6533b858fe1ef96bd12b6481
RESEARCH PRODUCT
Micropredation on sea urchins as a potential stabilizing process for rocky reefs
Carlo PipitoneBernat HereuChiara BonaviriPaola Gianguzzasubject
0106 biological sciencesSettore BIO/07 - EcologiaPopulationBiodiversityAlgae forestAquatic ScienceMediterraneanOceanography010603 evolutionary biology01 natural sciencesParacentrotus lividusPredationalternative stable stateAlternative stable statebiology.animalAlgae Forest Urchin Barrens Recruitment Hysteresis Alternative Stable State Mediterranean14. Life underwatereducationReefSea urchinEcology Evolution Behavior and SystematicsInvertebrategeographyeducation.field_of_studygeography.geographical_feature_categorybiologyEcology010604 marine biology & hydrobiologybiology.organism_classificationurchin barrensFisheryrecruitmenthysteresisdescription
Rocky reefs can shift from forest, a state dominated by erect algae with high biodiversity, to barren, an impoverished state dominated by encrusting algae. Sea urchins, abundant in barrens, are usually held responsible for the maintenance of this state. Predation by large fish can revert the barren state to forest by controlling sea urchin populations. However, the persistence of a community state sometimes seems to be independent from the presence of such large predators, suggesting the existence of other, unknown mechanisms ensuring their stability. Theoretical studies suggest that the settler stage of sea urchins is determinant for maintaining a given rocky reef state. In this study, we have identified several potential invertebrate micropredators of settlers of the sea urchin Paracentrotus lividus and measured their predation activity. Predation rates showed marked differences among species, possibly due to morphological and/or behavioral traits. Micropredators were more abundant in the forest than in barren, and their potential impact on the sea urchin community differed between the two states by two orders of magnitude. These findings suggest a novel self-perpetuating mechanism stabilizing rocky reef systems, where the abundance of micropredators may contribute to shape the sea urchin population, which in turn is responsible for the persistence of the state.
year | journal | country | edition | language |
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2012-10-01 |