Identificador persistente para citar o vincular este elemento: http://hdl.handle.net/10553/49617
Título: Sea urchin Diadema antillarum: Different functions in the structure and dynamics of reefs on both sides of the Atlantic
Autores/as: Tuya, Fernando 
Haroun, Ricardo J. 
Boyra, Arturo
Sanchez-Jerez, Pablo
Clasificación UNESCO: 240119 Zoología marina
240106 Ecología animal
Palabras clave: Sea urchins
Reefs
Alternate states
Regime shifts
Community organization, et al.
Fecha de publicación: 2005
Editor/a: 0171-8630
Publicación seriada: Marine Ecology - Progress Series 
Resumen: The long-spined black sea urchin Diadema antillarum has been involved in phase shifts between ‘desired’ and ‘undesired’ states in the organization of shallow reefs on both sides of the Atlantic Ocean between 18 and 33°N, but with significantly different ecological outcomes. In the western Atlantic, high densities of D. antillarum previously exerted considerable grazing pressure on reefs where corals and turf algae were the main biological engineers; however, subsequent to a massive die-off of D. antillarum from disease in 1983–1984, many reefs have gradually become dominated by foliose algae. In contrast, hyperabundances of D. antillarum (>10 ind. m–2) in the eastern Atlantic have caused the elimination of erect vegetative frameworks with the subsequent creation of ‘barrens’. As a result, this invertebrate is directly implicated in the ‘health’ of important components of the biogenic frameworks of reefs on both sides of the Atlantic Ocean. Efforts in the western Atlantic are concentrated on the restoration of populations of D. antillarum to enhance coral abundance, recruitment and survivorship, while ecologists and managers in the eastern Atlantic focus on possible mechanisms to control hyperabundances of this species. We believe that the disproportionate effects of a single herbivorous species in mediating transitions between alternate states on the 2 sides of the Atlantic Ocean may be a direct consequence of a decline in the resilience of coastal ecosystems to disturbance. This decline was principally caused by decreased diversity of many of the functional groups that inhabit the Atlantic Ocean; both the western and eastern Atlantic Ocean have experienced large reductions in predatory and other fish populations.
URI: http://hdl.handle.net/10553/49617
ISSN: 0171-8630
DOI: 10.3354/meps302307
Fuente: Marine Ecology Progress Series [ISSN 0171-8630], v. 302, p. 307-310
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