Related Experiment Video
Updated: Apr 6, 2026

Field Collection and Laboratory Maintenance of Canopy-Forming Giant Kelp to Facilitate Restoration
Published on: June 7, 2024
Fish-seastar facilitation leads to algal forest restoration on protected rocky reefs
Nicola M Galasso1, Chiara Bonaviri2, Francesco Di Trapani2
1CNR-IAMC, via Giovanni da Verrazzano 17, 91014 Castellammare del Golfo, Italy.
Abstract:
Although protected areas can lead to recovery of overharvested species, it is much less clear whether the return of certain predator species or a diversity of predator species can lead to re-establishment of important top-down forces that regulate whole ecosystems. Here we report that the algal recovery in a Mediterranean Marine Protected Area did not derive from the increase in the traditional strong predators, but rather from the establishment of a previously unknown interaction between the thermophilic fish Thalassoma pavo and the seastar Marthasterias glacialis. The interaction resulted in elevated predation rates on sea urchins responsible for algal overgrazing. Manipulative experiments and field observations revealed that the proximity of the seastars triggered an escape response in sea urchins, extending their tube feet. Fishes exploited this behavior by feeding on the exposed tube feet, thus impairing urchin movement, and making them vulnerable to predation by the seastars. These findings suggest that predator diversity generated by MPA establishment can activate positive interactions among predators, with subsequent restoration of the ecosystem structure and function through cascading consumer impacts.
More Related Videos
Related Concept Videos
Red Algae
Other Algae
Green Algae
Marine Microbial Ecology
Overview of Algae
Keystone Species

