Document généré le 10/08/2026 depuis l'adresse: https://www.documentation.eauetbiodiversite.fr/fr/notice/different-transfer-pathways-of-an-organochlorine-pesticide-across-marine-tropical-food-webs-assessed-with-stable-isotope-analysis-
Different transfer pathways of an organochlorine pesticide across marine tropical food webs assessed with stable isotope analysis
Titre alternatif
Producteur
Contributeur(s)
BOUCHON-NAVARO Yolande,CORDONNIER Sébastien,GUENE Mathilde,HERMELIN-VIVIEN Mireille,BOUCHON Claude
Éditeur(s)
Amitava Mukherjee, VIT University, INDIA
Identifiant documentaire
29-1916
Identifiant OAI
oai:base-documentaire.pole-tropical.org:1916
Auteur(s):
DROMARD Charlotte
Mots clés
CHLORDECONE
PESTICIDE
1409 - POLLUTION DE L'EAU
1000 - POLLUTIONS ET EFFETS DE LA POLLUTION
MANGROVE
HABITAT ECOLOGIQUE
CHAINE ALIMENTAIRE
Date de publication
01/01/2018
Date de création
Date de modification
Date d'acceptation du document
Date de dépôt légal
Langue
eng
Thème
Type de ressource
Source
Droits de réutilisation
Région
Département
Guadeloupe
Commune
Description
Chlordecone is a persistent organochlorine pesticide used in the banana fields of the French West Indies from 1972 to 1993. Three marine habitats (mangroves, seagrass beds and coral reefs) of two study sites located downstream contaminated rivers were chosen to evaluate the level of contamination of marine food webs. On each habitat, the food chain collected included suspended organic matter, primary producers (macroalgae, algal turf, seagrass), zooplankton, symbiotic organisms (corals, sea anemones), primary consumers (herbivores, suspension feeders, biofilm feeders), omnivores and detritivores (lobsters, fish), secondary consumers (carnivores 1: invertebrate feeders, planktivores) and tertiary consumers (carnivores 2: invertebrate and fish feeders, piscivores). Log-linear regressions of the concentrations of chlordecone versus nitrogen isotopic ratios (δ15N) were used to assess the bioaccumulation of chlordecone along trophic food webs. At each site, bioconcentration and bioamplification take part on the transfer of chlordecone in marine organisms. In mangroves (i.e. close to the source of pollution), lower trophic magnification factors (TMF) indicated that bioconcentration prevailed over bioamplification phenomenon. The
opposite phenomenon appeared on coral reefs in which bioconcentration processes were less important and bioamplification pathway became dominant. Far from the source of pollution, molecules of chlordecone seemed to be transfered to organisms mostly via trophic interactions rather than water contact.
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