Logo Lanfrica
  • Accueil
  • Atlas
  • Analyses
  • Documentation
  • Sign in

© 2026 Lanfrica. Tous droits réservés. Tous les droits d'auteur des ressources affichées sur le site Web Lanfrica appartiennent aux détenteurs de droits d'auteur d'origine, sauf indication contraire explicite.

Dynamics of harmful dinoflagellates driven by temperature and salinity in a northeastern Mediterranean lagoon

Domaine:

environment and energyclimate

Type de record:

paper
Créateur:
DhiFroTurAle
Éditeur:
Lab
Éditeur:
CCSDSpringer
Hôte:avatar
International audience To attempt to determine the effects of temperature and salinity on the dynamics of the dinoflagellate community, a monthly sampling was carried out from October 2008 to March 2009 at eight sampling stations in Ghar El Melh Lagoon (GML; Mediterranean Sea, Northern Tunisia). Dinoflagellates were dominant among plankton, accounting for 73.9 % of the lagoon's overall plankton community, and were comprised of 25 different species among which 17 were reported in the literature as harmful. While no significant difference was found in the distribution of dinoflagellates among the stations, a strong monthly difference was observed. This temporal variability was due to an increase in the abundance of Prorocentrum micans from December to February, leading to a strong decrease in the Shannon diversity index from station to station. At the onset of P. micans development, dinoflagellate abundances reached 1.26.10(5) cells l(-1). A redundance analysis indicates that both temperature and salinity have a significant effect on the dynamics of the dinoflagellate community. Using a generalized additive model, both temperature and salinity appear to have significant nonlinear relationships with P. micans abundances. Model predictions indicate that outbreaks of P. micans may occur at a temperature below 22.5 °C and with salinity above 32.5. We discuss our results against a backdrop of climate change which, by affecting temperature and salinity, is likely to have an antagonistic impact on P. micans development and subsequently on the dinoflagellate dynamics in GML.

Visit

hal.science

Tags

Dinoflagellates . Prorocentrum micans . Temperature . Salinity . Red tides[SDE]Environmental Sciences

Similaires

Population dynamics of potentially harmful algal blooms in Bizerte Lagoon, TunisiaSocioeconomic vulnerability of a Mediterranean coastal lagoon : case of Ghar El Melah, TunisiaUse of SPOT 5 and IKONOS imagery for mapping biocenoses in a Tunisian Coastal Lagoon (Mediterranean Sea)Predicting long-term dynamics of soil salinity and sodicity on a global scaleEcological Quality Assessment of Mediterranean Wadis in the Bizerte Lagoon Catchment (Northern Tunisia) Using Benthic DiatomsData from: Adaptive radiation driven by the interplay of eco-evolutionary and landscape dynamics

Population dynamics of potentially harmful algal blooms in Bizerte Lagoon, Tunisia

Socioeconomic vulnerability of a Mediterranean coastal lagoon : case of Ghar El Melah, Tunisia

<p>The coastal lagoon system is undergoing pronounced shoreline retreats and floods as

Use of SPOT 5 and IKONOS imagery for mapping biocenoses in a Tunisian Coastal Lagoon (Mediterranean Sea)

International audience Mapping marine biocenoses is an efficient method for providing

Predicting long-term dynamics of soil salinity and sodicity on a global scale

Knowledge of spatiotemporal distribution and likelihood of (re)occurrence of salt-affected soils is

Ecological Quality Assessment of Mediterranean Wadis in the Bizerte Lagoon Catchment (Northern Tunisia) Using Benthic Diatoms

The study presents an integrated assessment of water quality in wadis of the Bizerte Lagoon catchmen

Data from: Adaptive radiation driven by the interplay of eco-evolutionary and landscape dynamics

We investigate an individual-based model of adaptive radiation based on the biogeographical changes