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Tytuł artykułu

Cranial morphology of the Plio-Pleistocene giant madtsoiid snake Wonambi naracoortensis

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Abstrakty

EN
New material and additional morphological details of a rare and phylogenetically significant large fossil snake, Wonambi naracoortensis Smith, 1976, are described from Pleistocene and Pliocene cave deposits in southern South Australia. The new data refute some previous interpretations of the morphology of this species, and have implications for the phylogenetic position of Wonambi relative to extant snakes and other fossils, including other Madtsoiidae. The nature of contacts among palatal, braincase, snout, and mandibular elements imply similar functional attributes to those of extant anilioid snakes: maxillae from multiple individuals show corrugated contact surfaces for the prefrontal, implying a tight suture; structures on the anterior and medial surfaces of the palatine choanal process are interpreted as forming extensive contacts with the vomer and parasphenoid; and the distinctly bounded facets on the basipterygoid processes and pterygoid imply little or no capacity for anteroposterior sliding of the palatopterygoid arch, hence absence of the macrostomatan “pterygoid walk”. On the frontal, interolfactory pillars were either absent or very slender, and a deep, sculptured contact surface for the nasal implies a prokinetic joint was also absent. Margins of the frontal and parietal indicate broad entry of the sphenoid into the ophthalmic fenestra, as in Dinilysia. Similarity of elements and features of the braincase (trigeminal foramen, ear region, and basipterygoid processes) with both lizards and extant snakes show that differences between snakes and other squamates have sometimes been overstated. The case for macrostomatan affinities of Wonambi is not supported by new evidence.

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-

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Tom

50

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1

Opis fizyczny

p.139-180,fig.,ref.

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autor
  • The University of Adelaide, Adelaide, SA 5000, Australia

Bibliografia

  • Andrews, C.W. 1901. Preliminary note on some recently discovered extinct vertebrates from Egypt (Part II). Geological Magazine 8: 434–444.
  • Archer, M. 1972. Phascolarctos(Marsupialia, Vombatoidea) and an associated fossil fauna from Koala Cave near Yanchep, Western Australia. Helictite 10: 49–59.
  • Archer, M., Hand, S.J., and Godthelp, H. 1991. Riversleigh, the Story of Animals in Ancient Rainforests of Inland Australia. 264 pp. A.H. and A.W. Reed, Sydney.
  • Auffenberg, W. 1959. Anomalophis bolcensis(Massalongo), a new genus of fossil snake from the Italian Eocene. Breviora, Museum of Comparative Zoology 114: 1–16.
  • Bahl, K.N. 1938. Skull of Varanus monitor (Linn.). Records of the Indian Museum, Journal of Indian Zoology 39: 133–174.
  • Barrie, D.J. 1990. Skull elements and associated remains of the Pleistocene boid snake Wonambi naracoortensis. Memoirs of the Queensland Museum 28: 139–151.
  • Barrie, D.J. 1997. Climatic indicators within Henschke Fossil Cave System, Naracoorte, South Australia. Quaternary Australasia 15 (2): online at http://wwwrses.anu.edu.au/enproc/AQUADATA/AQUA/QA/1997_15_2/15_2_p1.html
  • Bellairs, A. d’Albini and Kamal, A.M. 1981. The chondrocranium and the development of the skull of Recent reptiles. In: C. Gans and T.S. Parson (eds.), Biology of the Reptilia. Vol. 11, 1–263. Academic Press, New York.
  • Borsuk−Białynicka, M. 1984. Anguimorphans and related lizards from the Late Cretaceous of the Gobi Desert, Mongolia. Paleontologia Polonica 46: 5–105.
  • Boulenger, G.A. 1885.Catalogue of the Lizards in the British Museum (Natural History). Vol. 2. xiii + 497 pp (second edition). London.
  • Brock, G.T. 1929. On the development of the skull of Leptodeira hotamboeia. Quarterly Journal of the Microscopy Society 73: 289–334.
  • Brongniart, A. 1800. Essai d’une classification naturelle des reptiles, 1ère partie. Bulletin des Sciences du Société Philomathique de Paris 1800 (35): 81–82.
  • Bryant, H.N. and Russell, A.P. 1992. The role of phylogenetic analysis in the inference of unpreserved attributes of extinct taxa. Philosophical Transactions of the Royal Society of London. Series B (Biological Sciences) 337: 405–418.
  • Caldwell, M.W. 2000. On the aquatic squamate Dolichosaurus longicollis Owen, 1850 (Cenomanian, Upper Cretaceous), and the evolution of elongate necks in squamates. Journal of Vertebrate Paleontology 20: 720–735.
  • Caldwell, M.W., and Albino, A. 2002. Exceptionally preserved skeletons of the Cretaceous snake Dinilysia patagonica Woodward, 1901. Journal of Vertebrate Paleontology 22: 861–866.
  • Cope, E.D. 1869. On the reptilian orders Pythonomorpha and Streptosauria. Proceedings of the Boston Society of Natural History 12: 250–266.
  • Cundall, D. 1995. Feeding behaviour in Cylindrophis and its bearing on the evolution of alethinophidian snakes. Journal of Zoology, London 237: 353–376.
  • Cundall, D. and Irish, F.J. 1989. The function of the intramaxillary joint in the Round Island boa, Casarea dussumieri. Journal of Zoology, London 217: 569–598.
  • Cundall, D. and Rossman, D.A. 1993. Cephalic anatomy of the rare Indonesian snake Anomochilus weberi. Zoological Journal of the Linnean Society 109: 235–273.
  • Cundall D. and Shardo, J.D. 1995. Rhinokinetic snout of thamnophiine snakes. Journal of Morphology 225: 31–50.
  • Cundall, D., Wallach, V., and Rossman, D.A. 1993. The systematic relationships of the snake genus Anomochilus. Zoological Journal of the Linnean Society 109: 275–299.
  • de Beer, G.R. 1937. The Development of the Vertebrate Skull. 552 pp. Oxford University Press, Oxford.
  • Deufel, A. and Cundall, D. 2003. Feeding of Atractaspis (Serpentes: Atractaspididae): A study in conflicting functional constraints. Zoology 106: 43–61.
  • Estes, R., De Queiroz, K., and Gauthier, J.A. 1988. Phylogenetic relationships within Squamata. In: R. Estes and G. Pregill (eds.), Phylogenetic Relationships of the Lizard Families, 119–281. Stanford University Press, Stanford.
  • Estes, R., Frazzetta, T.H., and Williams, E.E. 1970. Studies on the fossil snake Dinilysia patagonica Woodward: Part 1. Cranial morphology. Bulletin of the Museum of Comparative Zoology, Harvard 140: 25–74.
  • Frazzetta, T.H. 1966. Studies on the morphology and function of the skull in the Boidae (Serpentes), Part II. Morphology and function of the jaw apparatus in Python sebae and Python molurus. Journal of Morphology 118: 217–296.
  • Frazzetta, T.H. 1970. Studies on the fossil snake Dinilysia patagonica Woodward. II. Jaw machinery in the earliest snakes. Forma et Functio 3: 205–221.
  • Frazzetta, T.H. 1999. Adaptations and significance of the cranial feeding apparatus of the sunbeam snake (Xenopeltis unicolor). Part 1. Anatomy of the skull. Journal of Morphology 239: 27–43.
  • Gmelin, S.G. 1789. In: C. Linnaeus, Systema naturae per regna tria naturae, secundum classes, ordines, genera, species, cum characteribus, differentiis, synonymis, locis, Vol. 1 (3).Editio decima tertia, aucta, reformata, 1033–1516. Georg. Emanuel Beer, Leipzig.
  • Greer, A.E. 1985. The relationships of the lizard genera Anelytropsis and Dibamus. Journal of Herpetology 19: 116–156.
  • Greer, A.E. 1997. The Biology and Evolution of Australian Snakes. 358 pp. Surrey Beatty & Sons, Sydney.
  • Gray, J.E. 1842. Synopsis of the species of prehensile−tailed snakes, or family Boidae. Zoological Miscellany, London 2: 41–46.
  • Haas, G. 1964. Anatomical observations on the head of Liotyphlops albirostris (Typhlopidae, Ophidia). Acta Zoologica 45: 1–62.
  • Haas, G. 1968. Anatomical observations on the head of Anomalepis aspinosus (Typhlopidae, Ophidia). Acta Zoologica 49: 63–139.
  • Haas, G. 1973. Muscles of the jaws and associated structures in the Rhynchocephalia and Squamata. In: C. Gans and T.S. Parson (eds.), Biology of the Reptilia 4, Morphology D, 285–490. Academic Press, London.
  • Haas, G. 1979. On a new snakelike reptile from the lower Cenomanian of ‘Ein Jabrud, near Jerusalem. Bulletin du Muséum national d’Histoire naturelle, Paris, C (4) 1: 51–64.
  • Haas, G. 1980a. Pachyrhachis problematicus Haas, snakelike reptile from the lower Cenomanian: ventral view of the skull. Bulletin du Muséum national d’Histoire naturelle, Paris (4) 2: 87–104.
  • Haas, G. 1980b. Remarks on a new ophiomorph reptile from the lower Cenomanian of ‘Ein Jabrud, Israel. In: L.L. Jacobs (ed.), Aspects of Vertebrate History, 177–192. Museum of Northern Arizona Press, Flagstaff.
  • Haluska, F. and Alberch, P. 1983. The cranial development of Elaphe obsoleta (Ophidia, Colubridae). Journal of Morphology 178: 37–55.
  • Hennig, W. 1966. Phylogenetic Systematics. 263 pp. University of Illinois Press, Urbana.
  • Hoffstetter, R. 1939. Contribution à l’étude des Elapidae actuels et fossiles et de l’ostéologie des ophidiens. Archives du Muséum d’Histoire naturelle de Lyon 15: 1–78.
  • Hoffstetter, R. 1960. Un dentaire de Madtsoia (serpent géant du Paléocene de Patagonia). Bulletin du Muséum national d’Histoire naturelle, Paris (2) 31: 379–386.
  • Hoffstetter, R. 1961. Nouveaux restes d’un serpent boïdé (Madtsoia madagascariensis nov. sp.) dans le Crétacé supérieure de Madagascar. Bulletin du Muséum national d’Histoire naturelle, Paris (2) 33: 152–160.
  • Hoffstetter, R. and Gasc, J.P. 1969. Vertebrae and ribs of modern reptiles. In: C. Gans, A. d’Albini Bellairs, and T.S. Parsons (eds.), Biology of the Reptilia. Vol. 1, 201–310. Academic Press, London and New York.
  • Hoffstetter, R. and Gayrard, Y. 1965. Observations sur l’ostéologie et la classification des Acrochordidae (Serpentes). Bulletin du Muséum national d’Histoire naturelle, Paris (2) 36: 677–696.
  • Holman, J.A. and Case, G.R. 1992. A puzzling new snake (Reptilia: Serpentes) from the Late Paleocene of Mississippi. Annals of Carnegie Museum 61: 197–205.
  • Irish, F.J. 1989. The role of heterochrony in the origin of a novel Bauplan: evolution of the ophidian skull. Geobios special memoir 12: 227–233.
  • Janensch, W. 1906. Über Archaeophis proavus Mass., eine Schlange aus dem Eocän des Monte Bolca. Beiträge zur Paläontologie und Geologie Österreich−Ungarns und des Orients 19: 1–33.
  • Kamal, A.M. 1971. On the fissura metotica in Squamata. Bulletin of the Zoological Society of Egypt 23: 53–57.
  • Kluge, A.G. 1991. Boine snake phylogeny and research cycles. Miscellaneous Publications, Museum of Zoology, University of Michigan 178: 1–58.
  • Kluge, A.G. 1993a. Calabaria and the phylogeny of erycine snakes. Zoological Journal of the Linnean Society 107: 293–351.
  • Kluge, A.G. 1993b. Aspidites and the phylogeny of pythonine snakes. Records of the Australian Museum Supplement 19: 1–77.
  • Kluge, A.G. 2004. The repugnant and the mature in phylogenetic inference: atemporal similarity and historical identity. Cladistics 19: 356–368.
  • Laurenti, J.N. 1768. Austriaci Viennensis specimen medicum, exhibens synopsin reptilium emendatam cum experimentis circa Venena et antidota reptilium Austriacorum quod authoritate et consensu. 214 pp. Joannis Thomae de Trattnern, Caes. Reg. Maj. Aulae Typographi et Bibliopolae, Wien.
  • Lee, M.S.Y. 1997. The phylogeny of varanoid lizards and the affinities of snakes. Philosophical Transactions of the Royal Society of London B 352: 53–91.
  • Lee, M.S.Y. 1998. Convergent evolution and character correlation in burrowing reptiles: towards a resolution of squamate phylogeny. Biological Journal of the Linnean Society 65: 369–453.
  • Lee, M.S.Y. and Caldwell, M.W. 1998. Anatomy and relationships of Pachyrhachis problematicus, a primitive snake with hindlimbs. Philosophical Transactions of the Royal Society of London B 353: 1521–1552.
  • Lee, M.S.Y. and Caldwell, M.W. 2000 Adriosaurus and the affinities of mosasaurs, dolichosaurs, and snakes. Journal of Paleontology 74: 915–937.
  • Lee, M.S.Y. and Scanlon, J.D. 2001. On the lower jaw and intramandibular septum in snakes and anguimorph lizards. Copeia 2001: 531–535.
  • Lee, M.S.Y. and Scanlon, J.D. 2002. Snake phylogeny based on osteology, soft anatomy and behaviour. Biological Reviews of the Cambridge Philosophical Society 77: 333–402.
  • Linnaeus, C. 1758. Systema naturae per regna tria naturae, secundum classes, ordines, genera, species, cum characteribus, differentiis, synonymis, locis, Vol. 1: Regnum animale. Editio decima, reformata. 824 pp. Laurentii Salvii, Stockholm.
  • List, J.C. 1966. Comparative osteology of the snake families Typhlopidae and Leptotyphlopidae. Illinois Biological Monographs 36: 1–112.
  • Mackness, B.S. and Scanlon, J.D. 1999. The first Pliocene record of the madtsoiid snake genus Yurlunggur Scanlon, 1992 from Queensland. Memoirs of the Queensland Museum 43: 783–785.
  • Massalongo, D.A.B. 1859. Specimen photographicum animalium quorundam plantarumque fossilium agri Veronensis. 101 pp. Vicentini−Franchini, Verona.
  • McDowell, S.B. 1967. Osteology of the Typhlopidae and Leptotyphlopidae: a critical review. Copeia 1967: 686–692.
  • McDowell, S.B. 1974. A catalogue of the snakes of New Guinea and the Solomons, with special reference to those in the Bernice P. Bishop Museum. Part I. Scolecophidia. Journal of Herpetology 8: 1–57.
  • McDowell, S.B. 1975. A catalogue of the snakes of New Guinea and the Solomons, with special reference to those in the Bernice P. Bishop Museum. Part II. Anilioidea and Pythoninae. Journal of Herpetology 9: 1–80.
  • McDowell, S.B. 1986. The architecture of the corner of the mouth in colubroid snakes. Journal of Herpetology 20: 349–403.
  • McDowell, S.B. 1987. Systematics. In: R.A. Seigel, J.T.C. Collins, and S.S. Novak (eds.), Snakes: Ecology and Evolutionary Biology, 1–50. MacMillan, New York.
  • McDowell, S.B. and Bogert, C.M. 1954. The systematic position of Lanthanotus and the affinities of the Anguimorphan lizards. Bulletin of the American Museum of Natural History 105: 1–154.
  • McNamara, G.C. 1990. The Wyandotte Local Fauna: a new, dated, Pleistocene vertebrate fauna from northern Queensland. Memoirs of the Queensland Museum 28: 285–297.
  • Merrilees, D. 1968. Man the destroyer: Late Quaternary changes in the Australian marsupial fauna. Journal of the Royal Society of Western Australia 51: 1–24.
  • Merrilees, D. 1979. The prehistoric environment in Western Australia. Journal of the Royal Society of Western Australia 62: 109–128.
  • Molnar, R.E. 1984. Cainozoic reptiles from Australia (and some amphibians). In: M. Archer and G. Clayton (eds.), Vertebrate Zoogeography and Evolution in Australasia, 337–341. Hesperian Press, Perth.
  • Norell, M.A. and Gao, K. 1997. Braincase and phylogenetic relationships of Estesia mongoliensis from the Late Cretaceous of the Gobi Desert and the recognition of a new clade of lizards. American Museum Novitates 3211: 1–25.
  • Oelrich, T.M. 1956. The anatomy of the head of Ctenosaura pectinata (Iguanidae). Miscellaneous Publications of the Museum of Zoology, University of Michigan 94: 1–222.
  • Oppel, M. 1811. Die Ordnungen, Familien und Gattungen der Reptilien, als Prodrom einer Naturgeschichte derselben. 86 pp. Joseph Lindauer, München.
  • Pledge, N.S. 1990. The upper fossil fauna of the Henschke fossil cave, Naracoorte, South Australia. Memoirs of the Queensland Museum 28: 247–262.
  • Pledge, N.S. 1992. The Curramulka Local Fauna: a new Late Tertiary fossil assemblage from Yorke Peninsula, South Australia. The Beagle, Records of the Northern Territory Museum of Arts and Sciences 9: 115–142.
  • Polcyn, M.J., Tchernov, E., and Jacobs, L.L. 1999. The Cretaceous biogeography of the eastern Mediterranean with a description of a new basal mosasauroid from ‘Ein Yabrud, Israel. In: Y. Tomida, T.H. Rich, and P. Vickers−Rich (eds.), Proceedings of the Second Gondwanan Dinosaur Symposium.National Science Museum Monographs, Tokyo 15: 259–290.
  • Polcyn, M.J., Tchernov, E., and Jacobs, L.L. 2003. Haasiasaurus gen. nov., a new generic name for the basal mosasauroid Haasia Polcyn et al., 1999. Journal of Vertebrate Paleontology 23: 476.
  • Rage, J.C. 1984. Handbuch der Paläoherpetologie. 11. Serpentes. 80 pp. G. Fischer, Stuttgart.
  • Rage, J.C. 1998. Fossil snakes from the Paleocene of São José de Itaboraí, Brazil. Part I. Madtsoiidae, Aniliidae. Palaeovertebrata 27: 109–144.
  • Rage, J.C. and Escuillié, F. 2000. Un nouveau serpent bipède du Cénomanien (Cretacé). Implications phyletiques. Comptes rendus de l’Academie des Sciences, Paris, Sciences de la Terre et des planètes 330: 513–520.
  • Rage, J.C. and Escuillié, F. 2002. Eupodophis, new name for the genus Podophis Rage and Escuillié, 2000, an extinct bipedal snake, preoccupied by Podophis Wiegmann, 1834 (Lacertilia, Scincidae). Amphibia−Reptilia 23: 232–233.
  • Rage, J.C. and Werner, C. 1999. Mid−Cretaceous (Cenomanian) snakes from Wadi Abu Hashim, Sudan: The earliest snake assemblage. Palaeontologia Africana 35: 85–110.
  • Reed, E.H. and Bourne, S.J. 2000. Pleistocene fossil vertebrate sites of the South East region of South Australia. Transactions of the Royal Society of South Australia 124: 61–90.
  • Rieppel, O. 1979. The evolution of the basicranium in the Henophidia (Reptilia: Serpentes). Zoological Journal of the Linnean Society 66: 411–431.
  • Rieppel, O. 1980. The sound−transmitting apparatus in primitive snakes and its phylogenetic significance. Zoomorphology 96: 45–62.
  • Rieppel, O. 1984a. Miniaturization of the lizard skull: its functional and evolutionary implications. In: M.W.J. Ferguson (ed.), The Structure, Development and Evolution of Reptiles, 503–520. Symposium of the Zoological Society of London, No. 52. Academic Press, London.
  • Rieppel, O. 1984b. The cranial morphology of the fossorial lizard genus Dibamus with a consideration of its phylogenetic relationships. Journal of Zoology, London 204: 289–327.
  • Rieppel, O. 1985. The recessus scalae tympani and its bearing on the classification of reptiles. Journal of Herpetology 19: 373–384.
  • Rieppel, O. 1988. A review of the origin of snakes. Evolutionary Biology 22: 37–130.
  • Rieppel, O. 1989. The closure of the lateral braincase wall in snakes. Fortschritte der Zoologie/Progress in Zoology 35: 409–411.
  • Rieppel, O. and Zaher, H. 2000. The braincases of mosasaurs and Varanus, and the relationships of snakes. Zoological Journal of the Linnean Society 129: 489–514.
  • Rieppel, O. and Zaher, H. 2001. The development of the skull in Acrochordus granulatus(Schneider) (Reptilia: Serpentes), with special consideration of the otico−occipital complex. Journal of Morphology 249: 252–266.
  • Rieppel, O., Kluge, A.G., and Zaher, H. 2002. Testing the phylogenetic relationships of the Pleistocene snake Wonambi naracoortensis Smith. Journal of Vertebrate Paleontology 22: 812–829.
  • Rieppel, O., Zaher, H., Tchernov, E., and Polcyn, M.J. 2003. The anatomy and relationships of Haasiophis terrasanctus, a fossil snake with welldeveloped hind limbs from the mid−Cretaceous of the Middle East. Journal of Paleontology 77: 536–558.
  • Russell, D.A. 1967. Systematics and morphology of American mosasaurs (Reptilia, Sauria). Bulletin of the Peabody Museum of Natural History 23: 1–237.
  • Scanlon, J.D. 1992. A new large madtsoiid snake from the Miocene of the Northern Territory. The Beagle, Records of the Northern Territory Museum of Arts and Sciences 9: 49–60.
  • Scanlon, J.D. 1993a. Madtsoiid snakes from the Eocene Tingamarra Fauna of eastern Queensland. Kaupia: Darmstädter Beiträge zur Naturgeschichte 3: 3–8.
  • Scanlon, J.D. 1993b. The phylogenetic position of the Madtsoiidae (Serpentes). Second World Congress of Herpetology, Adelaide, South Australia. Collected Abstracts: 230–231.
  • Scanlon, J.D. 1995. First records from Wellington Caves, New South Wales, of the extinct madtsoiid snake Wonambi naracoortensis Smith, 1976. Proceedings of the Linnean Society of NSW 115: 233–238.
  • Scanlon, J.D. 1996. Studies in the Palaeontology and Systematics of Australian Snakes. 648 pp. Unpublished Ph.D. thesis. University of New South Wales, Sydney.
  • Scanlon, J.D. 1997. Nanowana gen. nov., small madtsoiid snakes from the Miocene of Riversleigh: sympatric species with divergently specialised dentition. Memoirs of the Queensland Museum 41: 393–412.
  • Scanlon, J.D. 2001. Montypythonoides: the Miocene snake Morelia riversleighensis(Smith and Plane, 1985) and the geographical origin of pythons. In: S.J. Hand and J.R. Laurie (eds.), Riversleigh Symposium 1998: Proceedings of a Research Symposium on Fossils from Riversleigh and Murgon, Queensland, held at the University of New South Wales, December, 1998. Memoirs of the Association of Australasian Palaeontologists 25: 1–35.
  • Scanlon, J.D. 2003. The basicranial morphology of madtsoiid snakes (Squamata, Ophidia) and the earliest Alethinophidia (Serpentes). Journal of Vertebrate Paleontology 23: 971–976.
  • Scanlon, J.D. (in press). Australia’s oldest known snakes: Patagoniophis, Alamitophis, and cf. Madtsoia (Squamata: Madtsoiidae) from the Eocene of Queensland. Memoirs of the Queensland Museum.
  • Scanlon, J.D. and Lee, M.S.Y. 2000. The Pleistocene serpent Wonambi and the early evolution of snakes. Nature 403: 416–420.
  • Scanlon, J.D. and Lee, M.S.Y. 2002. On varanoid−like dentition in primitive snakes. Journal of Herpetology 36: 100–106.
  • Scanlon, J.D. and Lee, M.S.Y. 2004. Phylogeny of Australasian venomous snakes (Colubroidea, Elapidae, Hydrophiinae) based on phenotypic and molecular evidence. Zoologica Scripta 33: 335–366.
  • Smith, M.J. 1976. Small fossil vertebrates from Victoria Cave, Naracoorte, South Australia. IV. Reptiles. Transactions of the Royal Society of South Australia 100: 39–51.
  • Smith, M.J. 1983. A giant python from southern Australia, Wonambi naracoortensis. In: S. Quirk and M. Archer (eds.), Prehistoric Animals of Australia, 40. Australian Museum, Sydney.
  • Smith, M.J. 1985. Wonambi naracoortensis Smith, 1976 The Giant Australian Python. In: P.V. Rich, G.F. Van Tets, and F. Knight (eds.), Kadimakara—Extinct Vertebrates of Australia, 156–159. Pioneer Design Studio, Melbourne.
  • Szyndlar, Z. and Böhme, W. 1996. Redescription of Tropidonotus atavus von Meyer, 1855 from the upper Oligocene of Rott (Germany) and its allocation to Rottophis gen. nov. (Serpentes, Boidae). Palaeontographica Abteilungen A 240: 145–161.
  • Szyndlar, Z. and Rage, J.C. 2003. Non−erycine Booidea from the Oligocene and Miocene of Europe. 109 pp. Institute of Systematics and Evolution of Animals, Polish Academy of Sciences, Kraków.
  • Tatarinov, L.P. 1963. The first occurrence in the USSR of the ancient sea−snakes [in Russian]. Paleontologičeskij žurnal 1963: 109–115.
  • Tatarinov, L.P. 1988. Structure of the skull in the sea snake “Archaeophis” turkmenicus from the Lower Eocene of Turkmeniya. Paleontological Journal 1988: 73–79.
  • Tchernov, E., Rieppel, O., Zaher, H., Polcyn, M.J., and Jacobs, L.L. 2000. A fossil snake with limbs. Science 287: 2010–2012.
  • Underwood, G. 1967. A Contribution to the Classification of Snakes. 179 pp. British Museum (Natural History), London.
  • Underwood, G. 1976. A systematic study of boid snakes. In: A. d’Albini Bellairs and C.B. Cox (eds.), Morphology and Biology of Reptiles, 151–175. Academic Press, London.
  • Vickers−Rich, P. and Rich, T.H. 1993. Wildlife of Gondwana. 276 pp. Reed Books, Sydney.
  • von Meyer, H. 1860. Coluber (Tropidonotus?) atavus aus der Braunkohle des Siebengebirges. Palaeontographica 7: 232–240.
  • White, J. 1790. Journal of a Voyage to New South Wales, With Sixty−Five Plates of Nondescript Animals, Birds, Lizards, Serpents, Curious Cones of Trees and Other Natural Productions. 229 pp. Debrett, London.
  • Witmer, L.M. 1995. The extant phylogenetic bracket and the importance of reconstructing soft tissues in fossils.In: J.J. Thomason (ed.), Functional Morphology in Vertebrate Palaeontology, 19–33. Cambridge University Press, Cambridge.
  • Woodward, A.S. 1901. On some extinct reptiles from Patagonia, of the genera Miolania, Dinilysia, and Genyodectes. Proceedings of the Zoological Society of London 1901: 169–184.
  • Zaher, H. 1998. The phylogenetic position of Pachyrhachis within snakes (Squamata, Lepidosauria). Journal of Vertebrate Paleontology 18: 1–3.

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