2025/03/23 by Zuorui Liu, Amy L. Prendergast, Russell N. Drysdale +2 · 2 voices
Environmental Science · Arts and Humanities · Earth and Planetary Sciences · #Isotope Analysis in Ecology #Forensic Anthropology and Bioarchaeology Studies #Archaeology and ancient environmental studies
paper · doi:10.1016/j.palaeo.2025.112908
Oxygen isotope compositions in tooth dentine of Spinosaurus aegyptiacus were investigated as a potential proxy for high-resolution reconstructions of palaeoenvironments in Cenomanian Cretaceous Morocco. The dentine was sampled sequentially along the tooth growth direction, and the successive δ 18 O values exhibited cycles which likely tracked the oxygen isotope compositions of ingested water and inferred changes in additional palaeoenvironmental properties. A conceptual model of catchment palaeohydrology was reconstructed to explain the mechanisms of isotopic variation. Seasonally variable water balance in the catchment or changes in water sources throughout the extensive deltaic environments are the most likely explanations for the seasonal profiles. With analysis of isotopic change in the conceptual model and comparison with data of modern tropical and subtropical deltas, we found similarities between palaeoclimates and modern data, and effectively identified the wet and dry seasons represented by troughs and peaks in the δ 18 O curves. These preliminary results demonstrated that palaeoenvironmental information at sub-seasonal resolution can be well preserved in theropod tooth dentine. The methodology developed in this study can be applied to the existing abundant reserves of theropod teeth to construct a Mesozoic palaeoclimatic database. • Theropod tooth dentine can be used for palaeoenvironmental reconstructions. • δ 18 O records from Spinosaurus dentine carbonate reflect local climatic changes. • The δ 18 O records suggest palaeoclimates in the Kem Kem beds share certain similarities to modern tropical and subtropical river deltas.