Abstract
After the discovery of whale fall communities in modern oceans, it has been hypothesized that during the Mesozoic the carcasses of marine reptiles created similar habitats supporting long-lived and specialized animal communities. Here, we report a fully documented ichthyosaur fall community, from a Late Jurassic shelf setting, and reconstruct the ecological succession of its micro- and macrofauna. The early € mobile-scavenger € and € enrichment-opportunist€ stages were not succeeded by a € sulphophilic stage € characterized by chemosynthetic molluscs, but instead the bones were colonized by microbial mats that attracted echinoids and other mat-grazing invertebrates. Abundant cemented suspension feeders indicate a well-developed € reef stage € with prolonged exposure and colonization of the bones prior to final burial, unlike in modern whale falls where organisms such as the ubiquitous bone-eating worm Osedax rapidly destroy the skeleton. Shallow-water ichthyosaur falls thus fulfilled similar ecological roles to shallow whale falls, and did not support specialized chemosynthetic communities.
Cite
CITATION STYLE
Danise, S., Twitchett, R. J., & Matts, K. (2014). Ecological succession of a Jurassic shallow-water ichthyosaur fall. Nature Communications , 5. https://doi.org/10.1038/ncomms5789
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.