2022/09/27 by Steffen Kiel, James L. Goedert, Cheng‐Hsiu Tsai · 1 citation
Agricultural and Biological Sciences · Environmental Science · Earth and Planetary Sciences · #Cephalopods and Marine Biology #Marine animal studies overview #Marine and coastal plant biology
paper · pdf · doi:10.1111/jbi.14488
openalex publication_date 2022/09/27 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/05
Abstract Aim Nautilus and Allonautilus , last members of the once widespread nautiloid cephalopods, are today restricted to the deep central Indo‐West Pacific Ocean, for reasons that remain unclear. Cephalopod evolution is generally considered as being driven by vertebrate predation; therefore, we investigated the role of whales and seals in the decline of nautiloids through the Cenozoic. Location Global. Taxon Nautiloids, pinnipeds, cetaceans. Methods Distribution data for nautiloids, pinnipeds and cetaceans through the Cenozoic were compiled and plotted on a series of paleogeographic maps. Nautiloid shell sizes were compiled and plotted against the first appearance of pinnipeds and cetaceans in key regions. Results From the Oligocene onward, nautiloids became extinct in areas where pinnipeds appeared. The exception is the agile nautiloid Aturia , extinct globally at the end of the Miocene. A major role of odontocetes in the demise of nautiloids is not apparent, except for a few brevirostrine Oligocene taxa from the North American Atlantic and Pacific coasts, which appeared in these areas at the same time as nautilids disappeared. The Oligocene disappearance of nautiloids (except Aturia ) from the American Pacific coasts coincides with the development of oxygen minimum zones (OMZs) in this region. Main conclusions We hypothesize that the Cenozoic spread of pinnipeds drove nautiloids into their present‐day central Indo‐West Pacific refuge. Additional factors for the local extinction of nautiloids in the Oligocene include predation by short‐snouted whales and the development of OMZs, preventing nautiloids from retreating into deeper water.