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The Apectodinium spp. acme as an evidence for the Paleocene-Eocene thermal maximum from the Polish Outer Carpathians

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Numerous Apectodinium taxa, with A. augustum, and the presence of Florentinia reichartii were found in the Bystre slice (Polish Outer Carpathians). Such abundance of Apectodinium is described for the first time in the Outer Carpathians. The occurrence of thermophilic Apectodinium taxa, with co-occurrence of Florentinia reichartii, are interpreted to be strongly related to the Paleocene-Eocene thermal maximum (PETM). The PETM is characterized by a notable global warming and changes in marine and terrestrial biota, such as a global dispersion of thermophilic dinoflagellates. We are also reporting a new, unrecorded section of the Hieroglyphic beds from the Jabłonka Stream.
Rocznik
Strony
241--251
Opis fizyczny
Bibliogr. 79 poz., rys., fot., wykr.
Twórcy
  • University of Warsaw, Faculty of Geology, Żwirki i Wigury 93, 02-089 Warszawa, Poland
  • Polish Geological Institute - National Research Institute, Rakowiecka 4, 00-975 Warszawa, Poland
Bibliografia
  • 1. Arreguín-Rodríguez, G.J., Alegret, L., Ortiz, S., 2013. Glomospira acme during the Paleocene-Eocene thermal maximum: response to CaCO3 dissolution or to ecological forces? Journal of Foraminiferal Research, 43: 40-54.
  • 2. Awad, W.K., Oboh-Ikuenobe, F.E., 2016. Early Paleogene dinoflagellate cysts from ODP Hole 959D, Côte d'Ivoire-Ghana transform margin, west Africa: new species, biostratigraphy and paleoenvironmental implications. Journal of African Earth Sciences, 123: 123-144.
  • 3. Barski, M., Bojanowski, M., 2010. Organic-walled dinoflagellate cysts as a tool to recognize carbonate concretions: an example from Oligocene flysch deposits of the Western Carpathians. Geologica Carpathica, 61: 121-128.
  • 4. Bijl, P.K., Sluijs, A., Brinkhuis, H., 2013a. A magneto- and chemostratigraphically calibrated dinoflagellate cyst zonation of the early Palaeogene South Pacific Ocean. Earth-Science Reviews, 124: 1-31.
  • 5. Bijl, P.K., Bendle, A.P.J., Bohaty, S.M., Pross, J., Schouten, S., Tauxe, L., Stickley, C.E., McKay, R.M., Röhl, U., Olney, M., Sluijs, A., Escutia, C., Brinkhuis, H., Expedition 318 scientists, 2013b. Eocene cooling linked to early flow across the Tasmanian Gateway. Proceedings of the National Academy of Sciences of the United States of America, 110: 9645-9650.
  • 6. Bijl, P.K., Brinkhuis, H., Egger, L.M., Eldrett, J.S, Frieling, J., Grothe, A., Houbene, A.J.P., Pross, J., Śliwińska, K.K., Sluijs, A., 2016. Comment on "Wetzeliella and its allies - the ‘hole' story: a taxonomic revision of the Paleogene dinoflagellate subfamily Wetzelielloideae” by Wiliiams et al. (2015). Palynology, 41: 423-429.
  • 7. Bolle, M.-P., Pardo, A., Hinrichs, K.-U., Adatte, T., Von Salis, K., Burns, S., Keller, G., Muzylöv, N., 2000. The Paleocene-Eocene transition in the marginal northeastern Tethys (Kazakhstan and Uzbekistan). International Journal of Earth Sciences, 89: 390-414.
  • 8. Brinkhuis, H., 1994. Late Eocene to Early Oligocene dinoflagellate cysts from the Priabonian type-area (Northeast Italy): biostratigraphy and paleoenvironmental interpretation. Palaeogeography. Palaeoclimatology, Palaeoecology, 107: 121-163.
  • 9. Brinkhuis, H., Romein, A.J.T., Smit, J., Zachariasse, J-W., 1994. Danian-Selandian dinoflagellate cysts from lower latitudes with special reference to the El Kef section, NW Tunisia. GFF, 116: 46-48.
  • 10. Bujak, J.P., Brinkhuis, H., 1998. Global warming and dinocyst changes across the Paleocene-Eocene epoch boundary. In: Late Paleocene-Early Eocene (eds. M.-P. Aubry and W.A. Berggren): 277-295. Columbia University Press, New York.
  • 11. Burtan, J., 1936. Stratigraphie der Schlesisien Beskiden. Stratigraphie der schlesischen Beskiden. Bulletin International de L‘Academie Polonaise des Sciences et des Lettres de Cracovie: 1-41.
  • 12. Calder, J.A., Parker, P.L., 1968. Stable carbon isotope ratios as indices of petrochemical pollution of aquatic systems. Environmental Science and Technology, 2: 535-593.
  • 13. Carmichael, M., J., Inglis, G.N., Badger, M.P.S., Naafs, B.D.A., Behrooz, L., Remmelzwaal, S., Monteiro, F.M., Rohrssen, M., Farnsworth, A., Buss, H.L., Dickson A.J., Valdes, P.J., Lunt, D.J., Pancost, R.D., 2017. Hydrological and associated biogeochemical consequences of rapid global warming during the Paleocene-Eocene Thermal Maximum. Global and Planetary Change, 157: 114-138.
  • 14. Cieszkowski, M., Ślączka, A., Wdowiarz, A., 1985. New data on structure of the Flysch Carpathians. Przegląd Geologiczny, 33: 313-332.
  • 15. Collinson, M.E., Steart, D.C., Harrington, G.J., Hooker, J.J., Scott, A.C., Allen, L.O., Glasspool, I.J., Gibbons, S.J., 2009. Palynological evidence of vegetation dynamics in response to palaeoenvironmental change across the onset of the Paleocene-Eocene Thermal Maximum at Cobham, Southern England. Grana, 48: 38-66.
  • 16. Costa, L.I., Downie, C., 1976. The distribution of the dinoflagellate Wetzeliella in the Palaeogene of north-western Europe. Palaeontology, 19: 591-614.
  • 17. Crouch, E.M., Brinkhuis, H., 2005. Environmental change across the Paleocene-Eocene transition from eastern New Zealand: a marine palynological approach. Marine Micropaleontology, 56: 138-160.
  • 18. Crouch, E.M., Heilmann-Clausen, C., Brinkhuis, H., Morgans, H.E.G., Rogers, K.M., Egger, H., Schmitz, B., 2001. Global dinoflagellate event associated with the late Paleocene thermal maximum. Geology, 29: 315-318.
  • 19. Crouch, E.M., Dickens, G.R., Brinkhuis, H., Aubry, M.-P., Hollis, C.J., Rogers, K.M., Visscher, H., 2003a. The Apectodinium acme and terrestrial discharge during the Paleocene-Eocene thermal maximum: new palynological, geochemical and calcareous nannoplankton observations at Tawanui, New Zealand. Palaeogeography, Palaeoclimatology, Palaeoecology, 194: 387-403.
  • 20. Crouch, E.M., Brinkhuis, H., Visscher, H., Adatte, T., Bolle, M.-P., 2003b. Late Paleocene-early Eocene dinoflagellate cyst records from the Tethys: Further observations on the global distribution of Apectodinium. GSA Special Paper, 369: 113-131.
  • 21. Eaton, G.L., 1976. Dinoflagellate cysts from the Bracklesham Beds (Eocene) of the Isle of Wight, southern England. Bulletin of the British Museum (Natural History). Geology, 26: 227-332.
  • 22. Egger, H., Fenner, J., Heilmann-Clausen, C., Rögl, F., Sachsenhofer, R.F., Schmitz, B., 2003. Paleoproductivity of the northwestern Tethyan margin (Anthering Section, Austria) across the Paleocene-Eocene transition. GSA Special Paper, 369: 133-146.
  • 23. Frieling, J., 2016. Climate, Carbon Cycling and Marine Ecology during the Paleocene Eocene Thermal Maximum. Ph.D. thesis, Utrecht University, Utrecht, Netherlands.
  • 24. Frieling, J., Huurdeman, E.P., Rem, C.C.M., Donders, T.H., Pross, J., Bohaty, S.M., Holdgate, G.R., Gallagher, S.J., Mc-Gowran, B., Bijl, P.K., 2018a. Identification of the Paleocene-Eocene boundary in coastal strata in the Otway Basin, Victoria, Australia. Journal of Micropalaeontology, 37: 317-339.
  • 25. Frieling, J., Reichart, G-J., Middelburg, J.J., Röhl, U., Westerhold, T., Bohaty, S.M., Sluijs A., 2018b. Tropical Atlantic climate and ecosystem regime shifts during the Paleocene-Eocene Thermal Maximum. Climate of the Past, 14: 39-55.
  • 26. Galeotti, S., Kaminski, M.A., Coccioni, R., Speijer, R.P., 2004. High-resolution deep-water Agglutinated Foraminiferal record across the Paleocene/Eocene transition in the Contessa Road Section (central Italy). Grzybowski Foundation Special Publication, 8: 83-103.
  • 27. Gedl, P., 1995. Middle Eocene dinoflagellate cysts from the Rogoźnik section, Flych Carpathians, Poland. Acta Palaeobotanica, 35: 195-231.
  • 28. Gedl, P., 2005. Late Eocene-early Oligocene organic-walled dinoflagellate cysts from Folusz, Magura Nappe, Polish Carpathians. Acta Palaeobotanica, 45: 27-83.
  • 29. Gedl, P., 2013. Eocene dinoflagellate cysts from the Popiele beds at Koniusza (Skole Nappe, Flysch Carpathians, Poland): taxonomy, biostratigraphy, and palaeoenvironmental reconstruction of a marginal marine basin. Studia Geologica Polonica, 136: 5-197.
  • 30. Golonka, J., Oszczypko, N., Ślączka, A., 2000. Late Carboniferous-Neogene geodynamic evolution and paleogeography of the Circum-Carpathian region and adjacent areas. Annales Societatis Geologorum Poloniae, 70: 107-136.
  • 31. Golonka, J., Gahagan, L., Krobicki, M., Marko, F., Oszczypko, N., Ślączka, A., 2006. Plate tectonic evolution and paleogeography of the circum Carpathian region. AAPG Memoir, 84: 11-46.
  • 32. Heilmann-Clausen, C., Egger, H., 2000. The Anthering outcrop (Austria), a key-section for correlation between Tethys and Northwestern Europe near the Paleocene/Eocene boundary. GFF, 122: 69.
  • 33. Iakovleva, A.I., Brinkhuis, H., Cavagnetto, C., 2001. Late Palaeocene-Early Eocene dinoflagellate cysts from the Turgay Strait, Kazakhstan; correlations across ancient seaways. Palaeogeography, Palaeoclimatology, Palaeoecology, 172: 243-268.
  • 34. Jan du Chęne, R., Adediran, S.A., 1984. Late Paleocene to Early Eocene dinoflagellates from Nigeria. Cahiers de Micropaléontologie, Centre National de la Recherche Scientifique, 3: 5-38.
  • 35. Jankowski, L., Ślączka, A., 2014. Objaśnienia do Szczegółowej Mapy Geologicznej Polski w skali 1:50 000 (in Polish): 1-38. Arkusz Jabłonki (1065). Państwowy Instytut Geologiczny-Państwowy Instytut Badawczy.
  • 36. Jurewicz, E., Segit, T., 2018. The tectonics and stratigraphy of the transitional zone between the Pieniny Klippen Belt and Magura Nappe (Szczawnica area, Poland). Geology, Geophysics and Environment, 44: 127-144.
  • 37. Kennett, J.P., Stott, L.D., 1991. Abrupt deep-sea warming, palaeoceanographic changes and benthic extinctions at the end of the Palaeocene. Nature, 353: 225-229.
  • 38. Kocsis, L., Ounis, A., Baumgartner, C., Pirkenseer, C., Harding, I.C., Adatte, T., Chaabani, F., Neili, S.M., 2014. Paleocene-Eocene palaeoenvironmental conditions of the main phosphorite deposits (Chouabine Formation) in the Gafsa Basin, Tunisia. Journal of African Earth Sciences, 100: 586-597.
  • 39. Kováč, M., Andreyeva-Grigorovich, A., Bajraktarević, Z., Brzobohatý, R., Filipescu, S., Fodor, L., Harzhauser, M., Nagymarosy, A., Oszczypko, N., Pavelić, D., Rögl, F., Saftić, B., Sliva, L., Studencka, B., 2007. Badenian evolution of the Central Paratethys Sea: paleogeography, climate and eustatic sea-level changes. Geologica Carpathica, 58: 579-606.
  • 40. Köthe, A., 1990. Paleogene dinoflagellates from northwest Germany- biostratigraphy and palaeoenvironments. Geologisches Jahrbuch A, 118: 3-111.
  • 41. Martini, E., 1971. Standard Tertiary and Quaternary calcareous nannoplankton zonation. Proceedings of the 2nd Planktonic Conference, Roma: 739-785.
  • 42. Mastella, L., 1995. Tektonika jednostki przeddukielskiej (Bieszczady) - program KBN nr 600 999101 (in Polish). Archiwum Wydziału Geologii Uniwersytetu Warszawskiego.
  • 43. Mohamed, O., Wagreich, M., 2013. Organic-walled dinoflagellate cyst biostratigraphy of the Well Höflein 6 in the Cretaceous-Paleogene Rhenodanubian Flysch Zone (Vienna Basin, Austria). Geologica Carpathica, 64: 209-230.
  • 44. Newman, J.W., Parker, P.L., Behrens, E.W., 1973. Organic carbon isotope ratios in Quaternary cores from the Gulf of Mexico. Geochimica et Cosmochimica Acta, 37: 225-238.
  • 45. Nøhr-Hansen H., 2003. Dinoflagellate cyst stratigraphy of the Palaeogene strata from the Hellefisk-1, Ikermiut-1, Kangâmiut-1, Nukik-1, Nukik-2 and Qulleq-1 wells, offshore West Greenland. Marine and Petroleum Geology, 20: 987-1016.
  • 46. Oboh-Ikuenobe, F.E., Antolinez-Delgado, H., Awad, W.K., 2017. Dinoflagellate cysts assemblages, biostratigraphy and paleoenvironment of a Paleocene-Early Eocene sedimentary succession in the northern Niger Delta Basin: comparison with low, mid and high latitude regions. Palaeogeography, Palaeoclimatology, Palaeoecology, 481: 29-43.
  • 47. Oszczypko, N., 2004. The structural position and tectonosedimentary evolution of the Polish Outer Carpathians. Przegląd Geologiczny, 52: 780-791.
  • 48. Oszczypko, N., Ślączka, A., Żytko, K., 2008. Tectonic subdivision of Poland: Polish Outer Carpathians and their foredeep (in Polish with English summary). Przegląd Geologiczny, 56: 927-935.
  • 49. Pagani, M., Pedentchouk, N.,. Huber, M., Sluijs, A., Schouten, S., Brinkhuis, H., Sinninghe Damsté, J.S., Dickens, G.R., IODP Expedition 302 Expedition Scientists, 2006. Arctic hydrology during global warming at the Palaeocene- Eocene thermal maximum. Nature, 442: 671-675.
  • 50. Poulsen, N.E., Gudmundsson, L., Hansen, J.M., Husfeldt, Y., 1990. Palynological preparation techniques, a new maceration tank-method and other modifications. Geological Survey of Denmark, Series C, 10: 1-22.
  • 51. Powell, A.J., 1992. Dinoflagellate of the Tertiary System. In: A Stratigraphic Index of Dinoflagellate Cysts (ed. A.J. Powell): 156-251. British Micropalaeontological Society Publication Series, Chapman and Hall, London.
  • 52. Powell, A.J., Brinkhuis, H., Bujak, J.P., 1996. Upper Paleocene-lower Eocene dinoflagellate cyst sequence biostratigraphy of southeast England. Geological Society Special Publications, 101: 145-183.
  • 53. Sánchez-Pellicer, R., Masure, E., Villier, L., 2017. A new biostratigraphic correlation for Late Cretaceous-Paleocene strata of the Gulf of Guinea: evidence from dinoflagellate cysts. Comptes Rendus Geoscience, 349: 32-41.
  • 54. Schouten, S., Woltering, M., Rijpstra, W.I.C., Sluijs, A., Brinkhuis, H., Sinninghe Damsté, J.S., 2007. The Paleocene-Eocene carbon isotope excursion in higher plant organic matter: differential fractionation of angiosperms and conifers in the Arctic. Earth and Planetary Science Letters, 258: 581-592.
  • 55. Shcherbinina, E., Gavrilov, Y., Iakovleva, A., Pokrovsky, B., Golovanova, O., Aleksandrova, G., 2016. Environmental dynamics during the Paleocene-Eocene thermal maximum (PETM) in the northeastern Peri-Tethys revealed by high-resolution micropalaeontological and geochemical studies of a Caucasian key section. Palaeogeography, Palaeoclimatology, Palaeoecology, 456: 60-81.
  • 56. Sluijs, A., Brinkhuis, H., 2009. A dynamic climate and ecosystem state during the Paleocene-Eocene Thermal Maximum: inferences from dinoflagellate cyst assemblages on the New Jersey Shelf. Biogeosciences, 6: 1755-1781.
  • 57. Sluijs, A., Brinkhuis, H., Schouten, S., Bohaty, S.M., John, C.M., Zachos, J.C., Reichart, G.-J., Sinninghe Damsté, J.S., Crouch, E.M., Dickens, G.R., 2007. Environmental precursors to light carbon input at the Paleocene/Eocene boundary. Nature, 450: 1218-1221.
  • 58. Sluijs, A., Brinkhuis, H., Crouch, E.M., John, C.M., Handley, L., Munsterman, D., Bohaty, S.M., Zachos, J.C., Reichart, G.-J., Schouten, S., Pancost, R.D., Sinninghe Damsté, J.S., Welters, N.L.D., Lotter, A.F., Dickens, G.R., 2008. Eustatic variations during the Paleocene-Eocene greenhouse world. Paleoceanography, 23: 1-18.
  • 59. Sluijs, A., Bijl, P.K., Schouten, S., Röhl, U., Reichart, G.-J, Brinkhuis, H., 2011. Southern ocean warming, sea level and hydrological change during the Paleocene-Eocene thermal maximum. Climate of the Past, 7: 47-61.
  • 60. Steurbaut, E., Magioncalda, R., Dupuis, C., Van Simaeys, S., Roche, E., Roche, M., 2003. Palynology, paleoenvironments, and organic carbon isotope evolution in lagoonal Paleocene-Eocene boundary settings in North Belgium. GSA Special Paper, 369: 291-317.
  • 61. Stiller, M., 1977. Origin of sedimentation components in Lake Kinneret traced by their isotopic composition. In: Interaction Between Sediments and Freshwater (ed. H.L. Golterman): 57-64. Junk, The Hague.
  • 62. Stover, L,E., Brinkhuis, H., Damassa, S.P., de Verteuil, L., Helby, R.J., Monteil, E., Partridge, A.D., Powell, A.J., Riding, J.B., Smelror, M., Williams, G.L., 1996. Chapter 19. Mesozoic-Tertiary dinoflagellates, acritarchs and prasinophytes. American Association of Stratigraphic Palynologists Foundation, 2: 641-750.
  • 63. Ślączka, A., 1959. Stratigraphy of the Bystra scale (Middle Carpathians) (in Polish with English summary). Biuletyn Instytutu Geologicznego, 131: 203-251.
  • 64. Świdziński, H., 1953. Karpaty fliszowe między Dunajcem a Sanem (in Polish). In: Regionalna Geologia Polski, 1 Karpaty, 2 Tektonika (ed. M. Książkiewicz): 362-422. Polskie Towarzystwo Geologiczne, Kraków.
  • 65. Świdziński, H., 1958. Mapa Geologiczna Karpat Polskich 1:200,000. Część wschodnia. Prace Instytutu Geologicznego, Warszawa.
  • 66. Thiry, M., Aubry, M.-P., Dupuis, C., Sinha, A., Stott, L.D., Berggren, W.A., 2006. The Sparnacian deposits of the Paris Basin: δ13C isotope stratigraphy. Stratigraphy, 3: 119-138.
  • 67. Thomas, E., Shackleton, N.J., 1996. The Paleocene-Eocene Benthic Foraminiferal Extinction and Stable Isotope Anomalies. The Geological Society Special Publications, 101: 401-444.
  • 68. Thomas, D.J., Zachos, J.C., Bralower, T.J., Thomas, E., Bohaty, S., 2002. Warming the fuel for the fire: evidence for the thermal dissociation of methane hydrate during the Paleocene-Eocene thermal maximum. Geology, 30: 1067-1070.
  • 69. Tołwiński, K., 1933. Centralna depresja karpacka (in Polish). Geologia i Statystyka Naftowa Polski, 7: 362-366.
  • 70. Tripati, A., Elderfield, H., 2005. Deep-sea temperature and circulation changes at the Paleocene-Eocene Thermal Maximum. Science, 308: 1894-1898.
  • 71. Tyson, R.V., 1993. Palynofacies analysis. In: Applied Micropalaeontology (ed. D.J. Jenkins): 153-191. Kluwer, Dordrecht.
  • 72. Westerhold, T., Röhl, U., McCarren, H.K., Zachos, J.C., 2009. Latest on the absolute age of the Paleocene-Eocene Thermal Maximum (PETM): new insights from exact stratigraphic position of key ash layers +19 and -17. Earth Planetary Science Letters, 287: 412-419.
  • 73. Williams, G.L., Bujak, J.P., 1985. Mesozoic and Cenozoic Dinoflgellates. In: Plankton Stratigraphy (eds. H.M. Bolli, J.B. Saunders and K. Petch-Nielsen): 847-964. Cambridge University Press.
  • 74. Williams, G.L., Brinkhuis, H., Pearce, M.A., Fensome, R.A., Weegink, J.W., 2004. Southern Ocean and global dinoflagellate cyst events compared: index events for the Late Cretaceous-Neogene. In: Proceedings of the Ocean Drilling Program (eds. N.F. Exon, J.P. Kennett and M.J. Malone). Scientific Results Volume, 189: 1-98.
  • 75. Williams, G.L., Damassa, S.P., Fensome, R.A., Guerstein, G.R., 2015. Wetzeliella and its allies - the “hole” story: a taxonomic revision of the Paleogene dinoflagellate subfamily Wetzelielloideae. Palynology, 39: 289-344.
  • 76. Williams, G.L., Fensome, R.A., MacRae, R.A., 2017. DINOFLAJ3. American Association of Stratigraphic Palynologists, Data Series no. 2.
  • 77. Zachos, J.C., Wara, M.J., Bohaty, S., Delaney, M.L., Petrizzo, M.R., Brill, A., Bralower, T.J., Premoli-Silva, I., 2003. A transient rise in tropical sea surface temperature during the Paleocene-Eocene Thermal Maximum. Science, 302: 1551-1554.
  • 78. Zachos, J.C., McCarren, H., Murphy, B., Röhl, U., Westerhold, T., 2010. Tempo and scale of late Paleocene and early Eocene carbon isotope cycles: Implications for the origin of hyperthermals. Earth and Planetary Science Letters, 299: 242-249.
  • 79. Żytko, K., Zając, R., Gucik, S., Ryłko, W., Oszczypko, N., Garlicka, I., Nemčok, J., Eliáš, M., Menčik, E., Stránik, Z., 1989. Map of the Tectonic Elements of the Western Outer Carpathians and their Foreland. In: Geological Atlas of the Western Outer Carpathians and their Foreland (eds. D. Poprawa and J. Nemčok). Polish Geological Institute Warszawa, Geological Survey of Slovak Republic Bratislava, Czech Geological Survey Praha.
Uwagi
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-9129ffce-2777-4414-a528-0923d896e3c3
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