Adaptive evolution and explosive speciation: the cichlid fish model (original) (raw)
References
Darwin, C. On the Origins of Species by Means of Natural Selection or The Preservation of Favoured Races in the Struggle for Life (John Murray, London, 1859). Book Google Scholar
Mayr, E. Animal Species and Evolution (Belknap Press, Cambridge, Massachusetts, 1963). Book Google Scholar
Rice, W. R. in Endless Forms: Species and Speciation (eds Howard, D. J. & Berlocher, S. H.) 261–270 (Oxford University Press, New York, 1998). Google Scholar
Lynch, M. & Force, A. G. The origin of interspecific genomic incompatability via gene duplication. Am. Nat.156, 590–605 (2000). ArticlePubMed Google Scholar
Civetta, A. & Singh, R. S. Broad-sense sexual selection, sex gene pool evolution, and speciation. Genome42, 1033–1041 (1999). ArticleCASPubMed Google Scholar
Schliewen, U. K., Tautz, D. & Paabo, S. Sympatric speciation suggested by monophyly of crater lake cichlids. Nature368, 629–632 (1994). ArticleCASPubMed Google Scholar
McKaye, K. R. et al. Behavioral, morphological and genetic evidence of divergence of the Midas cichlid species complex in two Nicaraguan crater lakes. Cuadernos de la Investigación de la UCA12, 19–47 (2002). Google Scholar
Turner, G. F., Seehausen, O., Knight, M. E., Allender, C. J. & Robinson, R. L. How many species of cichlid fishes are there in African lakes? Mol. Ecol.10, 793–806 (2001). ArticleCASPubMed Google Scholar
Genner, M. J. et al. How does the taxonomic status of allopatric populations influence species richness with African cichlid fish assemblages? J. Biogeogr.31, 93–102 (2004). Article Google Scholar
Danley, P. D., & Kocher, T. D. Speciation in rapidly diverging systems: lessons from Lake Malawi. Mol. Ecol.10, 1075–1086 (2001). ArticleCASPubMed Google Scholar
Streelman, J. T. & Danley, P. D. The stages of vertebrate evolutionary radiation. Trends Ecol. Evol.18, 126–131 (2003). Article Google Scholar
Markert, J. A., Danley, P. D. & Arnegard, M. E. New markers for new species: microsatellite loci and the East African cichlids. Trends Ecol. Evol.16, 100–107 (2001). ArticlePubMed Google Scholar
van Oppen, M. J. H. et al. Unusually fine-scale genetic structuring found in rapidly speciating Malawi cichlid fishes. Proc. R. Soc. Lond. B264, 1803–1812 (1997). Article Google Scholar
Arnegard, M. E. et al. Population structure and colour variation of the cichlid fish Labeotropheus fuelleborni Ahl along a recently formed achipelago of rocky habitat patches in southern Lake Malawi. Proc. R. Soc. Lond. B266, 119–130 (1999). Article Google Scholar
Knight, M. E., Turner, G. F., van Oppen, M. J. H., Rico, C & Hewitt, G. M. Microsatellite DNA and sex-biased dispersal among Lake Malawi cichlids. Mol. Ecol.8, 1521–1527 (1999). ArticleCASPubMed Google Scholar
Danley, P. D., Markert, J. A., Arnegard, M. E. & Kocher, T. D. Divergence with gene flow in the rock-dwelling cichlids of Lake Malawi. Evol. Int. J. Org. Evol.54, 1725–1737 (2000). ArticleCAS Google Scholar
Fryer, G. & Iles, T. D. The Cichlid Fishes of the Great Lakes of Africa (Oliver & Boyd, Edinburgh, 1972). Google Scholar
Schliewen, U. et al. Genetic and ecological divergence of a monophyletic cichlid species pair under fully sympatric conditions in Lake Ejagham, Cameroon. Mol. Ecol.10, 1471–1488 (2001). Conclusive evidence for the sympatric speciation of cichlids within the confines of a tiny crater lake. ArticleCASPubMed Google Scholar
Maynard Smith, J. Sympatric speciation. Am. Nat.100, 637–650 (1966). Article Google Scholar
Felsenstein, J. Skepticism towards Santa Rosalia, or why are there so few kinds of animals? Evolution35, 124–138 (1981). ArticlePubMed Google Scholar
Kondrashov, A. S. & Kondrashov, F. A. Interactions among quantitative traits in the course of sympatric speciation. Nature400, 351–354 (1999). ArticleCASPubMed Google Scholar
Dieckmann, U. & Doebeli, M. On the origin of species by sympatric speciation. Nature400, 354–357 (1999). ArticleCASPubMed Google Scholar
Dominey, W. J. in Evolution of Fish Species Flocks (eds Echelle, A. A. & Kornfield, I.) 231–250 (Univ. Maine Press, Orono, 1984). Google Scholar
McKaye, K. R. in Cichlid Fishes: Behavior, Ecology and Evolution (ed. Keenleyside, M. H. A.) 241–257 (Chapman and Hall, London, 1991). Google Scholar
Turner, G. F. & Burrows, M. T. A model of sympatric speciation by sexual selection. Proc. R. Soc. Lond. B260, 287–292 (1995). Article Google Scholar
Payne, R. J. H. & Krakauer, D. C. Sexual selection, space and speciation. Evolution51, 1–9 (1997). ArticlePubMed Google Scholar
Higashi, M., Takimoto, G. & Yamamura, N. Sympatric speciation by sexual selection. Nature402, 523–526 (1999). ArticleCASPubMed Google Scholar
van Doorn, G. S., Noest, A. J. & Hogeweg, P. Sympatric speciation and extinction driven by environment dependent sexual selection. Proc. R. Soc. Lond. B265, 1915–1919 (1998). Article Google Scholar
van Oppen, M. J. H. et al. Assortative mating among rock-dwelling cichlid fishes supports high estimates of species richness from Lake Malawi. Mol. Ecol.7, 991–1001 (1998). Article Google Scholar
Knight, M. E., Turner, G. F., Rico, C., van Oppen, M. J. H. & Hewitt, G. M. Microsatellite paternity analysis on captive Lake Malawi cichlids supports reproductive isolation by direct mate choice. Mol. Ecol.7, 1605–1610 (1998). A laboratory experiment that demonstrates complete assortative mating of three sympatric species in the absence of any microhabitat or environmental cues. Article Google Scholar
Seehausen, O. & van Alphen, J. J. M. The effect of male coloration on female mate choice in closely related Lake Victoria cichlids (Haplochromis nyererei complex). Behav. Ecol. Sociobiol.42, 1–8 (1998). Article Google Scholar
Knight, M. E. & Turner, G. F. Reproductive isolation among closely related Lake Malawi cichlids: can males recognize conspecific females by visual cues? Anim. Behav.58, 761–768 (1999). ArticleCASPubMed Google Scholar
Hurst, L. D., Atlan, A. & Bengtsson, B. O. Genetic conflicts. Q. Rev. Biol.71, 317–364 (1996). ArticleCASPubMed Google Scholar
Rice, W. R. & Chippindale, A. K. The evolution of hybrid infertility: perpetual coevolution between gender-specific and sexually antagonistic genes. Genetica116, 179–188 (2002). ArticleCASPubMed Google Scholar
Palumbi, S. R. in Endless Forms: Species and Speciation (eds Howard, D. J. & Berlocher, S. H.) 271–278 (Oxford Univ. Press, New York, 1998). Google Scholar
Werren, J. H. & Beukeboom, L. W. Sex determination, sex ratios, and genetic conflict. Annu. Rev. Ecol. Syst.29, 233–261 (1998) Article Google Scholar
Werren, J. H. & Hatcher, M. J. Maternal–zygotic gene conflict over sex deterimination: effects of inbreeding. Genetics155, 1469–1479 (2000). ArticleCASPubMedPubMed Central Google Scholar
Seehausen, O., van Alphen, J. J. M. & Lande, R. Color polymorphism and sex ratio distortion in a cichlid fish as an incipient stage in sympatric speciation by sexual selection. Ecol. Lett.2, 367–378 (1999). Article Google Scholar
Lande, R., Seehausen, O. & van Alphen, J. J. M. Mechanisms of rapid sympatric speciation by sex reversal and sexual selection in cichlid fish. Genetica112-113, 435–443 (2001). Results from crosses among Lake Victoria cichlids stimulate new models of speciation that involve the evolution of colour patterns and the sex-determining genes. ArticleCASPubMed Google Scholar
Kocher, T. D., Lee, W. J., Sobolewska, H., Penman, D. & McAndrew, B. A genetic linkage map of a cichlid fish, the tilapia (Oreochromis niloticus). Genetics148, 1225–1232 (1998). ArticleCASPubMedPubMed Central Google Scholar
Albertson, R. C., Streelman, J. T. & Kocher, T. D. Directional selection has shaped the oral jaws of Lake Malawi cichlid fishes. Proc. Natl Acad. Sci. USA100, 5252–5257 (2003). Mapping of quantitative trait loci for jaw and tooth morphology reveals the imprint of consistent directional selection on the trophic apparatus. ArticleCASPubMedPubMed Central Google Scholar
Albertson, R. C., Streelman, J. T. & Kocher, T. D. Genetic basis of adaptive shape differences in the cichlid head. J. Hered.94, 291–301 (2003). ArticleCASPubMed Google Scholar
Wilson, J. & Tucker, A. S. Fgf and Bmp signals repress the expression of Bapx1 in the mandibular mesenchyme and control the position of the developing jaw joint. Dev. Biol.266, 138–150 (2004). ArticleCASPubMed Google Scholar
Terai, Y., Morikawa, N. & Okada, N. The evolution of the pro-domain of bone morphogenetic protein 4 (Bmp4) in an explosively speciated lineage of East African cichlid fishes. Mol. Biol. Evol.19, 1628–1632 (2002). ArticlePubMed Google Scholar
Streelman, J. T., Webb, J. F., Albertson, R. C. & Kocher, T. D. The cusp of evolution and development: a model of cichlid tooth shape diversity. Evol. Devel.5, 600–608 (2003). ArticleCAS Google Scholar
Couldridge, V. C. K. & Alexander, G. J. Color patterns and species recognition in four closely related species of Lake Malawi cichlid. Behav. Ecol.13, 59–64 (2002). Article Google Scholar
Streelman, J. T., Albertson, R. C. & Kocher, T. D. Genome mapping of the orange blotch color pattern in cichlid fishes. Mol. Ecol.12, 2465–2471 (2003). Comparative mapping among fish species identified candidate genes for the OB polymorphism that is common among species from lakes Malawi and Victoria. ArticleCASPubMed Google Scholar
Terai, Y., Morikawa, N., Kawakami, K. & Okada, N. Accelerated evolution of the surface amino acids in the WD-repeat domain encoded by the hagoromo gene in an explosively speciated lineage of East African cichlid fishes. Mol. Biol. Evol.19, 574–578 (2002). ArticleCASPubMed Google Scholar
Terai, Y., Morikawa, N., Kawakami, K. & Okada, N. The complexity of alternative splicing of hagoromo mRNAs is increased in an explosively speciated lineage in East African cichlids. Proc. Natl Acad. Sci. USA100, 12798–12803 (2003). ArticleCASPubMedPubMed Central Google Scholar
Carleton, K. L., Harosi, F. I. & Kocher, T. D. Visual pigments of African cichlid fishes: Evidence for ultraviolet vision from microspectrophotometry and DNA sequences. Vision Res.40, 879–890 (2000). ArticleCASPubMed Google Scholar
Carleton, K. L. & Kocher, T. D. Cone opsin genes of African cichlid fishes: tuning spectral sensitivity by differential gene expression. Mol. Biol. Evol.18, 1540–1550 (2001). Expression analysis reveals the genetic basis for the dramatic differences in visual sensitivity among Lake Malawi cichlids. ArticleCASPubMed Google Scholar
Terai, Y., Mayer, W. E., Klein, J., Tichy, H. & Okada, N. The effect of selection on a long wavelength-sensitive (LWS) opsin gene of Lake Victoria cichlid fishes. Proc. Natl Acad. Sci. USA99, 15501–15506 (2002). ArticleCASPubMedPubMed Central Google Scholar
Sugawara, T., Terai, Y. & Okada, N. Natural selection of the rhodopsin gene during the adaptive radiation of East African Great Lakes cichlid fishes. Mol. Biol. Evol.19, 1807–1811 (2002). ArticleCASPubMed Google Scholar
Seehausen, O., van Alphen, J. J. M. & Witte, F. Cichlid fish diversity threatened by eutrophication that curbs sexual selection. Science277, 1808–1811 (1997). ArticleCAS Google Scholar
Feder, M. E., & Mitchell-Olds, T. Evolutionary and ecological functional genomics. Nature Rev. Genet.4, 649–655 (2003). ArticleCAS Google Scholar
Nachman, M. W., Hoekstra, H. E., D'Agostino, S. L. The genetic basis of adaptive melanism in pocket mice. Proc. Natl Acad. Sci. USA100, 5268–5273 (2003). ArticleCASPubMedPubMed Central Google Scholar
Peichel, C. L. et al. The genetic architecture of divergence between threespine stickleback species. Nature414, 901–905 (2001). ArticleCASPubMed Google Scholar
Thorgaard, G. H. et al. Status and opportunities for genomics research with rainbow trout. Comp. Biochem. Physiol. B, Biochem. Mol. Biol.133, 609–646 (2002). Article Google Scholar
Yamamoto, Y., Espinasa, L, Stock, D. W. & Jeffery, W. R. Development and evolution of craniofacial patterning is mediated by eye-dependent and-independent processes in the cavefish Astyanax. Evol. Dev.5, 435–446 (2003). ArticlePubMed Google Scholar
Gavrilets, S. Perspective: models of speciation: what have we learned in 40 years? Evolution57, 2197–2215 (2003). ArticlePubMed Google Scholar
Hey, J., Won, Y. -J., Sivasundar, A., Nielsen, R. & Markert, J. A. Using nuclear haplotypes with microsatellites to study gene flow between recently separated populations. Mol. Ecol. (in the press). A novel analysis of nuclear haplotypes is used to estimate population genetic parameters during speciation of Lake Malawi cichlids.
Allender, C. J., Seehausen, O., Knight, M. E., Turner, G. F. & Maclean, N. Divergent selection during speciation of Lake Malawi cichlid fishes inferred from parallel radiations in nuptial coloration. Proc. Natl Acad. Sci. USA100, 14074–14079 (2003). A phylogeny based on amplified restriction fragment polymorphisms demonstrates the repeated parallel evolution of male colour patterns in Lake Malawi. ArticleCASPubMedPubMed Central Google Scholar
Templeton, A. R. Mechanisms of speciation — a population genetic approach. Annu. Rev. Ecol. Syst.12, 23–48 (1981). Article Google Scholar
Panhuis, T. M., Butlin, R., Zuk, M. & Tregenza, T. Sexual selection and speciation. Trends Ecol. Evol.16, 364–371 (2001). ArticlePubMed Google Scholar
Meyer, A. Phylogenetic relationships and evolutionary processes in East African cichlid fishes. Trends Ecol. Evol.8, 279–284 (1993). ArticleCASPubMed Google Scholar
Takahashi, K., Terai, T., Nishida, M. & Okada, N. Phylogenetic relationships and ancient incomplete lineage sorting among cichlid fishes in Lake Tanganyika as revealed by analysis of the insertion of retroposons. Mol. Biol. Evol.18, 2057–2066 (2001). Unique insertions of retroposons are used to reconstruct the history of Tanganyikan cichlids, and reveal the incomplete fixation of alleles during speciation in the early history of the lake. ArticleCASPubMed Google Scholar
Salzburger, W., Meyer, A., Baric, S., Verheyen, E. & Sturmbauer, C. Phylogeny of the Lake Tanganyika cichlid species flock and its relationship to the Central and East African haplochromine cichlid fish faunas. Syst. Biol.51, 113–135 (2002). One of the most complete analyses of mitochondrial DNA sequences to reconstruct the history of the East African radiations. ArticlePubMed Google Scholar
Meyer, A., Kocher, T. D., Basasibwaki, P. & Wilson, A. C. Monophyletic origin of Lake Victoria cichlid fishes suggested by mitochondrial DNA sequences. Nature347, 550–553 (1990). ArticleCASPubMed Google Scholar
Verheyen, E., Salzburger, W., Snoeks, J. & Meyer, A. Origin of the superflock of cichlid fishes from Lake Victoria, East Africa. Science300, 325–329 (2003). ArticleCASPubMed Google Scholar
Moran, P. & Kornfield, I. Retention of an ancestral polymorphism in the mbuna species flock (Teleostei: Cichlidae) of Lake Malawi. Mol. Biol. Evol.10, 1015–1029 (1993). CAS Google Scholar
Nagl, S., Tichy, H., Mayer, W. E., Takahata, N. & Klein, J. Persistence of neutral polymorphisms in Lake Victoria cichlid fish. Proc. Natl Acad. Sci. USA95, 14238–14243 (1998). ArticleCASPubMedPubMed Central Google Scholar
Figueroa, F. et al. Mhc class II B gene evolution in East African cichlid fishes. Immunogenetics51, 556–575 (2000). ArticleCASPubMed Google Scholar
Albertson, R. C., Markert, J. A., Danley, P. D. & Kocher, T. D. Phylogeny of a rapidly evolving clade: the cichlid fishes of Lake Malawi, East Africa. Proc. Natl Acad. Sci. USA96, 5107–5110.
Seehausen, O. et al. Nuclear markers reveal unexpected genetic variation and a Congolese/Nilotic origin of the Lake Victoria cichlid species flock. Proc. R. Soc. Lond. B270, 129–137 (2003). Article Google Scholar
Lee, B. -Y., Penman, D. J. & Kocher, T. D. Identification of a sex-determining region in Nile tilapia (Oreochromis niloticus) using bulked segregant analysis. Anim. Genet.34, 379–383.
Lee, B. -Y., Hulata, G. & Kocher, T. D. Two unlinked loci controlling the sex of blue tilapia (Oreochromis aureus). Heredity (in the press).