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Peel—Problematic Cambrian cnidarian (Octocorallia?)


Blainville, H.M. de, 1830, Zoophytes, in Levrault, F.G., ed., Dictionnaire des sciences naturelles, dans lequel on traité méthodiquement des differéns êtres de la nature, considérés soit en eux-mêmes, d’après l’état actuel de nos connoissances, soit relativement a l’utlité qu’en peuvent retirer la médicine, l’agriculture, le commerce et les arts, Tome 60: Paris, Le Normat, p. 1–548.


Blaker, M.R., and Peel, J.S., 1997, Lower Cambrian trilobites from North Greenland: Meddelelser om Grønland, Geoscience, v. 35, p. 1–145.


Bock, S., 1938, The alcyonarian genus Bathyalcon: Kungliga Svenska Vetenskapsakademiens Handlingar, 3, 16, p. 1–54.


Botting, J., and Peel, J.S., 2016, Early Cambrian sponges of the Sirius Passet Biota, North Greenland: Papers in Palaeontology, v. 2, p. 463–467.


Clausen, S., and Peel, J.S., 2012, Middle Cambrian echinoderm remains from the Henson Gletcher Formation of North Greenland: GFF, v. 134, p. 173–200.


Collins, A.G., 2002, Phylogeny of Medusozoa and the evolution of cnidarian life cycles: Journal of Evolutionary Biology, v. 15, p. 418–432.


Collins, A.G., 2009, Recent insights into cnidarian phylogeny: Smithsonian Contributions to Marine Sciences, v. 38, p. 139–149.


Conway Morris, S., 1993, The fossil record and the early evolution of Metazoa: Nature, v. 361, p. 219–225.


Conway Morris, S., and Collins, D.H., 1996, Middle Cambrian ctenophores from the Stephen Formation, British Columbia, Canada: Philosophical Transactions of the Royal Society of London, v. B 351, p. 279–308.


Cope, J.C.W., 2005, Octocorallian and hydroid fossils from the Lower Ordovician of Wales: Palaeontology, v. 48, p. 433–445.


Debrenne, F., and Peel, J.S., 1986, Archaeocyatha from the Lower Cambrian of Peary Land, central North Greenland: Rapport Grønlands Geologiske Undersøgelse, v. 132, p. 39–50.


Debrenne, F., and Reitner, J., 2001, Sponges, cnidarians, and ctenophores, in Zhuravlev, A, Yu., and Riding, R., eds., The Ecology of the Cambrian Radiation: New York, Columbia University Press, p. 301–325.


Debrenne, F., Gandin, A., and Gangloff, R.A., 1990, Analyse sédimentologique et paléontologie de calcaires organogènes du Cambrien inférieur de Battle Mountain (Nevada, U.S.A.): Annales de Paléontologie, v. 76, p. 73–119.


Debrenne, F., Zhuravlev, A.Yu., and Kruse, P., 2000, Class Archaeocyatha Borneman, in Hooper, J.N.A., and Van Soest, R.W.M., eds., Systema Porifera. A Guide to the Classification of Sponges: New York, Kluwer Academic/Plenum Publishers, p. 1539–1692.


Dzik, J., 1993, Early metazoan evolution and the meaning of its fossil record: Evolutionary Biology, v. 27, p. 339–386.


Dzik, J., Baliński, A., and Sun, Y., 2017, The origin of tetraradial symmetry in cnidarians: Lethaia, v. 50, p. 306–321.


Ehrenberg, C.G., 1834, Beiträge zur physiologischen Kenntniss der Corallenthiere im allgemeinen, und besonders des rothen Meeres, nebst einem Versuche zur physiologischen Systematik derselben: Abhandlungen der Königlichen Akademie der Wissenschaften, Berlin, v. 1, p. 225–380.


Elias, R.J., 1986, New Late Ordovician solitary rugose coral with perforate septa: Journal of Paleontology, v. 60, p. 14–25.


Engelbretsen, M.J., 1993, A Middle Cambrian possible cnidarian coral from the Murrawong Creek Formation, NE New South Wales: Memoir of the Association of Australasian Palaeontologists, v. 15, p. 51–56.


Fedorowski, J., 1997, Rugosa and Scleractinia—a commentary on some methods of phylogenetic reconstructions: Acta Palaeontollogica Polonica, v. 42, p. 446–456.


Fuller, M.K., and Jenkins, R.F.J., 1994, Moorowipora chamberensis, a new coral from the Early Cambrian Moorowie Formation, Flinders Ranges, South Australia: Transactions of the Royal Society of South Australia, v. 118, p. 227–235.


Fuller, M.K., and Jenkins, R.F.J., 1995, Arrowipora fromensis a new genus of tabulate-like coral from the Early Cambrian Moorowie Formation, Flinders Ranges, South Australia: Transactions of the Royal Society of South Australia, v. 119, p. 75–82.


Fuller, M.K., and Jenkins, R.F.J., 2007, Reef corals from the lower Cambrian of the Flinders Ranges, South Australia: Palaeontology, v. 50, p. 961–980.


Geyer, G., and Peel, J.S., 2011, The Henson Gletscher Formation, North Greenland, and its bearing on the global Cambrian Series 2-Series 3 boundary: Bulletin of Geosciences, v. 86, p. 465–534.


Geyer, G., Peel, J.S., Streng, M., Voigt, S., Fischer, J., and Preuße, M., 2014, A remarkable Amgan (middle Cambrian, Stage 5) fauna from the Sauk Tan’ga, Madygen region, Kyrgyzstan: Bulletin of Geosciences, v. 89, p. 375–400.


Grazhdankian, D., 2016, Forbidden fruits of the Garden of Ediacara: Paläonto- logische Zeitschrift, v. 90, p. 649–657.


Haeckel, E., 1866, Generelle Morphologie der Organismen, Allgemeine Grundzuge der Organischen Formen-Wissenschaft, Mechanisch Begründet Durch die von Charles Darwin Reformirte Descendez-Theorie: Verlag von Georg Reimer, Berlin, p. 1–462.


881


Hall, J., 1847, Palaeontology of New York. Volume I. Containing descriptions of the organic remains of the lower division of the New York System: Albany, C. Van Benthuysen, p. 1–338.


Han, J., Zhang, X., and Komiya, T., 2016, Integrated evolution of cnidarians and oceanic geochemistry before and during the Cambrian explosion, in Goffredo, S., and Dubinsky, Z., eds., The Cnidaria, Past, Present and Future: the world of Medusa and her sisters: Switzerland, Springer, p. 15–29.


Handfield, R.C., 1969, Early Cambrian coral-like fossils from the northern Cordillera of western Canada: Canadian Journal of Earth Sciences, v. 6, p. 782–785.


Hicks, M., 2006, A new genus of Early Cambrian coral in Esmeralda County, southwestern Nevada: Journal of Paleontology, v. 80, p. 609–615.


Higgins, A.K., Ineson, J.R., Peel, J.S., Surlyk, F., and Sønderholm, M., 1991, Lower Palaeozoic Franklinian Basin of North Greenland: Grønlands Geologiske Undersøgelse Bulletin, v. 160, p. 71–139.


Hill, D., 1972, Archaeocyatha, in Teichert, C., ed., Treatise on Invertebrate Paleontology, Part E: Boulder, Colorado and Lawrence, Kansas, Geological Society of America and University of Kansas, p. E1–E158.


Hill, D., 1981, Coelenterata, in Teichert, C., ed., Treatise on Invertebrate Paleontology, Part F, Supplement 1, Rugosa and Tabulata: Boulder, Colorado and Lawrence, Kansas, Geological Society of America and University of Kansas, p. F1–F762.


Hou, X., Aldridge, R.J., Bergström, J., Siveter, D.J., Siveter, D.J., and


Feng, X.H., 2004, The Cambrian Fossils of Chengjiang, China. The flowering of early animal life: Malden, Massachusetts, Blackwell Science Ltd., p. 1–233.


Ineson, J.R., and Peel, J.S., 1997, Cambrian stratigraphy of North Greenland: Geology of Greenland Survey Bulletin, v. 173, p. 1–120.


Jell, J.S., 1984, Cambrian cnidarians with mineralized skeletons: Palæonto- graphica Americana, v. 54, p. 105–109.


Jell, P.A., and Jell, J.S., 1976, Early Middle Cambrian corals from western New South Wales: Alcheringa, v. 1, p. 181–195.


Kaljo, D.L., and Reiman, V.M., 1958, Two new species of Calostylis from the Llandovery of Estonia: Trudy Instituta geologii AN ESSR, v. 2, p. 27–31.


Kayal, E., Roure, B., Philippe, H., Collins, A.G., and Lavrov, D.V., 2013, Cnidarian phylogenetic relationships as revealed by mitogenomics: BMC Evolutionary Biology 13, 5, p. 1–18, doi: 10.1186/1471-2148/13/5.


Kruse, P.D., 1983, Middle Cambrian ‘Archaeocyathus’ from the Georgina Basin is an anthaspidellid sponge: Alcheringa, v. 7, p. 49–58.


Kruse, P.D., and Zhuravlev, A.Yu., 2008, Middle–Late Cambrian Rankenella– Girvanella reefs of the Mila Formation, northern Iran: Canadian Journal of Earth Sciences, v. 45, p. 619–639.


Lafuste, J., Debrenne, F., Gandin, A., and Gravestock, D., 1991, The oldest tabulate coral and the associated Archaeocyatha, lower Cambrian, Flinders Ranges, South Australia: Geobios, v. 24, 697–718.


Lee, J.-H., Woo, J., and Lee, D.-J., 2016, The earliest reef-building anthaspi- dellid sponge Rankenella zhangxianensis n. sp. from the Zhangxia Forma- tion (Cambrian Series 3), Shandong Province, China: Journal of Paleontology, v. 90, p. 1–9.


Lindström, G., 1868, Om tvenne nya öfversiluriska koraller från Gotland: Öfversigt af Konglig Vetenskaps-akademiens Förhandlingar, v. 25, p. 419–428.


Lindström, G., 1870, A description of the Anthozoa Perforata of Gotland: Konglig Svenska Vetenskaps-akademiens Handlingar, v. 9, p. 1–12.


Lindström, G., 1882, Anteckningar om silurlagen på Carlsöarne: Bihang till Konglig Svenska Vetenskaps-akademiens Förhandlingar, v. 39, p. 5–30.


Lindström, M.M., 1978, An octocoral from the Lower Ordovician of Sweden: Geologica et Palaeontologica, v. 12, p. 41–51.


Linnaeus, C., 1758, Systema naturae per regna tria naturae, secundum classes, ordines, genera, species, cum characteribus & differentiis. Editio decima, reformata. Tom. I: Holmiae, Laurentii Salvii, 824 p.


Liu, A.G., Matthews, J.J., Menon, L.R., McIlroy, D., and Brasier, M.D., 2014, Haootia quadriformis n. gen., n. sp., interpreted as a muscular cnidarian impression from the Late Ediacaran period (approx. 560 Ma): Proceedings of the Royal Society of London, v. B 281, p. 1–9, doi: 10.1098/rspb.2014.1202.


Lozouet, P., and Molodtsova, T., 2008, Filling a gap: the first occurrences of Epiphaxum (Cnidaria: Helioporacea: Lithotelestidae) in the Eocene, Oligocene and Miocene: Palaeontology, v. 51, p. 241–250.


Lonsdale, W., 1850, Notes on the corals, in Dixon, F., ed., The Geology and Fossils of the Tertiary and Cretaceous Formations of Sussex. Descriptions of the fossils of the Chalk Formation: London, Brown, Green and Longmans, p. 237–324.


Miranda, L.S., Collins, A.G., and Marques, A.C., 2014, Is Haootia quadriformis related to extant Staurozoa (Cnidaria)? Evidence from the muscular system reconsidered. Proceedings of the Royal Society of London, v.B282, p. 1–3, doi: 10.1098/rspb.2014.2396.


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