Early Eocene fish otoliths from the eastern and southern USA

  • Chien-Hsiang Lin Biodiversity Research Center, Academia Sinica, 128 Academia Road, Seca 2, Nankang, Taipei 11529, Taiwan https://orcid.org/0000-0002-9843-9729
  • Etienne Steurbaut Royal Belgian Institute of Natural Sciences, 29 Vautier Street, 1000 Brussels, Belgium
  • Dirk Nolf Royal Belgian Institute of Natural Sciences, 29 Vautier Street, 1000 Brussels, Belgium
Keywords: paleodiversity, Eocene, paleoecology, faunal comparison

Abstract

A collection of 1149 otoliths of the Ypresian and Ypresian–Lutetian transition (early Eocene) from 18 sites across five states in the eastern and southern regions of the USA was analyzed. In total, 33 otolith-based taxa are documented, of which 27 are identified at the species level. Nine of these are introduced as new species: “Congerbiaculeatus sp. nov., Bauzaia gibbosa sp. nov., Ampheristus brevicaudatus sp. nov., Symmetrosulcus virginicus sp. nov., Neobythites longesulcatus sp. nov., “Neobythitespamunkeyensis sp. nov., “Neobythitesstringeri sp. nov., Waitakia dorsogibbosa sp. nov., and “Haemulonypresiensis sp. nov. The assemblages are distinct when compared to their younger Eocene counterparts in America. This distinction is primarily characterized by the high proportion of the newly introduced species or exclusive Ypresian species. Additionally, we highlight the presence of 10 amphi-Atlantic species originally described in European deposits. Significantly, the composition of the otolith collection supports the interpretation of a shallow-water environment for the sampled sites during the Ypresian. This ecological setting appears to persist into the subsequent middle and late Eocene within the same geographic region.

References

Agnini C., Fornaciari E., Raffi I., Catanzariti R., Pälike H., Backman J. & Rio D. 2014. Biozonation and biochronology of Paleogene calcareous nannofossils from low and middle latitudes. Newsletters on Stratigraphy 47: 131–181. https://doi.org/10.1127/0078-0421/2014/0042

Dockery D.T.III. & Thompson D.E. 2016. The Geology of Mississippi. University Press of Mississippi, Jackson. Mississippi Department of Environmental Quality, Jackson.

Ebersole J.A., Cicimurri D.J. & Stringer G.L. 2019. Taxonomy and biostratigraphy of the elasmobranchs and bony fishes (Chondrichthyes and Osteichthyes) of the lower-to-middle Eocene (Ypresian to Bartonian) Claiborne Group in Alabama, USA, including an analysis of otoliths. European Journal of Taxonomy 585: 1–274. https://doi.org/10.5852/ejt.2019.585

Frizzell D.L. 1965. Otolith-based genera and lineages of fossil bonefishes (Clupeiformes, Albulidae). Senckenbergiana Lethaea 46a: 85–110.

Frizzell D.L. & Dante J.H. 1965. Otoliths of some early Cenozoic fishes of the Gulf Coast. Journal of Paleontology 39: 687–718.

Frizzell D.L. & Lamber C.K. 1961. New genera and species of myripristid fishes, in the Gulf Coast Cenozoic, known from otoliths (Pisces, Beryciformes). Bulletin of the University of Missouri School of Mines and Metallurgy Technical Series 100: 1–25.

Frizzell D.L. & Lamber C.K. 1962. Distinctive “congrid type” fish otoliths from the lower Tertiary of the Gulf Coast (Pisces: Anguilliformes). Proceedings of the California Academy of Science, Series 4 32: 87–101.

Garvie C.L. 2013. New Eocene mollusca from the collections of the Texas natural science center. Bulletins of American Paleontology 384: 163–183.

Jiang M.M. 1998. Middle Eocene through basal Miocene sequence bio-stratigraphy of the western Gulf Coast region. Marine and Petroleum Geology 14 (7/8): 855–866. https://doi.org/10.1016/S0264-8172(97)00049-4

Koken E. 1884. Ueber Fisch-Otolithen, insbesondere über diejenige der norddeutschen Oligocän-Ablagerungen. Zeitschrift der Deutschen Geologischen Gesellschaft 36: 500–565.

Koken E. 1888. Neue Untersuchungen an tertiären Fisch-Otolithen. Zeitschrift der Deutschen Geologischen Gesellschaft 40: 274–305.

Lin C.-H. & Chang C.-W. 2012. Otolith Atlas of Taiwan Fishes. National Museum of Marine Biology and Aquarium, Pingtung, Taiwan.

Lin C.-H. & Nolf D. 2022. Middle and late Eocene fish otoliths from the eastern and southern USA. European Journal of Taxonomy 814 (1): 1–122. https://doi.org/10.5852/ejt.2022.814.1745

Lin C.-H., Brzobohatý R., Nolf D. & Girone A. 2017a. Tortonian teleost otoliths from northern Italy: taxonomic synthesis and stratigraphic significance. European Journal of Taxonomy 322: 1–44. https://doi.org/10.5852/ejt.2017.322

Lin C.-H., Nolf D., Steurbaut E. & Girone A. 2017b. Fish otoliths from the Lutetian of the Aquitaine Basin (SW France), a breakthrough in the knowledge of the European Eocene ichthyofauna. Journal of Systematic Paleontology 15 (11): 879–907. https://doi.org/10.1080/14772019.2016.1246112

Molina E., Alegret L., Apellaniz E., Bernaola G., Caballero F., Dinarès-Turell J., Hardenbol J., Heilmann-Clausen C., Larrasoaña J.C., Luterbacher H., Monechi S., Ortiz S., Orue-Etxebarria X., Payros A., Pujalte V., Rodríguez-Tovar F.J., Tori F., Tosquella J. & Uchman A. 2011. The Global Standard Stratotype Section and Point (GSSP) for the base of the Lutetian Stage at the Gorrondatxe section (Spain). Episodes 34 (2): 86–108. https://doi.org/10.18814/epiiugs/2011/v34i2/006

Müller A. 1999. Ichthyofaunen aus dem atlantischen Tertiär der USA. Leipziger Geowissenschaften 9/10: 1–360.

Nelson J.S., Grande T.C. & Wilson M.V.H. 2016. Fishes of the World. John Wiley & Sons, Inc., Hoboken, NJ. https://doi.org/10.1002/9781119174844

Nolf D. 1985. Otolithi Piscium. In: Schultze H.P. (ed.) Handbook of Palaeoichthyology Volume 10: 1–145. Gustav Fischer Verlag, Stuttgart.

Nolf D. 1995. Studies on fossil otoliths – the state of the art. In: Secor D., Dean J. & Campana S. (eds) Recent Developments in Fish Otolith Research: 513–544. University of South Carolina Press, Columbia.

Nolf D. 2003. Revision of the American otolith-based fish species described by Koken in 1888. Louisiana Geological Survey, Geological Pamphlet 12: 1–20.

Nolf D. 2013. The Diversity of Fish Otoliths, Past and Present. Royal Belgian Institute of Natural Sciences, Brussels.

Nolf D. & Dockery D.T. 1993. Fish otoliths from the Matthews Landing Marl Member (Porters Creek Formation), Paleocene of Alabama. Mississippi Geology 14 (2): 24–39.

Payros A., Ortiz S., Millán I., Arostegi J., Orue-Etxebarria X. & Apellaniz E. 2015. Early Eocene climatic optimum: Environmental impact on the North Iberian continental margin. Geological Society of America Bulletin 127 (11–12): 1632–1644. https://doi.org/10.1130/B31278.1

Perch-Nielsen K. 1985. Cenozoic calcareous nannofossils. In: Bolli H.M., Saunders J.B. & Perch-Nielsen K. (eds) Plankton Stratigraphy. Cambridge Earth Science Series 1 (11): 427–554.

Priem F. 1913. Sur les otolithes de l’Eocene du Cotentin et de Bretagne. Bulletin de la Société géologique de France 13: 151–158.

Sams R.H. & Gaskell B. 1990. Sequence stratigraphy of the Reklaw Formation, Texas Gulf Coast: a marine transgressive systems tract of Eocene age. GCSSEPM Foundation 11th Annual Research Conference: 307–320. https://doi.org/10.5724/gcs.90.11.0307

Schwarzhans W. 2007. The otoliths from the middle Eocene of Osteroden near Bramsche, north-western Germany. Neues Jahrbuch für Geologie und Paläontologie, Abhandlungen 244: 299–369. https://doi.org/10.1127/0077-7749/2007/0244-0299

Schwarzhans W. 2019. Reconstruction of the fossil marine bony fish fauna (Teleostei) from the Eocene to Pleistocene of New Zealand by means of otoliths. Memorie della Società Italiana di Scienze naturali e del Museo di Storia naturale di Milano 46: 3–326.

Schwarzhans W. & Stringer G.L. 2020. Fish otoliths from the late Maastrichtian Kemp Clay (Texas, USA) and the early Danian Clayton Formation (Arkansas, USA) and an assessment of extinction and survival of teleost lineages across the K-Pg boundary based on otoliths. Rivista italiana di Paleontologia e Stratigraphia 126: 395–446. https://doi.org/10.13130/2039-4942/13425

Speijer R.P., Pälike H., Hollis C.J., Hooker J.J. & Ogg J.G. 2020. The Paleogene Period. In: Gradstein F.M., Ogg J.G., Schmitz M.D. & Ogg G.M. (eds) The Geologic Time Scale 2020: 1087–1140. Elsevier, Amsterdam. https://doi.org/10.1016/B978-0-12-824360-2.00028-0

Steurbaut E. & Nolf D. 2021. The Mont-des-Récollets section (N France): a key site for the Ypresian-Lutetian transision at mid-latitudes – reassesment of the boundary criterion for the base-Lutetian GSSP. Geodiversitas 43 (11): 311–363. https://doi.org/10.5252/geodiversitas2021v43a11

Stinton F.C. 1966. Fish otoliths from the London Clay. In: Casier E. (ed.) Faune ichthyologique du London Clay 2: 404–464. Trustees of the British Museum (Natural History), London.

Stinton F.C. 1977. Fish otoliths from the English Eocene (part 2). Palaeontographical Society Monographs 548: 57–126. https://doi.org/10.1080/25761900.2022.12131734

Stinton F.C. 1978. Fish otoliths from the English Eocene (part 3). Palaeontographical Society Monographs 555: 127–189. https://doi.org/10.1080/25761900.2022.12131741

Strickland L. 1985. Pamunkey River Field Trip. George Washington University, Washington, DC.

Stringer G.L. 1977. A Study of the Upper Eocene Otoliths and Related Fauna of the Yazoo Clay in Caldwell Parish, Louisiana. Master’s thesis, University of Louisiana at Monroe, Monroe, LA.

Stringer G.L. 1979. A study of the upper Eocene otoliths of the Yazoo Clay in Caldwell Parish, Louisiana. Tulane Studies in Geology and Paleontology 15: 95–105.

Stringer G.L. 1986. Teleostean otoliths and their paleoecological implications at the Montgomery Landing site. In: Schiebout J.A. & van den Bold W.A. (eds) Montgomery Landing Site, Marine Eocene (Jackson) of Central Louisiana: 209–222. Proceedings of a Symposium, Gulf Coast Association of Geological Societies, Baton Rouge, LA.

Stringer G.L. 2016. Evidence and implications of marine invertebrate settlement on Eocene otoliths from the Moodys Branch Formation of Montgomery Landing (Louisiana, USA). Cainozoic Research 16: 3–12.

Stringer G.L. & Breard S.Q. 1997. Comparison of otolith-based paleoecology to other fossil groups: an example from the Cane River Formation (Eocene) of Louisiana. Transactions of the Gulf Coast Association of Geological Societies 47: 563–570.

Stringer G.L. & Schwarzhans W. 2021. Upper Cretaceous teleostean otoliths from the Severn Formation (Maastrichtian) of Maryland, USA, with an unusual occurrence of Siluriformes and Beryciformes and the oldest Atlantic coast Gadiformes. Cretaceous Research 125 (104867): 1–29. https://doi.org/10.1016/j.cretres.2021.104867

Stringer G.L., Parmley D. & Quinn A. 2022. Eocene teleostean otoliths, including a new taxon, from the Clinchfield Formation (Bartonian) in Georgia, USA, with biostratigraphic, biogeographic, and paleoecologic implications. Palaeovertebrata 45 (1): e1. https://doi.org/10.18563/pv.45.1.e1

Toulmin L.D. 1977. Stratigraphic Distribution of Paleocene and Eocene fossils in the Eastern Gulf Coast region. Geological Survey of Alabama, Monograph 13.

Van der Laan R., Eschmeyer W. & Fricke R. 2014. Family-group names of Recent fishes. Zootaxa 3882 (2): 1–230. https://doi.org/10.11646/zootaxa.3882.1.1

Ward L.W. 1985. Stratigraphy and characteristic mollusks of the Pamunkey Group (lower Tertiary) and the Old Church Formation of the Chesapeake Group-Virginia Coastal Plain. US Geological Survey Professional Paper 1346: 1–78. https://doi.org/10.3133/pp1346

Published
2024-06-04
How to Cite
Lin, C.-H., Steurbaut, E., & Nolf, D. (2024). Early Eocene fish otoliths from the eastern and southern USA. European Journal of Taxonomy, 935(1), 203-240. https://doi.org/10.5852/ejt.2024.935.2557
Section
Research article