NARA Discovery
Article Details
← Back to Search Results
Journal Article

Taxonomic distinctness in the diet of two sympatric marine turtle species

Thomas B. Stringell; Wesley V. Clerveaux; Brendan J. Godley; Flora E. A. Kent; Emma D. G. Lewis; Jessica E. Marsh; Quinton Phillips; Peter B. Richardson; Amdeep Sanghera; Annette C. Broderick
Marine Ecology · Vol. 37, Issue 5 · pp. 1036-1049 · 2016

Abstract

Marine turtles are considered keystone consumers in tropical coastal ecosystems and their decline through overexploitation has been implicated in the deterioration of reefs and seagrass pastures in the Caribbean. In the present study, we analysed stomach contents of green ( Chelonia mydas ) and hawksbill turtles ( Eretmochelys imbricata ) harvested in the legal turtle fishery of the Turks and Caicos Islands (Caribbean) during 2008–2010. Small juveniles to adult‐sized turtles were sampled. Together with data from habitat surveys, we assessed diet composition and the taxonomic distinctness (and other species diversity measures) in the diets of these sympatric marine turtle species. The diet of green turtles (n = 92) consisted of a total of 47 taxa: including three species of seagrass (present in 99% of individuals), 29 species of algae and eight sponge species. Hawksbill turtles (n = 45) consumed 73 taxa and were largely spongivorous (16 species; sponges present in 100% of individuals) but also foraged on 50 species of algae (present in 73% of individuals) and three species of seagrass. Plastics were found in trace amounts in 4% of green turtle and 9% of hawksbill turtle stomach samples. We expected to find changes in diet that might reflect ontogenetic shifts from small (oceanic‐pelagic) turtles to larger (coastal‐benthic) turtles. Dietary composition (abundance and biomass), however, did not change significantly with turtle size, although average taxonomic distinctness was lower in larger green turtles. There was little overlap in prey between the two turtle species, suggesting niche separation. Taxonomic distinctness routines indicated that green turtles had the most selective diet, whereas hawksbill turtles were less selective than expected when compared with the relative frequency and biomass of diet items. We discuss these findings in relation to the likely important trophic roles that these sympatric turtle species play in reef and seagrass habitats.

Bibliographic Information

JournalMarine Ecology
PublisherWiley
Publication Date2016-10-01
Publication Year2016
Volume37
Issue5
Pages1036-1049
Document TypeJournal Article
Print ISSN0173-9565
eISSN1439-0485
DOI10.1111/maec.12349
SubjectMarine Biology

Access Information

NARA Access Coverage1997-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14390485
Publisher PageOpen Publisher Page
Full-text access depends on NARA's subscribed coverage and institutional access.