Njoerdichthys dyckerhoffi gen. et sp. nov. (Pycnodontiformes, lower Turonian) northward migration caused by the Cretaceous Thermal Maximum

Cretaceous Research - Tập 116 - Trang 104590 - 2020
John Cawley1, Jens Lehmann2, Frank Wiese3, Jürgen Kriwet1
1University of Vienna, Geozentrum, Department of Palaeontology, Althanstr. 14, 1090 Vienna, Austria
2University of Bremen, Faculty of Geosciences, Geosciences Collection, Klagenfurter Str. 4, 28359 Bremen, Germany
3Georg-August-Universität Göttingen, Department of Geobiology, Geoscience Centre, Goldschmidtstr. 3, 37073 Göttingen, Germany

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1833, Synoptische Übersicht der fossilen Ganoiden, Neues Jahrbuch für Mineralogie, Geognosie, Geologie und Petrefaktenkunde 1 1834, vol. I 1833 Alvarado-Ortega, 2019, The Huehuetla quarry, a Turonian deposit of marine vertebrates in the Sierra Norte of Puebla, central Mexico, Palaeontologia Electronica, 22, 1 Applegate, 1992, A new genus and species of Pycnodont from the Cretaceous (Albian) of Central Mexico, Tepexi de Rodríguez, Puebla, Revista del Instituto de Geología, Universidad Nacional Autónoma de México, 10, 164 1952 Arambourg, 1954, Les poissons Crétacés du Jebel Tselfat (Maroc), Notes et Mémoires du Service Géologique du Maroc, 118, 1 Archibald, 2011, Intercontinental dispersal of giant thermophilic ants across the Arctic during Early Eocene hyperthermals, Proceedings of the Royal Society B: Biological Sciences, 278, 3679, 10.1098/rspb.2011.0729 Arratia, 1992, Reevaluation of the caudal skeleton of certain actinopterygian fishes: III. Salmonidae. Homologization of caudal skeletal structures, Journal of Morphology, 214, 187, 10.1002/jmor.1052140209 Bazzi, 2015, Late Cretaceous (Campanian) actinopterygian fishes from the Kristianstad Basin of southern Sweden, Geological Society, London, Special Publications, 434, 277, 10.1144/SP434.5 de Beaumont, 1979, Une mâchoire de poisson pycnodonte (Microdon sp.) dans l'Urgonien de la nappe de Morcles, Bulletin de la Société Vaudoise des Sciences Naturelles, 74, 251 Bechly, 2019, New fossil Odonata from the Upper Jurassic of Bavaria with a new fossil calibration point for Zygoptera, Palaeoentomology, 2, 618, 10.11646/palaeoentomology.2.6.13 Berensmeier, 2018, Facies analysis of proximal Upper Cretaceous deposits from the southwestern Münsterland Cretaceous Basin (northwest Germany), Cretaceous Research, 87, 241, 10.1016/j.cretres.2017.04.020 Berg, 1937, A classification of fish-like vertebrates, Bulletin de l'Académie des Sciences de l'URSS, Classe des Sciences Mathématiques et Naturelles, 4, 1277 Bernard, 2010, Regulation of body temperature by some Mesozoic marine reptiles, Science, 328, 1379, 10.1126/science.1187443 Billon-Bruyat, 2005, Oxygen isotope compositions of Late Jurassic vertebrate remains from lithographic limestones of western Europe: implications for the ecology of fish, turtles, and crocodilians, Palaeogeography, Palaeoclimatology, Palaeoecology, 216, 359, 10.1016/j.palaeo.2004.11.011 Blake, 1905, A monograph of the fauna of the Cornbrash, Palaeontographical Society, 32, 33 Blanco-Piñón, 2002, Late Cretaceous (Turonian) fish assemblage from Vallecillo, northeastern Mexico, Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen, 225, 39, 10.1127/njgpa/225/2002/39 de Blainville, 1818 Blumenberg, 2012, Imbalanced nutrients as triggers for black shale formation in a shallow shelf setting during the OAE 2 (Wunstorf, Germ.), Biogeosciences, 9, 4139, 10.5194/bg-9-4139-2012 Brenner, 1976, Ostracoden und Charophyten des spanischen Wealden (Systematik, Okologie, Stratigraphie, Palaogeographie), Palaeontographica Americana, 152, 113 Blot, 1987 Breitkreuz, 1991, Fossilfunde aus der Schwarz-Bunten Wechselfolge (Ober-Cenoman bis Unter-Turon) des Ostwestfalendammes bei Bielefeld, Berichte des Naturwissenschaftlichen Vereins von Bielefeld und Umgegend, 32, 37 Brito, 2011, An updated review of the fish faunas from the Crato and Santana formations in Brazil, a close relationship to the Tethys fauna, Bulletin Kitakyushu Museum of Natural History, Serie A, 9, 107 Brunke, 2017, Dispersal of thermophilic beetles across the intercontinental Arctic forest belt during the early Eocene, Scientific Reports, 7, 12972, 10.1038/s41598-017-13207-4 Capasso, 2009, Nursallia tethysensis sp. nov., a new pycnodont fish (Neopterygii:† Halecostomi) from the Cenomanian of Lebanon, Bulletin de l'Institut Royal des Sciences Naturelles de Belgique, Sciences de la Terre, 79, 117 Cappetta, 1972, Les poissons Crétacés et Tertiaires du Bassin des Iullemmeden (Republique du Niger), Palaeovertebrata, 5, 179 Cavin, 2008, Palaeobiogeography of Cretaceous bony fishes (Actinistia, Dipnoi and Actinopterygii), 165 Cawley, 2018, A new pycnodont fish, Scalacurvichthys naishi gen. et sp. nov., from the Late Cretaceous of Israel, Journal of Systematic Palaeontology, 16, 659, 10.1080/14772019.2017.1330772 Cawley, 2019, A new genus and species of pycnodontid fish Flagellipinna rhomboides, gen. et sp. nov. (Neopterygii, Pycnodontiformes), from the Upper Cretaceous (Cenomanian) of Lebanon, with notes on juvenile form and ecology, Journal of Vertebrate Paleontology, 39, 10.1080/02724634.2019.1614012 Christensen, 1975, Upper Cretaceous belemnites from the Kristianstad area in Scania, Fossils and Strata, 7, 1, 10.18261/8200093743-1975-01 Cione, 1977, Algunas consideraciones sobre Pycnodontiformes [Pisces, Holostei] procedentes de la Formación Yacoraite, Cretácico Tardío de la Provincia de Salta, Argentina, Ameghiniana, 14, 315 Cope, 1887, Zittel's Manual of palaeontology, The American Naturalist, 21, 1014 Cronin, 2019, New Anatomical Information on the Late Cretaceous Bony Fish, Micropycnodon kansasensis (Actinopterygii: Pycnodontiformes), from the Niobrara Chalk of Western Kansas, USA, Transactions of the Kansas Academy of Science, 122, 19, 10.1660/062.122.0102 Dartevelle, 1949, Les poissons fossiles du Bas-congo et de regions voisines. Deuxieme Partie, Annales du Musée du Congo Belge, Série A, 2, 201 Davis, 1887, The fossil fishes of the Chalk of Mount Lebanon, in Syria, The Scientific Transactions of the Royal Dublin Society, 3, 457 Davis, 1890, On the fossil fish of the Cretaceous formations of Scandinavia, The scientific transactions of the Royal Dublin Society, Series, 2 4, 363 Dera, 2011, Climatic ups and downs in a disturbed Jurassic world, Geology, 39, 215, 10.1130/G31579.1 Diedrich, 2001, Die Großammoniten-Kolktaphozönosen des Puzosia-'Event I (Ober-Cenoman) von Halle/Westf. (NW-Deutschland), Münstersche Forschungen zur Geologie und Paläontologie, 90, 1 Diedrich, 2012, Stomach and gastrointestinal tract contents in Late Cenomanian (Upper Cretaceous) teleosts from Black Shales of Germany and analysis of fish mortality and food chains in the upwelling influenced pre-North Sea Basin of Europe, New Mexico Museum of Natural History and Science, 57, 241 Diedrich, 2013, Facies related phylostratigraphy of the benthic neoselachian Ptychodus from the Late Cretaceous (Cenomanian/Turonian) of the Pre-North Sea Basin of Europe, Cretaceous Research, 41, 17, 10.1016/j.cretres.2012.10.007 Diedrich, 2014, Skeleton of the fossil shark Isurus denticulatus from the Turonian (Late Cretaceous) of Germany — Ecological Coevolution with Prey of Mackerel Sharks, Paleontology Journal, 1 Dölling, 2018, Upper Cretaceous shallow-marine deposits of the southwestern Münsterland (northwest Germany) influenced by synsedimentary tectonics, Cretaceous Research, 87, 261, 10.1016/j.cretres.2017.05.002 Dunkle, 1946, 161 Eberle, 2014, First record of Eocene bony fishes and crocodyliforms from Canada's western Arctic, PloS One, 9, 10.1371/journal.pone.0096079 Ebert, 2020, A new genus of Pycnodontidae (Actinopterygii) from the Upper Jurassic of France and Germany, included in a phylogeny of Pycnodontiformes, Zoological Journal of the Linnean Society, 188, 434 Ernst, 1984, The Cenomanian–Turonian boundary problem in NW-Germany with comments on the north-south correlation to the Regensburg Area, Bulletin of the Geological Society of Denmark, 33, 103, 10.37570/bgsd-1984-33-08 Everhart, 2007, Remains of a pycnodont fish (Actinopterygii: Pycnodontiformes) in a coprolite; An uppermost record of Micropycnodon kansasensis in the Smoky Hill Chalk, western Kansas, Transactions of the Kansas Academy of Science, 110, 35, 10.1660/0022-8443(2007)110[35:ROAPFA]2.0.CO;2 Figueiredo, 1987, 25 Forey, 2003, Fossil fishes from the Cenomanian (Upper Cretaceous) of Namoura, Lebanon, Journal of Systematic Palaeontology, 1, 227, 10.1017/S147720190300107X Frickhinger, 1991 Gale, 1996, Occurrence of the belemnite Actinocamax plenus in the Cenomanian of SE France and its significance, Bulletin of the Geological Society of Denmark, 43, 68, 10.37570/bgsd-1996-43-08 Gale, 2005, Stratigraphy of the Upper Cenomanian–Lower Turonian chalk succession at Eastbourne, Sussex, UK—ammonites, inoceramid bivalves and stable carbon isotopes, Cretaceous Research, 26, 460, 10.1016/j.cretres.2005.01.006 Gayet, 1984, Ichthyoceras spinosus nov. gen., nov. sp., du Cénomanien inférieur de Hakel (Liban) et ses affinités avec le genre Trewavasia (Pisces, Pycnodontiformes, Coccodontidae), Bulletin du Museum National d'Histoire Naturelle, 6, 287 Gomez Pallerola, 1982, Nuevas aportaciones a la ictiofauna y a la flora del Neocomiense del Montsech de Rubies (Lérida), Boletin Geologico Y Minero, 93, 199 Gorjanovic-Kramberger, 1895, De Piscibus fossilibus Comeni, Mrzleci, Lesinae et M. Libanonis et appendix de piscibus oligocaenicis ad Tüffer, Sagor et Trifail, Djela Jugoslavenske Akademije Znanosti i Umjetnosti, 16, 1 Gorjanovic-Kramberger, 1902, Palaeo-Ichtyhologiai adalékok. A Magyar Kir, Földtani intézet évkönyve, 14, 1 Gouiric-Cavalli, 2019, New pycnodontiform fishes (Actinopterygii, Neopterygii) from the Early Cretaceous of the Argentinian Patagonia, Cretaceous Research, 94, 45, 10.1016/j.cretres.2018.10.003 Gregory, 1933, Fish skulls. A study of the evolution of natural mechanisms, Transactions of the American Philosophical Society, 23, 75, 10.2307/3231917 Hauschke, 2011, Oriented attachment of a stalked cirripede on an orthoconic heteromorph ammonite implications for the swimming position of the latter, Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen, 262, 199, 10.1127/0077-7749/2011/0192 Heckel, 1854, Über den Bau und die Eintheilung der Pycnodonten, nebst kurzer Beschreibung einiger neuer Arten derselben. Sitzungsberichte der Kaiserlichen Akademie der Wissenschaften, Mathematisch-Naturwissenschaftliche Klasse, 12, 433 Héran, 2006, Mammifères et Climat: Reconstitutions Paléoclimatiques du Cénozoı ¨ que d'Europe Occidentale sur la base des Faunes Fossiles (Unpubl. PhD thesis), Université Claude Bernard Lyon, 1, 349 Hetzel, 2011, Geochemical environment of Cenomanian–Turonian black shale deposition at Wunstorf (northern Germany), Cretaceous Research, 32, 480, 10.1016/j.cretres.2011.03.004 Hibbard, 1941, 71 Hibbard, 1945, Micropycnodon, a new name for Pycnomicrodon Hibbard and Graffham not Hay, Transactions of the Kansas Academy of Science, 47, 404, 10.2307/3625456 Hilbrecht, 1991, Inoceramen aus den Schwarzschiefern des basalen Unter-Turon (Oberkreide) von Helgoland und Misburg, Geologisches Jahrbuch, 120, 245 Hilbrecht, 1994, Sediment dynamics during the Cenomanian–Turonian (Cretaceous) Oceanic Anoxic Event in northwestern Germany, Facies, 30, 63, 10.1007/BF02536890 Hiss, 2007, Hesseltal-Formation, 37 Hiss, 2007, Lengerich-Formation, 41 Hoffmann, 2020, Pterosaurs ate soft-bodied cephalopods (Coleoidea), Scientific Reports, 10, 1230, 10.1038/s41598-020-57731-2 Huber, 2018, The rise and fall of the Cretaceous Hot Greenhouse climate, Global and Planetary Change, 167, 1, 10.1016/j.gloplacha.2018.04.004 Huxley, 1880, On the applications of the laws of evolution to the arrangement of the Vertebrata and more particularly of the Mammalia, Proceedings of the Zoological Society of London, 43, 649 Jarvis, 2006, Secular variation in Late Cretaceous carbon isotopes: a new δ13C carbonate reference curve for the Cenomanian–Campanian (99.6–70.6 Ma), Geological Magazine, 143, 561, 10.1017/S0016756806002421 Jarvis, 2011, Black shale deposition, atmospheric CO2 drawdown, and cooling during the Cenomanian-Turonian Oceanic Anoxic Event, Paleoceanography, 26, 1, 10.1029/2010PA002081 Jefferies, 1962, The palaeoecology of the Actinocamax plenus subzone (lowest Turonian) in the Anglo-Paris Basin, Palaeontology, 4, 609 Jenkyns, 2017, Basalt-seawater interaction, the Plenus Cold Event, enhanced weathering and geochemical change: deconstructing Oceanic Anoxic Event 2 (Cenomanian–Turonian, Late Cretaceous), Sedimentology, 64, 16, 10.1111/sed.12305 1962 Kaplan, 1992, Die Oberkreide-Aufschlüsse im Raum Lengerich/Westfalen, Geologie und Palaontologie in Westfalen, 21, 7 Kaplan, 2011, Turonium und Unterconiacium (Oberkreide) im Steinbruch DIMAC bei Halle (Westfalen), Teutoburger Wald (Östliches Münsterländer Kreidebecken), Geologie und Palaontologie in Westfalen, 81, 75 Kaplan, 2000, 90 Millionen Jahre zurück - die Steinbrüche in Lengerich. Kalk, Natur und Landschaft, 1, 31 Keller, 1982, Die Oberkreide der Sack-Mulde bei Alfeld (Cenoman - Unter-Coniac). Lithologie, Biostratigraphie Inoceramen, Geologisches Jahrbuch, 64, 3 Kemper, 1976 Kennedy, 2019, Ammoniten aus dem Turonium des Münsterländer Kreidebeckens, Das Munster, 92, 3 Khalloufi, 2010, New paleontological and geological data about Jbel Tselfat (Late Cretaceous of Morocco), Historical Biology, 22, 57, 10.1080/08912961003668756 Klug, 2012, Soft–part preservation in heteromorph ammonites from the Cenomanian–Turonian Boundary Event (OAE 2) in north–west Germany, Palaeontology, 55, 1307, 10.1111/j.1475-4983.2012.01196.x Kölbl-Ebert, 2018, A piranha-like pycnodontiform fish from the Late Jurassic, Current Biology, 28, 3516, 10.1016/j.cub.2018.09.013 Kolodny, 1991, Oxygen isotopes in phosphates of fossil fish; Devonian to Recent, 105 Kolodny, 1988, Oxygen isotopes in phosphatic fish remains from Israel: Paleothermometry of tropical Cretaceous and Tertiary shelf waters, Palaeogeography, Palaeoclimatology, Palaeoecology, 64, 59, 10.1016/0031-0182(88)90142-3 Kriwet, 1999, Pycnodont fishes (Neopterygii,† Pycnodontiformes) from the Lower Cretaceous of Uña (E-Spain) with comments on branchial teeth in pycnodontid fishes, 215 Kriwet, 2001, Palaeobiogeography of pycnodontiform fishes (Actinopterygii, Neopterygii), Seminario de Paleontología de Zaragoza, 5, 121 Kriwet, 2001, Feeding mechanisms and ecology of pycnodont fishes (Neopterygii, †Pycnodontiformes), Mitteilungen aus dem Museum für Naturkunde zu Berlin, Geowissenschaftliche Reihe, 4, 139 Kriwet, 2001, 1 Kriwet, 2002, Anomoeodus pauciseriale, a new pycnodont fish (Neopterygii, Pycnodontiformes) from the White Chalk Formation (Upper Cretaceous) of Sussex, South England, Paläontologische Zeitschrift, 76, 117, 10.1007/BF02988190 Kriwet, 2004, A new pycnodont fish genus (Neopterygii: Pycnodontiformes) from the Cenomanian (Upper Cretaceous) of Mount Lebanon, Journal of Vertebrate Paleontology, 24, 525, 10.1671/0272-4634(2004)024[0525:ANPFGN]2.0.CO;2 Kriwet, 2005, A comprehensive study of the skull and dentition of pycnodont fishes, Zitteliana, 45, 135 Kriwet, 1995, Zwei mesopelagische Raubfische (Actinopterygii: Euteleostei) aus dem Unterturon der Kronsberg-Mulde bei Hannover/Misburg (NW-Deutschland), Berliner geowissenschaftliche Abhandlungen E, 16, 335 Križnar, 2014, Ostanki zob piknodontnih rib (Actinopterygii, Pycnodontidae) iz krednih plasti Mrzleka pri Solkanu (Slovenija), RMZ Materials and Geoenvironment, 61, 183 Kruckow, 1979, Wirbeltier-Zähne aus dem Muschelkalk und der Kreide von Helgoland, Abhandlungen des naturwissenschaftlichen Vereins in Bremen, 39, 55 Lambers, 1991, The Upper Jurassic actinopterygian fish Gyrodus dichactinus Winkler, 1862 (Gyrodus hexagonus [Blainville, 1818]) from Solnhofen, Bavaria and anatomy of the Gyrodus Agassiz, Proceedings of the Koninklijke Nederlandse Akademie van Wetenschappen, 94, 489 Lane, 1944, A Survey of the Fossil Vertebrates of Kansas: Part I: The Fishes, Transactions of the Kansas Academy of Science, 47, 129, 10.2307/3625476 Lavoué, 2019, Origins of Afrotropical freshwater fishes, Zoological Journal of the Linnean Society, zlz039 Lécuyer, 1993, Thermal excursions in the ocean at the Cretaceous-Tertiary boundary(northern Morocco): δ18O record of phosphatic fish debris, Palaeogeography, Palaeoclimatology, Palaeoecology, 105, 235, 10.1016/0031-0182(93)90085-W Lécuyer, 2003, Thermal evolution of Tethyan surface waters during the Middle-Late Jurassic: Evidence from δ18O values of marine fish teeth, Paleoceanography, 18, 1076, 10.1029/2002PA000863 Lécuyer, 2013, Calibration of the phosphate δ18O thermometer with carbonate–water oxygen isotope fractionation equations, Chemical Geology, 347, 217, 10.1016/j.chemgeo.2013.03.008 Lehmann, 1999, Integrated stratigraphy and palaeoenvironment of the Cenomanian–Lower Turonian (Upper Cretaceous) of northern Westphalia, North Germany, Facies, 40, 25, 10.1007/BF02537468 Lehmann, 1997, Coelacanthiformes (Sarcopterygii, Actinistia) from the Cenomanian of NW Germany, Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen, 206, 53, 10.1127/njgpa/206/1997/53 Leonardi, 1966, L'ittiofauna cenomaniana di Floreste Messina, Palaeontographica italica, 60, 33 Licht, 2011, Late Cretaceous pycnodont fishes (Actinopterygii, Neopterygii) from Saxony (Eastern Germany), Freiberger Forschungshefte C, 540, 79 Löscher, 1910 Machado, 2006, The new genus Potiguara (Actinopterygii: Pycnodontiformes) from the Upper Cretaceous of Northeast Brazil, Journal of Vertebrate Paleontology, 26, 1, 10.1671/0272-4634(2006)26[1:TNGPAP]2.0.CO;2 Maisch, 2000, Tselfatia formosa ARAMBOURG, 1943 (Teleostei) from the Upper Cretaceous of Lower Saxony (Northern Germany), Neues Jahrbuch für Geologie und Paläontologie - Monatshefte 2000, 499, 10.1127/njgpm/2000/2000/499 Maisey, 1999, The supraotic bone in neopterygian fishes (Osteichthyes, Actinoptergii), American Museum Novitates, 3267, 1 Mannion, 2015, Climate constrains the evolutionary history and biodiversity of crocodylians, Nature Communications, 6, 8438, 10.1038/ncomms9438 Marramá, 2016, A new species of Gladiopycnodus (Coccodontoidea, Pycnodontomorpha) from the Cretaceous of Lebanon provides new insights about the morphological diversification of pycnodont fishes through time, Cretaceous Research, 61, 34, 10.1016/j.cretres.2015.12.022 Martin, 2014, Sea surface temperature contributes to marine crocodylomorph evolution, Nature Communications, 5, 1, 10.1038/ncomms5658 Martin-Abad, 2013, Historical patterns of distribution in pycnodontiform and amiiform fishes in the context of moving plates, Geologica Belgica, 16, 217 von der Marck, 1860, Ein prachtvoll erhaltener Kehlflosser aus dem westfälischen ‘Pläner mit eingelagertem Grünsand’, Correspondenzblatt des Naturhistorischen Vereins der Preußischen Rheinlande und Westphalens, 1860, 47 von der Marck, 1862, Über Elopopsis ziegleri, einen neuen Fisch aus dem Pläner von Wessum, Correspondenzblatt des Naturhistorischen Vereins der Preußischen Rheinlande und Westphalens, 1862, 70 von der Marck, 1885, Fische der Oberen Kreide Westfalen, Palaeontographica, 31, 32 Markwick, 1998, Fossil crocodilians as indicators of Late Cretaceous and Cenozoic climates: implications for using palaeontological data in reconstructing palaeoclimate, Palaeogeography, Palaeoclimatology, Palaeoecology, 137, 205, 10.1016/S0031-0182(97)00108-9 2009 Mohabey, 1996, Pycnodus lametae (Pycnodontidae), a holostean fish from freshwater Upper Cretaceous Lameta Formation of Maharashtra, Journal of the Geological Society of India, 47, 593 Müller, 2008, Ein artikulierter Fund von Ptychodus aus dem Obercenoman von Westfalen, Geologie und Palaontologie in Westfalen, 70, 55 Murray, 2013, Additions to the Late Cretaceous (Cenomanian/Turonian) actinopterygian fauna from the Agoult locality, Akrabou Formation, Morocco, and comments on the palaeoenvironment, 525 Nagler, 2017, Litholepas klausreschi gen. et sp. nov., a new neolepadine barnacle (Cirripedia, Thoracica) on a sponge from the Upper Jurassic lithographic limestones of southern Germany, Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen, 284, 29, 10.1127/njgpa/2017/0648 Neumann, 2003, A ?carcineretid crab from Lower Turonian (Cretaceous) black shales of Misburg, Hannover area (Germany), Contributions to Zoology, 72, 161, 10.1163/18759866-0720203019 Newbrey, 2008, Climate change and evolution of growth in Late Cretaceous to recent North American Esociformes, 311 Newbrey, 2008, Paleolatitudinal response of Characiformes (Teleostei: Ostariophysi) to Cenozoic climate change, Journal of Vertebrate Paleontology, 28, 121A Newbrey, 2009, Seventy-five-million-year-old tropical tetra-like fish from Canada tracks Cretaceous global warming, Proceedings of the Royal Society B: Biological Sciences, 276, 3829, 10.1098/rspb.2009.1047 Nicholson, 2015, Climate-mediated diversification of turtles in the Cretaceous, Nature Communications, 6, 7848, 10.1038/ncomms8848 Nicholson, 2016, Latitudinal diversity gradients in Mesozoic non-marine turtles, Royal Society Open Science, 3, 160581, 10.1098/rsos.160581 Nixon, 1999 Nursall, 1996, The phylogeny of pycnodont fishes, 125 Nursall, 1996, Distribution and ecology of pycnodont fishes, 115 Nursall, 1999, The family Mesturidae and the skull of pycnodont fishes, 158 Nursall, 2004, Gebrayelichthys (novum), an extraordinary genus of neopterygian fishes from the Cenomanian of Lebanon, 317 Nursall, 2008, Additional specimens from Lebanon reveal more of the structure of the pycnodont fish Trewavasia carinata (Davis, 1887), 143 Nursall, 1991, Neoproscinetes Figueiredo and Silva Santos 1987, 125 O'Brien, 2017, Cretaceous sea-surface temperature evolution: Constraints from TEX86 and planktonic foraminiferal oxygen isotopes, Earth-Science Reviews, 172, 224, 10.1016/j.earscirev.2017.07.012 O'Connor, 2019, Late Cretaceous temperature evolution of the southern high latitudes: A TEX86 perspective, Paleoceanography and Paleoclimatology, 34, 436, 10.1029/2018PA003546 Otero, 2008, Cretaceous characiform fishes (Teleostei: Ostariophysi) from Northern Tethys: description of new material from the Maastrichtian of Provence (Southern France) and palaeobiogeographical implications, Geological Society, London, Special Publications, 295, 155, 10.1144/SP295.10 Owen, 1996, Interbasinal correlation of the Cenomanian stage; testing the lateral continuity of sequence boundaries, Geological Society, London, Special Publications, 104, 269, 10.1144/GSL.SP.1996.104.01.16 Paul, 1999, The Cenomanian–Turonian boundary at Eastbourne (Sussex, UK): a proposed European reference section, Palaeogeography, Palaeoclimatology, Palaeoecology, 150, 83, 10.1016/S0031-0182(99)00009-7 Peybernes, 1972, La série de passage du Jurassique au Crétacé dans le Bassin sud-pyrénéen (Espagne), Comptes Rendus de I'Académie des Sciences, 274, 3348 1850 1858 Poyato-Ariza, 2010, Polazzodus, gen. nov., a new pycnodont fish from the Late Cretaceous of northeastern Italy, Journal of Vertebrate Paleontology, 30, 650, 10.1080/02724631003762955 Poyato-Ariza, 2013, Sylvienodus, a new replacement genus for the Cretaceous pycnodontiform fish “Pycnodus” laveirensis, Comptes Rendus Palevol, 12, 91, 10.1016/j.crpv.2013.01.001 Poyato-Ariza, 2013, History of two lineages: comparative analysis of the fossil record in Amiiformes and Pycnodontiformes (Osteichthyes, Actinopterygii), Revista Espanola de Paleontologia, 28, 79 Poyato-Ariza, 2000, A new pycnodontiform fish from the Early Cretaceous of Las Hoyas (Cuenca, Spain), Bulletin de la Societe Geologique de France, 171, 251, 10.2113/171.2.251 Poyato-Ariza, 2002, A new insight into pycnodontiform fishes, Geodiversitas, 24, 139 Poyato-Ariza, 2004, The new pycnodontid fish genus Turbomesodon, and a revision of Macromesodon based on new material from the Lower Cretaceous of Las Hoyas, Cuenca, Spain, 341 Poyato-Ariza, 2005, Akromystax tilmachiton gen. et sp. nov., a new pycnodontid fish from the Lebanese Late Cretaceous of Haqel and En Nammoura, Journal of Vertebrate Paleontology, 25, 27, 10.1671/0272-4634(2005)025[0027:ATGESN]2.0.CO;2 Pucéat, 2003, Thermal evolution of Cretaceous Tethyan marine waters inferred from oxygen isotope composition of fish tooth enamels, Paleoceanography, 18, 1029, 10.1029/2002PA000823 Pucéat, 2007, Fish tooth δ18O revising Late Cretaceous meridional upper ocean water temperature gradients, Geology, 35, 107, 10.1130/G23103A.1 Regan, 1923, The skeleton of Lepidosteus, with remarks on the origin and evolution of the lower neopterygian fishes, Proceedings of the Zoological Society of London 1923, 445, 10.1111/j.1096-3642.1923.tb02191.x Richardt, 2010, Das Cenoman im Teutoburger Wald bei Halle/Westfalen: Eine integrierte stratigraphisch-sedimentologische, mikrofazielle und geophysikalische Analyse, Geologie und Palaontologie in Westfalen, 78, 5 Richardt, 2012, Lower Upper Cretaceous standard section of the southern Münsterland (NW Germany)—carbon stable-isotopes and sequence stratigraphy, Newsletters on Stratigraphy, 45, 1, 10.1127/0078-0421/2012/0012 Robaszynski, 1998, Sequence stratigraphy in the Cretaceous of the Anglo-Paris Basin, exemplified by the Cenomanian stage, 363 1841 Roemer, 1854, Die Kreidebildungen Westphalens, Verhandlungen des Naturwissenschaftlichen Vereins der preussischen Rheinlande und Westphalens, 11, 29 Schweigert, 2010, New genera and species of “thalassinideans” (Crustacea: Decapoda: Axiidea, Gebiidea) from the Upper Jurassic of Eichstätt and Brunn (S Germany), Archaeopteryx, 27, 21 Scotese, 2014, Atlas of Late Cretaceous Maps, PALEOMAP Atlas for ArcGIS, vol. 2 Schöllmann, 2012, Fossilerhaltung und Taphonomie von Stramentum (Stramentum) pulchellum (Sowerby, 1843) (Crustacea: Stramentidae) aus dem Unterturon des Teutoburger Waldes (Nordrhein-Westfalen, Deutschland), Geologie und Palaontologie in Westfalen, 84, 55 Schultze, 1993, The head skeleton of fishes, vol. 2, 189 Schultze, 1986, Reevaluation of the caudal skeleton of actinopterygian fishes: I. Lepisosteus and Amia, Journal of Morphology, 190, 215, 10.1002/jmor.1051900206 Schultze, 1985, The panderichthyid fish Elpistostege: a close relative of tetrapods, Palaeontology, 28, 293 Siegfried, 1954, Die Fisch-Fauna des westfälischen Ober-Senons, Palaeontographica Americana, 106, 1 Siverson, 1992, Biology, dental morphology and taxonomy of lamniform sharks from the Campanian of the Kristianstad Basin, Sweden, Palaeontology, 35, 519 Smith, 2006, Rapid Asia–Europe–North America geographic dispersal of earliest Eocene primate Teilhardina during the Paleocene–Eocene thermal maximum, Proceedings of the National Academy of Sciences of the United States of America, 103, 11223, 10.1073/pnas.0511296103 Smith, 2019, The oldest articulated mosasaurian remains (earliest Turonian) from Germany, Geologie und Palaontologie in Westfalen, 91, 3 Sorbini, 1976, 479 Sørensen, 2008, A brachiopod boring (Podichnus) in a Late Cretaceous oyster from a mangrove-like environment, Skåne, Sweden, Lethaia, 41, 295, 10.1111/j.1502-3931.2008.00107.x Sørensen, 2012, Adaptive morphologies and guild structure in a high-diversity bivalve fauna from an early Campanian rocky shore, Ivö Klack (Sweden), Cretaceous Research, 33, 21, 10.1016/j.cretres.2011.07.004 Sørensen, 2013, Food resources and habitat selection of a diverse vertebrate fauna from the upper lower Campanian of the Kristianstad Basin, southern Sweden, Cretaceous Research, 42, 85, 10.1016/j.cretres.2013.02.002 Stidham, 2016, The palaeobiology of high latitude birds from the Early Eocene greenhouse of Ellesmere Island, Arctic Canada, Scientific Reports, 6, 20912, 10.1038/srep20912 Stinnesbeck, 2019, Paleobiology and taphonomy of the pycnodont fish Nursallia gutturosum, based on material from the Latest-Cenomanian–middle Turonian Vallecillo platy limestone, Mexico, PalZ, 93, 659, 10.1007/s12542-019-00461-2 Stumpf, 2019, A new genus and species of extinct ground shark,† Diprosopovenator hilperti, gen. et sp. nov. (Carcharhiniformes,† Pseudoscyliorhinidae, fam. nov.), from the Upper Cretaceous of Germany, Journal of Vertebrate Paleontology, 10.1080/02724634.2019.1593185 Surlyk, 1974, Epifaunal zonation on an Upper Cretaceous rocky coast, Geology, 2, 529, 10.1130/0091-7613(1974)2<529:EZOAUC>2.0.CO;2 Surlyk, 2010, An early Campanian rocky shore at Ivö Klack, southern Sweden, Cretaceous Research, 31, 567, 10.1016/j.cretres.2010.07.006 Taverne, 1981, Les Actinoptérygiens de L'Aptien inférieur (Töck) d'Helgoland, Mittelungen aus dem geologish-paläontologisches Institut, 51, 43 Taverne, 1997, Les poissons crétacés de Nardò. 5°. Pycnodus nardoensis sp. nov. et considérations sur l’ostéologie du genre Pycnodus (Actinopterygii, Halecostomi, Pycnodontiformes), Bollettino del Museo di Storia Naturale di Verona, 21, 437 Taverne, 2013, Osteology and relationships of Rhinopycnodus gabriellae gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon, European Journal of Taxonomy, 67, 1 Taverne, 2013, Gladiopycnodontidae, a new family of pycnodontiform fishes from the Late Cretaceous of Lebanon, with the description of three genera, European Journal of Taxonomy, 57, 1 Taverne, 2014, On the “Coccodus” lindstroemi species complex (Pycnodontiformes, Gladiopycnodontidae) from the marine Late Cretaceous of Lebanon, with the description of two new genera, European Journal of Taxonomy, 1 Taverne, 2014, Ostéologie et phylogénie des Coccodontidae, une famille remarquable de poissons Pycnodontiformes du Crétacé supérieur marin du Liban, avec la description de deux nouveaux genres, Palaeontos, 25, 3 Taverne, 2015, Osteology and relationships of Acrorhinichthys poyatoi gen. et sp. nov. (Pycnodontiformes) from the marine Late Cretaceous of Lebanon, European Journal of Taxonomy, 116, 1 Taverne, 2015, New data on the osteology and phylogeny of Gladiopycnodontidae (Pycnodontiformes), a tropical fossil fish family from the marine Upper Cretaceous of Lebanon, with the description of four genera, Geo-Eco-Trop, 39, 217 Taverne, 2018, Osteology and relationships of Libanopycnodus wenzi gen. et sp. nov. and Sigmapycnodus giganteus gen. et sp. nov. (Pycnodontiformes) from the Late Cretaceous of Lebanon, European Journal of Taxonomy, 1 Taverne, 2018, Osteology and phylogenetic relationships of Haqelpycnodus picteti gen. and sp. nov., a new pycnodont fish genus (Pycnodontidae) from the marine Late Cretaceous tropical sea of Lebanon, Geo-Eco-Trop, 42, 117 Taverne, 2015, Paranursallia spinosa n. gen., n. sp., a new Upper Cretaceous pycnodontiform fish from the Eurafrican Mesogea, Geodiversitas, 37, 215, 10.5252/g2015n2a3 Taverne, 2019, The pycnodont fishes from the Lower Cretaceous of the Capo d'Orlando, near Castellammare di Stabia (Naples, Campania, southern Italy), with the description of the new genus Costapycnodus, Geo-Eco-Trop, 43, 53 Tintori, 1981, Two new Pycnodonts (Pisces, Actinopterygii) from the Upper Triassic of Lombardy (N. Italy), Rivista Italiana di Paleontologia e Stratigrafia, 86, 795 Trabucho Alexandre, 2010, The mid-Cretaceous North Atlantic nutrient trap: black shales and OAEs, Paleoceanography, 25, PA4201, 10.1029/2010PA001925 Tsikos, 2004, Carbon-isotope stratigraphy recorded by the Cenomanian–Turonian Oceanic Anoxic Event: correlation and implications based on three key-locations, Journal of the Geological Society of London, 161, 711, 10.1144/0016-764903-077 Voigt, 2007, Late Cenomanian to Middle Turonian high-resolution carbon isotope stratigraphy: New data from the Münsterland Cretaceous Basin, Germany, Earth and Planetary Science Letters, 253, 196, 10.1016/j.epsl.2006.10.026 Voigt, 2008, The Cenomanian–Turonian of the Wunstorf section (North Germany): global stratigraphic reference section and new orbital time scale for Oceanic Anoxic Event 2, Newsletters on Stratigraphy, 43, 65, 10.1127/0078-0421/2008/0043-0065 Vullo, 2017, A unique Cretaceous–Paleogene lineage of piranha-jawed pycnodont fishes, Scientific Reports, 7, 6802, 10.1038/s41598-017-06792-x Vullo, 2018, Reassessment of Cosmodus Sauvage, 1879, a poorly known genus of large pycnodont fish (Actinopterygii, Pycnodontiformes) from the Cenomanian (Upper Cretaceous) of Western Europe, Cretaceous Research, 91, 217, 10.1016/j.cretres.2018.05.019 Wagner, 1851, Beiträge zur Kenntniss der in den lithographischen Schiefern abgelagerten urweltlichen Fische, Abhandlungen der Mathematisch-Physikalischen Classe der königlich bayerischen Akademie der Wissenchaften, München, 6, 1 Weiler, 1935, Ergebnisse der Forschungsreisen Prof. E. Stromers in den Wüsten Ägyptens. II: Wirbeltiere der Baharîje-Stufe (unterstes Cenoman). 16. Neue Untersuchungen an den Fischresten, Abhandlungen der Bayerischen Akademie der Wissenschaften, Mathematisch-Naturwissenschaftliche Abteilung, N. F., 32, 1 Welsh, 2013, The ontogeny of homeranges: evidence from coral reef fishes, Proceedings of the Royal Society, B, 280, 20132066, 10.1098/rspb.2013.2066 Wenz, 1969, Note sur quelques poissons actinoptérygiéns du Crétacé supérieur de Bolivie, Bulletin de la Societe Geologique de France, 7, 434, 10.2113/gssgfbull.S7-XI.3.434 Wenz, 1989, Iemanja palma n. g., n. sp., Gyrodontidae nouveau (Pisces, Actinopterygii) du Crétacé inférieur de la Chapada do Araripe (NE du Brésil), Comptes Rendus de l'Académie des sciences. Série 2, Mécanique, Physique, Chimie, Sciences de l'univers, Sciences de la Terre, 308, 975 White, 1927, Two new species and a new genus of Cretaceous pycnodonts from the south of England, Annals and Magazine of Natural History, Series, 9, 186, 10.1080/00222932708655582 White, 1941, Notes on the nomenclature of fossil fishes. Part III: Homonyms M-Z, Annals and Magazine of Natural History ser. II, 7, 395 Wiese, 2001, The potential of the Lengerich section (Münster Basin, northern Germany) as a possible candidate Global boundary Stratotype Section and Point (GSSP) for the Middle/Upper Turonian boundary, Cretaceous Research, 22, 549, 10.1006/cres.2001.0278 Wiese, 2004, Der Mittel-/Ober-Turon Grenzbereich im Raum Lengerich, Geologie und Palaontologie in Westfalen, 62, 37 Wilmsen, 2003, Sequence stratigraphy palaeoceanography of the Cenomanian Stage in northern Germany, Cretaceous Research, 24, 525, 10.1016/S0195-6671(03)00069-7 Winkler, 2017, Two new penaeid shrimps (Crustacea: Decapoda: Dendrobranchiata) from the Solnhofen lithographic limestones (Upper Jurassic, southern Germany), Neues Jahrbuch für Geologie und Paläontologie - Abhandlungen, 283, 9, 10.1127/njgpa/2017/0623 Wippich, 2005, Ammonoideen-Kiefer (Mollusca, Cephalopoda) aus Schwarzschiefern des Cenoman⁄Turon–Grenzbereichs (Oberkreide) im nördlichen Westfalen, Geologie und Palaontologie in Westfalen, 65, 77 Wittler, 1995, Fische aus dem Turon des Dortmunder Stadtgebietes, Arbeitskreis Palaontologie Hannover, 23, 41 Wittler, 2003, Fazies und Fauna der Oberkreidegesteine im Dortmunder Stadtgebiet. I: Temporäre Aufschlüsse im Turon und Unterconiac zwischen 1988 und 2001, Stratigraphie und Fossilführung. Dortmunder Beiträge zur Landeskunde, naturwissenschaftliche Mitteilungen, 36, 247 Wittler, 2004 Woodward, 1893, Some Cretaceous pycnodont fishes, Geological Magazine, 10, 433, 10.1017/S0016756800174072 Woodward, 1895 Woodward, 1908, On some fish-remains from the Lameta beds at Dangargaon, Central Provinces, Palaeontologia Indica, 3, 1 Woodward, 1909, The fossil fishes of the English Chalk. Part V, Monograph of the Palaeontographical Society, 63, 153, 10.1080/02693445.1909.12035546 Woodward, 1918, The fossil fishes of the English Wealden and Purbeck Formations. Part 2, Monograph of the Palaeontographical Society, 70, 49, 10.1080/02693445.1918.12113271 Zawischa, 1982, Saurierzähne aus Wunstorf, Arbeitskreis Palaontologie Hannover, 10, 16 Zheng, 2013, Changing ocean circulation and hydrothermal inputs during Ocean Anoxic Event 2 (Cenomanian–Turonian): evidence from Nd-isotopes in the European shelf sea, Earth and Planetary Science Letters, 375, 338, 10.1016/j.epsl.2013.05.053