Title of article
Modelling spatio-temporal variability of Mytilus edulis (L.) growth by forcing a dynamic energy budget model with satellite-derived environmental data
Author/Authors
Thomas، نويسنده , , Yoann and Mazurié، نويسنده , , Joseph and Alunno-Bruscia، نويسنده , , Marianne and Bacher، نويسنده , , Cédric and Bouget، نويسنده , , Jean-François and Gohin، نويسنده , , Francis and Pouvreau، نويسنده , , Stéphane and Struski، نويسنده , , Caroline، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
10
From page
308
To page
317
Abstract
In order to assess the potential of various marine ecosystems for shellfish aquaculture and to evaluate their carrying capacities, there is a need to clarify the response of exploited species to environmental variations using robust ecophysiological models and available environmental data. For a large range of applications and comparison purposes, a non-specific approach based on ‘generic’ individual growth models offers many advantages. In this context, we simulated the response of blue mussel (Mytilus edulis L.) to the spatio-temporal fluctuations of the environment in Mont Saint-Michel Bay (North Brittany) by forcing a generic growth model based on Dynamic Energy Budgets with satellite-derived environmental data (i.e. temperature and food). After a calibration step based on data from mussel growth surveys, the model was applied over nine years on a large area covering the entire bay. These simulations provide an evaluation of the spatio-temporal variability in mussel growth and also show the ability of the DEB model to integrate satellite-derived data and to predict spatial and temporal growth variability of mussels. Observed seasonal, inter-annual and spatial growth variations are well simulated. The large-scale application highlights the strong link between food and mussel growth. The methodology described in this study may be considered as a suitable approach to account for environmental effects (food and temperature variations) on physiological responses (growth and reproduction) of filter feeders in varying environments. Such physiological responses may then be useful for evaluating the suitability of coastal ecosystems for shellfish aquaculture.
Keywords
Mussel , DEB , SeaWiFS , Aquaculture , site selection , Resource management
Journal title
Journal of Sea Research
Serial Year
2011
Journal title
Journal of Sea Research
Record number
2236899
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