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In defence of invertebrate fossil taxonomy

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Starting from a subjective viewpoint on the decreasing interest in invertebrate fossil taxonomy, this essay discusses its importance in palaeobiological studies exemplified with cases from the palaeobiogeography and palaeoecology of rugose corals, and aims at provoking a discussion on the topic. The possible causes of this negative declining trend include inherent problems of palaeontological taxonomy, and changing systems in science and higher education.
Rocznik
Strony
249--258
Opis fizyczny
Bibliogr. 46 poz., rys.
Twórcy
  • Institute of Geology, Adam Mickiewicz University, Bogumiła Krygowskiego 12, 61-680 Poznań, Poland
Bibliografia
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  • 2. Baird, A.H., Hoogenboom, M.O. and Huang, D. 2017. Cyphastrea salae, a new species of hard coral from Lord Howe Island, Australia (Scleractinia, Merulinidae). ZooKeys, 662, 49–66.
  • 3. Bamber, E.W., Rodríguez, S., Richards, B.C. and Mamet, B. 2017. Uppermost Viséan and Serpukhovian (Mississippian) rugose corals and biostratigraphy. Canadian Cordillera. Palaeontographica Canadiana, 36, 1–169.
  • 4. Berkowski, B. and Zapalski, M.K. 2018. Large dwellers of the Silurian Halysites biostrome: rhizosessile life strategies of cystiphyllid rugose corals from the Llandovery of Gotland. Lethaia, 51, 581–595.
  • 5. Billings, E. 1858. Report for the year 1857. Report of Progress, 147–192. Geological Survey of Canada; Montreal.
  • 6. Cowman, P.F., Quattrini, A.M., Bridge, T.C.L., Watkins-Colwell, G.J., Fadli, N., Grinblat, M., Roberts, T.E., McFadden, C.S., Miller, D.J. and Baird, A.H. 2020. An enhanced target-enrichment bait set for Hexacorallia provides phylogenomic resolution of the staghorn corals (Acroporidae) and close relatives. Molecular Phylogenetics and Evolution, 153, 106944.
  • 7. Dana, J.D. 1846–1849. Zoophytes. United States Exploring Expedition during the years 1838–1842, 7, 740 pp. Lea and Blanchard; Philadelphia.
  • 8. Fedorowski, J. 1980. Some aspects of coloniality in corals. Acta Palaeontologica Polonica, 25, 429–437.
  • 9. Fedorowski, J. 1986. The rugose coral faunas of the Carboniferous/Permian boundary interval. Acta Palaeontologica Polonica, 31, 394–402.
  • 10. Fedorowski, J. 1997. Diachronism in the development and extinction of Permian Rugosa. Geologos, 2, 59–164.
  • 11. Fedorowski, J. 2019. Bashkirian Rugosa (Anthozoa) from the Donets Basin (Ukraine). Part 7. The Family Neokoninckophyllidae Fomichev, 1953, with a preliminary revision of Moscovian taxa. Acta Geologica Polonica, 69, 59–81.
  • 12. Fedorowski, J. and Bamber, E.W. 2007. Remarks on lithostrotionid phylogeny in western North America and western Europe. In: Hubman, B. and Piller, W.E. (Eds), Fossil corals and sponges. Proceedings of the 9th International Symposium on Fossil Cnidaria and Porifera, Graz, 2003. Österreichische Akademie der Wissenschaften. Schriftenreihe der Erdwissenschaftlichen Kommissionen, 17, 251–273.
  • 13. Fedorowski, J., Bamber, E.W. and Richards, B.C. 2019. Bashkirian rugose corals from the Carboniferous Mattson Formation in the Liard Basin, northwest Canada – stratigraphic and paleobiogeographic implications. Acta Palaeontologica Polonica, 64, 851–870.
  • 14. Fedorowski, J., Bamber, E.W. and Stevens, C.H. 2007. Lower Permian colonial rugose corals, Western and Northwestern Pangaea: Taxonomy and distribution, 231 pp. National Research Council of Canada Research Press; Ottawa.
  • 15. Garcia-Bellido, D.C. and Rodríguez, S. 2005. Palaeobiogeographical relationships of poriferan and coral assemblages during the late Carboniferous and the closure of the western Palaeotethys Sea-Panthalassan Ocean connection. Palaeogeography, Palaeoclimatology, Palaeoecology, 219, 321–331.
  • 16. Gómez-Herguedas, A. and Rodríguez, S. 2009. Paleoenvironmental analysis based on rugose corals and microfacies: a case study at La Cornuda section (Early Serpukhovian, Guadiato Area, SW Spain). Lethaia, 42, 39–54.
  • 17. Groot, G. de 1963. Carboniferous corals of northern Palencia (Spain). Leidse Geologische Mededelingen, 29, 1–124.
  • 18. Hill, D. 1981. Coelenterata, Supplement 1, Rugosa and Tabulata. In: Teichert, C. (Ed.), Treatise on Invertebrate Paleontology, Part F, 762 pp. Geological Society of America and University of Kansas Press; Lawrence.
  • 19. Humboldt, A. v. and Bonpland, A. 1805–1829. Voyage aux régions équinoxiales du Nouveau Continent, fait de 1799 à 1804. Maze; Paris.
  • 20. Kelly, W.A. 1942. Lithostrotionidae in the Rocky Mountains. Journal of Paleontology, 16, 351–361.
  • 21. Kitahara, M.V., Capel, K.C.C. and Migotto, A.E. 2020. Coenocyathus sebroecki sp. nov.: a new azooxanthellate coral (Scleractinia, Caryophylliidae) from southeastern Brazil. Marine Biodiversity, 50 (4), 1–9.
  • 22. Kitahara, M.V., Fukami, H., Benzoni, F. and Huang, D. 2016. The new systematics of Scleractinia: integrating molecular and morphological evidence. In: Goffredo, S. and Dubinsky, Z. (Eds), The Cnidaria, past, present and future: The world of Medusa and her sisters, 41–59. Springer; Cham.
  • 23. Lamarck, J.-B. M. de. 1816. Histoire naturelle des animaux sans vertèbres. Tome second, 568 pp. Verdière; Paris.
  • 24. Linnæus, C. 1766–1767. Systema naturae per regna tria naturae: secundum classes, ordines, genera, species, cum characteribus, differentiis, synonymis, locis. Ed. 12. 1, Regnum Animale, 1 and 2, pp. 1–532 [1766], pp. 533–1327 [1767]. Laurentii Salvii; Holmiae.
  • 25. Lonsdale, W. 1845. Description of some characteristic Palaeozoic corals from Russia, Vol. 1. In: Murchison, R.I., Verneuil, E. de and Keyserling, A. v. (Eds), The Geology of Russia in Europe and the Ural Mountains, 591–634. Murray; London.
  • 26. McCoy, F. 1849. On some new genera and species of Carboniferous corals and Foraminifera. Annals and Magazine of Natural History, Series 2, 3, 1–20.
  • 27. Milne Edwards, H. and Haime, J. 1848. Mémoire 2. Monographie des turbinolides. Annales des Sciences Naturelles, Zoologie, Series 3, 9, 211–344.
  • 28. Milne Edwards, H. and Haime, J. 1851. A monograph of British fossil corals, 322 pp. Palaeontographical Society of London; London.
  • 29. Minato, M. and Kato, M. 1965a. Waagenophyllidae. Journal of the Faculty of Sciences, Hokkaido University. Series 4. Geology and Mineralogy, 12, 1–241.
  • 30. Minato, M. and Kato, M. 1965b. Durhaminidae. Journal of the Faculty of Sciences, Hokkaido University. Series 4. Geo logy and Mineralogy, 13, 13–86.
  • 31. Oliver, W.A. Jr. 1976. Presidential address. Biogeography of Devonian rugose corals. Journal of Paleontology, 50, 365–373.
  • 32. Oliver, W.A. Jr. and Pedder, A.E.H. 1979. Biogeography of Late Silurian and Devonian rugose corals in North America. In: Gray, J. and Boucot, A.J. (Eds), Historical biogeography, plate tectonics and changing environment, 131–145. Oregon State University Press; Cornvallis.
  • 33. Orbigny, A. d’ 1852. Cours élémentaire de paleontology et géologie stratigraphique. Vol. 2, 1146 pp. Victor Masson; Paris.
  • 34. Paz-García, D.A., Hellberg, M.E., García-de-León, F.J. and Balart, E.F. 2015. Switch between morphospecies of Pocillopora corals. The American Naturalist, 186 (3), 434–440.
  • 35. Rodríguez, S. 1984. Corales rugosos del este des Asturias. Unpublished Ph.D. thesis, 528 pp. Departamento de Paleontologia, Facultad de Ciencias Geológicas, Universidad Complutense de Madrid.
  • 36. Rodríguez, S. and Kullmann, J. 1999. Rugose corals from the upper member of the Picos de Europa Formation (Moscovian, Cantabrian Mountains, NW Spain). Palaeontographica, Abteilung A, 252, 23–92.
  • 37. Said, I., Rodríguez, S., Somerville, I.D. and Cózar, P. 2011. Environmental study of coral assemblages from the Upper Viséan Tizra Formation (Adarough Area, Morocco): implication for Western Palaeotethys biogeography. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen, 260, 101–118.
  • 38. Saville Kent, W. 1871. On some new and little-known species of madrepores, or stony corals, in the British Museum collection. Proceedings of the Scientific Meetings of the Zoological Society of London, 1871, 275–286.
  • 39. Scotese, C.R. 2001. Atlas of Earth History. Vol. 1. Paleogeography, 52 pp. PALEOMAP Project; Arlington.
  • 40. Sorauf, J.E. and Kissling, D.L. 2012. Rugosans immured in Silurian Paleofavosites; Brassfield Formation (Llandovery) of Ohio. Geologica Belgica, 5, 220–225.
  • 41. Torsvik, T.H. and Cocks, L.R.M. 2017. Earth History and Palaeogeography, 317 pp. Cambridge University Press; Cambridge.
  • 42. Vinn, O. and Mõtus, M.A. 2014. Endobiotic rugosan symbionts in stromatoporoids from Sheinwoodian (Silurian) of Baltica. Plos One, 9, 1–6.
  • 43. Wang, H.C. 1950. A revision of the Zoantharia Rugosa in the light of their minute skeletal structures. Philosophical Transactions of the Royal Society of London. Series B Biological Sciences, 611, 175–264.
  • 44. Wedekind, R. 1927. Die Zoantharia Rugosa von Gotland (bes. Nordgotland), Nebst Bemerkungen zur Biostratigraphie des Gotlandium. Sveriges Geologiska Undersökning, 19, 1–94.
  • 45. Wu, W.S. and Zhou, K.J. 1982. Upper Carboniferous corals from Kalping and Aksu, Xinjiang. Academia Sinica. Nanjing Institute of Geology and Palaeontology, Bulletin, 1982, 213–239. [In Chinese with English summary]
  • 46. Ziegler, P.A. 1988. Laurussia – the old red continent. In: Mc-Millan, N.J., Embry, A.F. and Glass, D.J. (Eds), Devonian of the World. 1. Regional synthesis. Proceedings of the Second International Symposium on the Devonian System, 5–48. Canadian Society of Petroleum Geologists; Calgary.
Uwagi
PL
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-755b550d-d6f7-4b55-9cc5-fd29a9e3001d
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