Earliest Danian outer neritic elasmobranch assemblages reveal an environmentally controlled faunal turnover at the Cretaceous–Palaeogene boundary in the northern Tethyan Realm (Austria)

Author:

Feichtinger Iris12ORCID,Pollerspöck Jürgen3ORCID,Harzhauser Mathias12ORCID,Auer Gerald1ORCID,Ćorić Stjepan4ORCID,Kranner Matthias2ORCID,Beaury Bernhard5,Guinot Guillaume6ORCID

Affiliation:

1. Institute of Earth Sciences, NAWI Geocenter University of Graz Graz Austria

2. Geological–Palaeontological Department Natural History Museum Vienna Vienna Austria

3. Bavarian State Collection of Zoology Munich Germany

4. GeoSphere Austria Vienna Austria

5. Seerosenweg 10b Übersee 83236 Germany

6. Institut des Sciences de l'Evolution de Montpellier, CNRS, IRD Université de Montpellier Montpellier France

Abstract

AbstractThis study reports elasmobranch remains from two fossil‐rich horizons in the earliest Danian Olching Formation at Waidach, Austria. These outer neritic assemblages complement previous fine‐scale bulk‐sampling of latest Maastrichtian horizons at Waidach and document a regional elasmobranch faunal turnover across the Cretaceous–Palaeogene (K–Pg) boundary. The Danian assemblages show homogeneity in species richness and are dominated by squaliforms. The fauna comprises 16 species belonging to 12 genera including several new taxa (Centrodeania rugosa gen. et sp. nov., Centrodeania annae gen. et sp. nov., Incognitorapax fernsebneri gen. et sp. nov., Scyliorhinus alaformis sp. nov.). Comparison with latest Maastrichtian assemblages from Waidach revealed a marked faunal turnover across the K–Pg boundary associated with an increase in species richness and shift in abundance from Squaliformes to Carcharhiniformes. This is associated with marked environmental changes from a deep marine, dysoxic setting in the Maastrichtian to a more oxygenated, shallower environment in the earliest Danian. The turnover was driven by environmentally induced regional changes in species geographic ranges. High diversity in the Danian fauna suggests that the habitability of the corresponding palaeoenvironment was preserved or recovered immediately after the K–Pg event. Comparison with other elasmobranch assemblages across the K–Pg boundary highlights a strong control of local palaeoenvironmental settings over the timing and magnitude of the turnover. Our study emphasizes the importance of successive sampling to disentangle local from general patterns of faunal turnover during the K–Pg event and to better assess the consequences of this extinction event over elasmobranch diversity.

Funder

Karl-Franzens-Universität Graz

Publisher

Wiley

Subject

Paleontology

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