572
THOMAS L. STUBBS AND MICHAEL J. BENTON
Button, D. J., E. J. Rayfield, and P. M. Barrett. 2014. Cranial biomechanics underpins high sauropod diversity in resource- poor environments. Proceedings of the Royal Society of London B 281:20142114.
Chen, Z. Q., and M. J. Benton. 2012. The timing and pattern of biotic recovery following the end-Permian mass extinction. Nature Geoscience 5:375–383.
Cheng, L., X. H. Chen, Q. H. Shang, and X. C. Wu. 2014. A new marine reptile from the Triassic of China, with a highly specia- lized feeding adaptation. Naturwissenschaften 101:251–259.
Ciampaglio, C. N., M. Kemp, and D. W. McShea. 2001. Detecting changes in morphospace occupation patterns in the fossil record: characterization and analysis of measures of disparity. Paleo- biology 27:695–715.
Cleary, T. J., B. C. Moon, A. M. Dunhill, andM. J. Benton. 2015. The fossil record of ichthyosaurs, completeness metrics and sampling biases. Palaeontology 58:521–536.
Close, R. A., M. Friedman, G. T. Lloyd, and R. B. J. Benson. 2015. Evidence for a mid-Jurassic adaptive radiation in mammals. Current Biology 25:2137–2142.
Dick, D. G., and E.
E.Maxwell. 2015. The evolution and extinction of the ichthyosaurs from the perspective of quantitative ecospace modelling. Biology Letters 11:20150339.
Droser, M. L., D. J. Bottjer, and P.M. Sheehan. 1997. Evaluating the ecological architecture of major events in the Phanerozoic history of marine invertebrate life. Geology 25:167–170.
Erwin, D. H. 2007. Disparity: morphological pattern and developmental context. Palaeontology 50:57–73.
——. 2008. Extinction as the loss of evolutionary history. Proceed- ings of the National Academy of Sciences USA 105:11520–11527.
Everhart, M. J., S. A. Hageman, and B. L. Hoffman. 2010. Another Sternberg “fish-within-a-fish” discovery: first report of Ichthyo- dectes ctenodon (Teleostei; Ichthyodectiformes) with stomach contents. Transactions of the Kansas Academy of Science 113:197–205.
Finarelli, J. A., and J. J. Flynn. 2007. The evolution of encephaliza- tion in caniform carnivorans. Evolution 61:1758–1772.
Foote, M. 1993. Contributions of individual taxa to overall morphological disparity. Paleobiology 19:403–419.
——. 1997. The evolution of morphological diversity. Annual Review of Ecology and Systematics 28:129–152.
Friedman, M. 2009. Ecomorphological selectivity among marine teleost fishes during the end-Cretaceous extinction. Proceedings of the National Academy of Sciences USA 106:5218–5223.
——. 2012. Parallel evolutionary trajectories underlie the origin of giant suspension-feeding whales and bony fishes. Proceedings of the Royal Society of London B 279:944–951.
Friedman, M., and L. C. Sallan. 2012. Five hundred million years of extinction and recovery: a Phanerozoic survey of large‐scale diversity patterns in fishes. Palaeontology 55:707–742.
Fröbisch, N. B., J. Fröbisch, P.M. Sander, L. Schmitz, andO. Rieppel.
2013.Macropredatory ichthyosaur fromtheMiddle Triassic andthe origin of modern trophic networks. Proceedings of the National Academy of Sciences USA 110:1393–1397.
Gingerich, P. D. 2003. Land-to-sea transition of early whales: evolution of Eocene Archaeoceti (Cetacea) in relation to skeletal proportions and locomotion of living semiaquatic mammals. Paleobiology 29:429–454.
Gower, J. C.
1971.Ageneral coefficient of similarity and some of its properties. Biometrics 27:857–871.
Gradstein, F. M., J. G. Ogg, M. Schmitz, and G. Ogg. 2012. The geologic time scale 2012. Elsevier, Amsterdam.
Harmon, L. J., J. T. Weir, C. D. Brock, R. E. Glor, and W. Challenger. 2008. GEIGER: investigating evolutionary radiations. Bioinfor- matics 24:129–131.
Harmon, L. J., J. B. Losos, T. J.Davies, R. G. Gillespie, J. L. Gittleman, W. B. Jennings, K. H. Kozak, M. A. McPeek, F. Moreno-Roark,
T. J. Near, A. Purvis, R. E. Ricklefs, D. Schluter, J. A. Schulte II, O. Seehausen, B. L. Sidlauskas, O. Torres-Carvajal, J. T. Weir, and A. Ø. Mooers. 2010. Early bursts of body size and shape evolution are rare in comparative data. Evolution 64:2385–2396.
Hu, S. X., Q. Y. Zhang, Z. Q. Chen, C. Y. Zhou, T. Lü, T. Xie, W. Wen, J. Y. Huang, andM. J. Benton. 2011. The Luoping biota: exceptional preservation, and new evidence on the Triassic recovery from end-Permian mass extinction. Proceedings of the Royal Society of London B 278:2274–2282.
Hudson, J. D., D. M. Martill, and K. N. Page. 1991. Fossils of the Oxford Clay. Palaeontological Association Field Guide to Fossils 4. Wiley, London. Hughes, M., S. Gerber, andM. A.Wills. 2013. Clades reach highest morphological disparity early in their evolution. Proceedings of the National Academy of Sciences USA 110:13875–13879.
Ilin, A., and T. Raiko. 2010. Practical approaches to principal com- ponent analysis in the presence of missing values. Journal of Machine Learning Research 11:1957–2000.
Ingram, T., L. J. Harmon, and J. B. Shurin. 2012. When should we expect early bursts of trait evolution in comparative data? Pre- dictions from an evolutionary food web model. Journal of Evolutionary Biology 25:1902–1910.
Kelley, N. P., and N. D. Pyenson. 2015. Evolutionary innovation and ecology in marine tetrapods from the Triassic to the Anthropocene. Science 348:aaa3716.
Kelley, N. P.,
R.Motani, D.-Y. Jiang,O.Rieppel, and L. Schmitz. 2014. Selective extinction of Triassicmarine reptiles during long-term sea level changes illuminated by seawater strontium isotopes. Palaeo- geography, Palaeoclimatology, Palaeoecology 400:9–16.
Korn, D.,M. J. Hopkins, and S. A.Walton. 2013. Extinction space—a method for the quantification and classification of changes in morphospace across extinction boundaries. Evolution 67: 2795–2810.
Laurin,M. 2004. Evolution of body size, Cope’s rule and the origin of amniotes. Systematic Biology 53:594–622.
Liu, J., S. X. Hu, O. Rieppel, D.-Y. Jiang, M. J. Benton, N. P. Kelley, J. C. Aitchison, C. Zhou, W. Wen, J. Huang, T. Xie, and T. Lv. 2014. A gigantic nothosaur (Reptilia: Sauropterygia) from the Middle Triassic of SW China and its implication for the Triassic biotic recovery. Scientific Reports 4:7142.
Massare, J. A. 1987. Tooth morphology and prey preference of Mesozoic marine reptiles. Journal of Vertebrate Paleontology 7:121–137. Motani, R. 1997. Redescription of the dentition of Grippia longirostris (Ichthyosauria) with a comparison with Utatsusaurus hataii. Journal of Vertebrate Paleontology 17:39–44.
——. 2005. Evolution of fish-shaped reptiles (Reptilia: Ichthyopterygia) in their physical environments and constraints. Annual Review of Earth and Planetary Sciences 33:395–420.
Motani, R.,
X.H.Chen, D.-Y.Jiang,
L.Cheng, A.Tintori,and O. Rieppel. 2015a. Lunge feeding in early marine reptiles and fast evolution of marine tetrapod feeding guilds. ScientificReports 5:8900. Motani, R.,D.-Y. Jiang, G.-B. Chen, A. Tintori, O. Rieppel, C. Ji, and J. D. Huang. 2015b. A basal ichthyosauriform with a short snout from the Lower Triassic of China. Nature 517:485–488.
Navarro, N.
2003.MDA: aMatlab-based program formorphospace- disparity analysis. Computers and Geosciences 29:655–664. Neenan, J.M., C. Li,O. Rieppel, F. Bernardini, C. Tuniz, G. Muscio, and
T.MScheyer. 2014. Unique method of tooth replacement in durophagous placodont marine reptiles, with new data on the dentition of Chinese taxa. Journal of Anatomy 224:603–613. Nordén, K. K., C. J. Duffin, and M. J. Benton. 2015. A marine vertebrate fauna from the Late Triassic of Somerset, and a review of British placodonts. Proceedings of the Geologists’ Association. doi:10.1016/
j.pgeola.2015.07.001.
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