Published December 31, 2017
| Version v1
Journal article
Restricted
The taxonomic placement of three fossil Fundulus species and the timing of divergence within the North American topminnows (Teleostei: Fundulidae)
Creators
Description
Ghedotti, Michael J., Davis, Matthew P. (2017): The taxonomic placement of three fossil Fundulus species and the timing of divergence within the North American topminnows (Teleostei: Fundulidae). Zootaxa 4250 (6): 577-586, DOI: 10.11646/zootaxa.4250.6.5
Files
Linked records
Additional details
References
- Abers, J.P. & Stewart, J.H. (1972) Geology and mineral deposits of Esmeralda County, Nevada. Nevada Bureau of Mines and Geology Bulletin, 78, 1-80.
- Bell, M.A. (1977) A Late Miocene marine threespine stickleback, Gasterosteus aculeatus aculeatus, and its zoogeographic and evolutionary significance. Copeia, 1977, 277-282.
- Bell, M.A. (1994) Paleobiology and evolution of threespine stickleback. In: Bell, M.A. & Foster, S.A. (Eds.), The Evolutionary Biology of the Threespine Stickleback. Oxford University Press, Oxford, pp. 428-471.
- Davis, M.P., Arratia, G.A. & Kaiser, T. (2013) The first fossil shellear and its implications for the evolution and divergence of the Kneriidae (Teleostei: Gonorynchiformes). In: Arratia, G.A., Schultze, H.P. & Wilson, M.V.H. (Eds.), Mesozoic Fishes F. Verlag Dr. F. Pfeil, Munchen, pp. 325-362.
- Davis, M.P., Sparks, J.S. & Smith, W.L. (2016) Repeated and Widespread Evolution of Bioluminescence in Marine Fishes. PLOS ONE, 11 (6), e0155154.
- Drummond, A. & Rambaut, A. (2007) BEAST: Bayesian evolutionary analysis by sampling trees. BMC Evolutionary Biology, 7, 214.
- https://doi.org/10.1186/1471-2148-7-214
- Eastman, C.R. (1917) Fossil fishes of the collection of the United States National Museum. Proceedings of the United States National Museum, 52, 235-304.
- Felsenstein, J. (1985) Confidence limits on phylogenies: An approach using a bootstrap. Evolution, 39, 783-791. https://doi.org/10.2307/2408678
- Ghedotti, M.J. & Davis, M.P. (2013) Phylogeny, classification, and evolution of salinity tolerance of the North American topminnows and killifishes, Family Fundulidae (Teleostei: Cyprinodontiformes). Fieldiana, Life and Earth Sciences, 7, 1- 65.
- https://doi.org/10.3158/2158-5520-12.7.1
- Ghedotti, M.J., Simons, A.M. & Davis, M.P. (2004) Morphology and phylogeny of the studfish clade, subgenus Xenisma (Teleostei, Cyprinodontiformes). Copeia, 2004, 53-61.
- Heath, T.A., Huelsenbeck, J.T. & Stadler, T. (2014) The fossilized birth-death process for coherent calibration of divergencetime estimates. Proceedings of the National Academy of Sciences USA, 111, 2957-2966. [E2957-E2966] https://doi.org/10.1073/pnas.1319091111
- Helmsttetter, A.J., Oaoadopulos, A.S.T., Igea, J., Van Dooren, T.J.M., Leroi, A.M. & Savolainen, V. (2016) Viviparity stimulates diversification in an order of fish. Nature Communications, 7, 11271. https://doi.org/10.1038/ncomms11271
- Hertwig, S.T. (2008) Phylogeny of the Cyprinodontiformes (Teleostei, Atherinomorpha): The contribution of cranial soft tissue characters. Zoologica Scripta, 37, 141-174.
- https://doi.org/10.1111/j.1463-6409.2007.00314.x
- Hibbard, C.W. & Dunkle, D.H. (1942) A new species of cyprinodontid fish from the Pliocene of Kansas. Kansas Geological Survey Bulletin, 41, 270-276.
- Hrbek, T. & Meyer, A. (2003) Closing of the Tethys Sea and the phylogeny of Eurasian killifishes (Cyprinodontiformes: Cyprinodontidae). Journal of Evolutionary Biology, 16, 17-36.
- https://doi.org/10.1046/j.1420-9101.2003.00475.x
- Ksepka, D.T., Balanoff, A.M., Bell, M.A. & Houseman, M.D. (2013) Fossil grebes from the Truckee Formation (Miocene) of Nevada and a new phylogenetic analysis of Podicipediformes (Aves). Paleontology, 56, 1149-1169. https://doi.org/10.1111/pala.12040
- Katoh, K., Misawa, K., Kuma, K. & Miyata, T. (2002) MAFFT: A novel method for rapid multiple sequence alignment based on the fast Fourier transformation. Nucleic Acids Research, 30, 3059-3066. https://doi.org/10.1093/nar/gkf436
- Lewis, P.O. (2001) A likelihood approach to estimating phylogeny with discrete morphological character data. Systematic Biology, 50, 913-925.
- Lugaski, T. (1977) Fundulus lariversi, a new Miocene fossil cyprinodont fish from Nevada. The Wassmann Journal of Biology, 35, 203-211.
- McMahan, C.D., Chakrabarty, P., Sparks, J.S., Smith, W.L. & Davis, M.P. (2013) Temporal Patterns of Diversification across Global Cichlid Biodiversity (Acanthomorpha:Cichlidae). PLoS ONE, 8 (8), e71162. https://doi.org/10.1371/journal.pone.0071162
- Miller, R.R. (1945) Four new species of fossil cyprinodont fishes from eastern California. Journal of the Washington Academy of Science, 35, 315-321.
- Posada, D. (2008) jModeltest: Phylogenetic model averaging. Molecular Biology and Evolution, 25, 1253-1256. https://doi.org/10.1093/molbev/msn083
- Robertson, G.M. (1943) Fundulus sternbergi, a Pliocene fish from Kansas. Journal of Paleontology, 17, 305-306.
- Silbermann, M.L. & McKee, E.H. (1972) A summary of radiometric age determination of Tertiary volcanic rocks from Nevada and eastern California, Part II - western Nevada. Isochron/West, 4, 7-28.
- Smith, C.L. (1962) Some Pliocene fishes from Kansas, Oklahoma, and Nebraska. Copeia, 1962, 505-520. https://doi.org/10.2307/1441172
- Smith, G.R., Dowling, T., Gobalet, K.W., Lugaski, T., Shiazawa, D. & Evans, R.P. (2002) Biogeography and timing of evolutionary events among Great Basin fishes. In: Hershler, R., Madsen, D.B. & Currey, D.R. (Eds.), Great Basin Aquatic Systems History. Smithsoniam Contributions to Earth Sciences, 33, 175-234.
- Smith, W.L., Chakrabarty, P. & Sparks, J.S. (2008) Phylogeny, taxonomy, and evolution of neotropical cichlids (Teleostei: Cichlidae: Cichlinae). Cladistics, 24, 625-641.
- https://doi.org/10.1111/j.1096-0031.2008.00210.x
- Stadler, T. (2010) Sampling-through-time in birth-death trees. Journal of Theoretical Biology, 267, 396-404. https://doi.org/10.1016/j.jtbi.2010.09.010
- Whitehead, A. (2010) The evolutionary radiation of diverse osmotolerant physiologies in killifish (Fundulus spp.). Evolution, 64, 2070-2085.
- Zwickl, D.J. (2006) Genetic algorithm approaches for the phylogenetic analysis of large biological sequence datasets under the maximum likelihood criterion. Unpublished Ph.D. thesis, University of Texas, Austin, 115 pp.