2025/10/25 by Mohamad Bazzi, Mikael Siversson, Sabine P. Wintner +8 · 1 voice · 1 citation
Earth and Planetary Sciences · Environmental Science · #Adaptive radiation #Ecological niche #Extant taxon #Extinct species #Fish biology, ecology, and behavior #Ichthyology and Marine Biology #Intraspecific competition #Paleontology and Evolutionary Biology #Taxon
paper · pdf · doi:10.1038/s42003-025-08930-y
published in Communications Biology 8(1), 1499 (Nature Portfolio)
openalex created_date 2025/10/25 · openalex publication_date 2025/10/25 · openalex updated_date 2026/07/23
Lamniform sharks are amongst the largest-bodied extant fishes and have an evolutionary history spanning ~135 million years (Ma). Fossils correlate their initial development of mega-body size ( ≥ 6 m) with ecological radiation as marine top-predators during the later part of the mid-Cretaceous (after the late Albian, ~100 Ma). Here, we push back this earliest appearance of gigantic lamniforms by ~15 Ma (upper Aptian, ~115 Ma) with the discovery of enormous cardabiodontid shark remains from northern Australia. We compiled a comprehensive dataset of vertebral centrum diameters versus maximum body length measurements for living lamniforms to calculate length and mass estimates of extinct taxa using both intraspecific and interspecific regression models. Our results show that mega-body size is an ancient lamniform trait, with the Australian cardabiodontid being around 6–8 m and over 3 tons. This rivalled some of the largest coeval marine reptiles and suggests that lamniforms invaded top-predator niches from an early stage in their adaptive evolution. The earliest appearance of mega-body size in sharks is pushed back by 15 million years with the discovery of new fossils from Northern Australia. Using a comprehensive dataset of living sharks to estimate sizes of extinct taxa, results demonstrate that mega-body size is an ancient trait.