Global change and climate‐driven invasion of the Pacific oyster ( Crassostrea gigas) along European coasts: a bioenergetics modelling approach

Abstract Aim The spread of non‐indigenous species in marine ecosystems world‐wide is one of today's most serious environmental concerns. Using mechanistic modelling, we investigated how global change relates to the invasion of European coasts by a non‐native marine invertebrate, the Pacific oys...

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Published in:Journal of Biogeography
Main Authors: Thomas, Yoann, Pouvreau, Stéphane, Alunno‐Bruscia, Marianne, Barillé, Laurent, Gohin, Francis, Bryère, Philippe, Gernez, Pierre
Format: Article in Journal/Newspaper
Language:English
Published: Wiley 2015
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Online Access:http://dx.doi.org/10.1111/jbi.12665
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spelling crwiley:10.1111/jbi.12665 2024-09-30T14:33:57+00:00 Global change and climate‐driven invasion of the Pacific oyster ( Crassostrea gigas) along European coasts: a bioenergetics modelling approach Thomas, Yoann Pouvreau, Stéphane Alunno‐Bruscia, Marianne Barillé, Laurent Gohin, Francis Bryère, Philippe Gernez, Pierre 2015 http://dx.doi.org/10.1111/jbi.12665 https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fjbi.12665 https://onlinelibrary.wiley.com/doi/pdf/10.1111/jbi.12665 en eng Wiley http://onlinelibrary.wiley.com/termsAndConditions#vor Journal of Biogeography volume 43, issue 3, page 568-579 ISSN 0305-0270 1365-2699 journal-article 2015 crwiley https://doi.org/10.1111/jbi.12665 2024-09-19T04:20:13Z Abstract Aim The spread of non‐indigenous species in marine ecosystems world‐wide is one of today's most serious environmental concerns. Using mechanistic modelling, we investigated how global change relates to the invasion of European coasts by a non‐native marine invertebrate, the Pacific oyster Crassostrea gigas . Location Bourgneuf Bay on the French Atlantic coast was considered as the northern boundary of C. gigas expansion at the time of its introduction to Europe in the 1970s. From this latitudinal reference, variations in the spatial distribution of the C. gigas reproductive niche were analysed along the north‐western European coast from Gibraltar to Norway. Methods The effects of environmental variations on C. gigas physiology and phenology were studied using a bioenergetics model based on Dynamic Energy Budget theory. The model was forced with environmental time series including in situ phytoplankton data, and satellite data of sea surface temperature and suspended particulate matter concentration. Results Simulation outputs were successfully validated against in situ oyster growth data. In Bourgneuf Bay, the rise in seawater temperature and phytoplankton concentration has increased C. gigas reproductive effort and led to precocious spawning periods since the 1960s. At the European scale, seawater temperature increase caused a drastic northward shift (1400 km within 30 years) in the C. gigas reproductive niche and optimal thermal conditions for early life stage development. Main conclusions We demonstrated that the poleward expansion of the invasive species C. gigas is related to global warming and increase in phytoplankton abundance. The combination of mechanistic bioenergetics modelling with in situ and satellite environmental data is a valuable framework for ecosystem studies. It offers a generic approach to analyse historical geographical shifts and to predict the biogeographical changes expected to occur in a climate‐changing world. Article in Journal/Newspaper Crassostrea gigas Pacific oyster Wiley Online Library Norway Pacific Journal of Biogeography 43 3 568 579
institution Open Polar
collection Wiley Online Library
op_collection_id crwiley
language English
description Abstract Aim The spread of non‐indigenous species in marine ecosystems world‐wide is one of today's most serious environmental concerns. Using mechanistic modelling, we investigated how global change relates to the invasion of European coasts by a non‐native marine invertebrate, the Pacific oyster Crassostrea gigas . Location Bourgneuf Bay on the French Atlantic coast was considered as the northern boundary of C. gigas expansion at the time of its introduction to Europe in the 1970s. From this latitudinal reference, variations in the spatial distribution of the C. gigas reproductive niche were analysed along the north‐western European coast from Gibraltar to Norway. Methods The effects of environmental variations on C. gigas physiology and phenology were studied using a bioenergetics model based on Dynamic Energy Budget theory. The model was forced with environmental time series including in situ phytoplankton data, and satellite data of sea surface temperature and suspended particulate matter concentration. Results Simulation outputs were successfully validated against in situ oyster growth data. In Bourgneuf Bay, the rise in seawater temperature and phytoplankton concentration has increased C. gigas reproductive effort and led to precocious spawning periods since the 1960s. At the European scale, seawater temperature increase caused a drastic northward shift (1400 km within 30 years) in the C. gigas reproductive niche and optimal thermal conditions for early life stage development. Main conclusions We demonstrated that the poleward expansion of the invasive species C. gigas is related to global warming and increase in phytoplankton abundance. The combination of mechanistic bioenergetics modelling with in situ and satellite environmental data is a valuable framework for ecosystem studies. It offers a generic approach to analyse historical geographical shifts and to predict the biogeographical changes expected to occur in a climate‐changing world.
format Article in Journal/Newspaper
author Thomas, Yoann
Pouvreau, Stéphane
Alunno‐Bruscia, Marianne
Barillé, Laurent
Gohin, Francis
Bryère, Philippe
Gernez, Pierre
spellingShingle Thomas, Yoann
Pouvreau, Stéphane
Alunno‐Bruscia, Marianne
Barillé, Laurent
Gohin, Francis
Bryère, Philippe
Gernez, Pierre
Global change and climate‐driven invasion of the Pacific oyster ( Crassostrea gigas) along European coasts: a bioenergetics modelling approach
author_facet Thomas, Yoann
Pouvreau, Stéphane
Alunno‐Bruscia, Marianne
Barillé, Laurent
Gohin, Francis
Bryère, Philippe
Gernez, Pierre
author_sort Thomas, Yoann
title Global change and climate‐driven invasion of the Pacific oyster ( Crassostrea gigas) along European coasts: a bioenergetics modelling approach
title_short Global change and climate‐driven invasion of the Pacific oyster ( Crassostrea gigas) along European coasts: a bioenergetics modelling approach
title_full Global change and climate‐driven invasion of the Pacific oyster ( Crassostrea gigas) along European coasts: a bioenergetics modelling approach
title_fullStr Global change and climate‐driven invasion of the Pacific oyster ( Crassostrea gigas) along European coasts: a bioenergetics modelling approach
title_full_unstemmed Global change and climate‐driven invasion of the Pacific oyster ( Crassostrea gigas) along European coasts: a bioenergetics modelling approach
title_sort global change and climate‐driven invasion of the pacific oyster ( crassostrea gigas) along european coasts: a bioenergetics modelling approach
publisher Wiley
publishDate 2015
url http://dx.doi.org/10.1111/jbi.12665
https://api.wiley.com/onlinelibrary/tdm/v1/articles/10.1111%2Fjbi.12665
https://onlinelibrary.wiley.com/doi/pdf/10.1111/jbi.12665
geographic Norway
Pacific
geographic_facet Norway
Pacific
genre Crassostrea gigas
Pacific oyster
genre_facet Crassostrea gigas
Pacific oyster
op_source Journal of Biogeography
volume 43, issue 3, page 568-579
ISSN 0305-0270 1365-2699
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op_doi https://doi.org/10.1111/jbi.12665
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