10.1111/mec.14977
Visual adaptation and microhabitat choice in Lake Victoria cichlid fish
Mameri, D., van Kammen, C., Groothuis, T. G. G., Seehausen, O., & Maan, M. E. (2019). Visual adaptation and microhabitat choice in Lake Victoria cichlid fish. Royal Society Open Science, 6(3), 181876 (8 pp.). https://doi.org/10.1098/rsos.181876
Geographic variation in opsin expression does not align with opsin genotype in Lake Victoria cichlid populations
Wright, D. S., Meijer, R., Eijk, R., Vos, W., Seehausen, O., & Maan, M. E. (2019). Geographic variation in opsin expression does not align with opsin genotype in Lake Victoria cichlid populations. Ecology and Evolution, 9(15), 8676-8689. https://doi.org/10.1002/ece3.5411
Distinct colonization waves underlie the diversification of the freshwater sculpin (<i>Cottus gobio</i>) in the Central European Alpine region
Lucek, K., Keller, I., Nolte, A. W., & Seehausen, O. (2018). Distinct colonization waves underlie the diversification of the freshwater sculpin (Cottus gobio) in the Central European Alpine region. Journal of Evolutionary Biology, 31(9), 1254-1267. https://doi.org/10.1111/jeb.13339
Genomics of parallel ecological speciation in Lake Victoria cichlids
Meier, J. I., Marques, D. A., Wagner, C. E., Excoffier, L., & Seehausen, O. (2018). Genomics of parallel ecological speciation in Lake Victoria cichlids. Molecular Biology and Evolution, 35(6), 1489-1506. https://doi.org/10.1093/molbev/msy051
Ecosystem size matters: the dimensionality of intralacustrine diversification in Icelandic stickleback is predicted by lake size
Lucek, K., Kristjánsson, B. K., Skúlason, S., & Seehausen, O. (2016). Ecosystem size matters: the dimensionality of intralacustrine diversification in Icelandic stickleback is predicted by lake size. Ecology and Evolution, 6(15), 5256-5272. https://doi.org/10.1002/ece3.2239
Genomic landscape of early ecological speciation initiated by selection on nuptial colour
Marques, D. A., Lucek, K., Haesler, M. P., Feller, A. F., Meier, J. I., Wagner, C. E., … Seehausen, O. (2016). Genomic landscape of early ecological speciation initiated by selection on nuptial colour. Molecular Ecology, 1-18. https://doi.org/10.1111/mec.13774
Repeated and predictable patterns of ecotypic differentiation during a biological invasion: lake–stream divergence in parapatric Swiss stickleback
Lucek, K., Sivasundar, A., Roy, D., & Seehausen, O. (2013). Repeated and predictable patterns of ecotypic differentiation during a biological invasion: lake–stream divergence in parapatric Swiss stickleback. Journal of Evolutionary Biology, 26(12), 2691-2709. https://doi.org/10.1111/jeb.12267
Phenotypic divergence but not genetic distance predicts assortative mating among species of a cichlid fish radiation
Stelkens, R. B., & Seehausen, O. (2009). Phenotypic divergence but not genetic distance predicts assortative mating among species of a cichlid fish radiation. Journal of Evolutionary Biology, 22(8), 1679-1694. https://doi.org/10.1111/j.1420-9101.2009.01777.x
Divergence along a steep ecological gradient in Lake whitefish (<I>Coregonus</I> sp.)
Vonlanthen, P., Roy, D., Hudson, A. G., Largiadèr, C. R., Bittner, D., & Seehausen, O. (2009). Divergence along a steep ecological gradient in Lake whitefish (Coregonus sp.). Journal of Evolutionary Biology, 22(3), 498-514. https://doi.org/10.1111/j.1420-9101.2008.01670.x
Intergenomic epistasis causes asynchronous hatch times in whitefish hybrids, but only when parental ecotypes differ
Woods, P. J., Müller, R., & Seehausen, O. (2009). Intergenomic epistasis causes asynchronous hatch times in whitefish hybrids, but only when parental ecotypes differ. Journal of Evolutionary Biology, 22(11), 2305-2319. https://doi.org/10.1111/j.1420-9101.2009.01846.x