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Dive into the research topics where Mathilde Schapira is active.

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Featured researches published by Mathilde Schapira.


Harmful Algae | 2016

Two decades of Pseudo-nitzschia spp. blooms and king scallop (Pecten maximus) contamination by domoic acid along the French Atlantic and English Channel coasts: Seasonal dynamics, spatial heterogeneity and interannual variability

Bérengère Husson; Tania Hernández-Fariñas; Romain Le Gendre; Mathilde Schapira; Annie Chapelle

King scallop contamination (Pecten maximus) by domoic acid, a neurotoxin produced by some species of the diatom Pseudo-nitzschia, is highly problematic because of its lengthy retention in the bivalve tissue, leading to prolonged fishery closures. Data collected within the French Phytoplankton and Phycotoxin monitoring network (REPHY) over the 1995-2012 period were used to characterize the seasonal dynamics and the interannual variability of P.-nitzschia spp. blooms as well as the contamination of king scallop fishing grounds, in six contrasted bays distributed along the French Atlantic coast and English Channel. Monitoring revealed that these toxic events have become more frequent since the year 2000, but with varying magnitudes, frequencies and timing depending on the bay. Two bays, located in southern Brittany, exhibited both recurrent contaminations and high P.-nitzschia abundances. The Brest bay and the Seine bay were intermittently affected. The Pertuis Breton exhibited only one major toxic event related to an exceptionally intense bloom of P.-nitzschia in 2010, and the Saint Brieuc bay neither showed significant contamination nor high P.-nitzschia abundance. While high P.-nitzschia abundance appeared to be correlated to scallop toxicity, this study highlights the difficulty in linking P.-nitzschia spp. blooms to king scallop contamination through monitoring. Indeed, P.-nitzschia was determined at the genus level and data regarding species abundances and their toxicity levels are an absolute prerequisite to further assess the environmental control of ASP events. As results describe distinct P.-nitzschia bloom dynamics along the French coast, this may suggest distinct controlling factors. They also revealed that major climatic events, such as the winter storm Xynthia in 2010, can trigger toxicity in P.-nitzschia over a large spatial scale and impact king scallop fisheries all along the coast.


Harmful Algae | 2017

Nutrient ratios influence variability in Pseudo-nitzschia species diversity and particulate domoic acid production in the Bay of Seine (France)

Maxine Thorel; Pascal Claquin; Mathilde Schapira; Romain Le Gendre; Philippe Riou; Didier Goux; Bertrand Le Roy; Virginie Raimbault; Anne-Flore Deton-Cabanillas; Pauline Bazin; Valérie Kientz-Bouchart; Juliette Fauchot

The population dynamics of different Pseudo-nitzschia species, along with particulate domoic acid (pDA) concentrations, were studied from May 2012 to December 2013 in the Bay of Seine (English Channel, Normandy). While Pseudo-nitzschia spp. blooms occurred during the two years of study, Pseudo-nitzschia species diversity and particulate domoic acid concentrations varied greatly. In 2012, three different species were identified during the spring bloom (P. australis, P. pungens and P. fraudulenta) with high pDA concentrations (∼1400ngl-1) resulting in shellfish harvesting closures. In contrast, the 2013 spring was characterised by a P. delicatissima bloom without any toxic event. Above all, the results show that high pDA concentrations coincided with the presence of P. australis and with potential silicate limitation (Si:N<1), while nitrate concentrations were still replete. The contrasting environmental conditions between 2012 and 2013 highlight different environmental controls that might favour the development of either P. delicatissima or P. australis. This study points to the key role of Pseudo-nitzschia diversity and cellular toxicity in the control of particulate domoic acid variations and highlights the fact that diversity and toxicity are influenced by nutrients, especially nutrient ratios.


Marine Environmental Research | 2017

Dynamics of phytoplankton productivity and exopolysaccharides (EPS and TEP) pools in the Seine Estuary (France, Normandy) over tidal cycles and over two contrasting seasons

Jérôme Morelle; Mathilde Schapira; Pascal Claquin

Exopolysaccharides (EPS) play an important role in the carbon flux and may be directly linked to phytoplankton and microphytobenthos production, most notably in estuarine systems. However the temporal and spatial dynamics of estuarine EPS are still not well understood, nor how primary productivity triggers this variability at these different scales. The aim of this study was to investigate the primary productivity of phytoplankton and EPS dynamics in the Seine estuary over a tidal cycle in three different haline zones over two contrasted seasons. The other objectives was to investigate the origin of pools of soluble carbohydrates (S-EPS) and transparent exopolymeric particles (TEP) in phytoplankton, microphytobenthos or other compartments. High frequency measurements of productivity were made in winter and summer 2015. Physical and chemical parameters, biomass and EPS were measured at hourly intervals in sub-surface waters and just above the water sediment-interface. Our results confirmed that high frequency measurements improve the accuracy of primary productivity estimations and associated carbon fluxes in estuaries. The photosynthetic parameters were shown to be strongly controlled by salinity and by the concentrations of suspended particle matter at the smallest temporal and at spatial scales. At these scales, our results showed an inverse relationship between EPS concentrations and biomass and productivity, and a positive relationship with sediment resuspension. Additionally, the distribution of EPS appears to be linked to hydrodynamics with the tide at daily scale and with the winter at seasonal scale. At spatial scale, the maximum turbidity zone played an important role in the distribution of TEP. Our results suggest that, in the Seine estuary, between 9% and 33% of the S-EPS pool in the water column can be attributed to phytoplankton excretion, while only 0.4%-1.6% (up to 6.14% in exceptional conditions) originates from the microphytobenthos compartments. Most EPS was attributed to remobilization of detrital carbon pools in the maximum turbidity zone and in the sediment or allochthonous origin.


Estuaries and Coasts | 2018

Annual Phytoplankton Primary Production Estimation in a Temperate Estuary by Coupling PAM and Carbon Incorporation Methods

Jérôme Morelle; Mathilde Schapira; Francis Orvain; Philippe Riou; Pascal Jean Lopez; Olivier Pierre-Duplessix; Emilie Rabiller; Frank Maheux; Benjamin Simon; Pascal Claquin


Estuarine Coastal and Shelf Science | 2018

Dynamics of exopolymeric carbon pools in relation with phytoplankton succession along the salinity gradient of a temperate estuary (France)

Jérôme Morelle; Mathilde Schapira; Sylvaine Francoise; Gaëlle Courtay; Francis Orvain; Pascal Claquin


Archive | 2017

Détection des risques de contamination des Coquilles Saint Jacques en Baie de Seine - DISCCO - Rapport Final

Mathilde Schapira; Gaëlle Courtay; Sylvaine Francoise


World Academy of Science, Engineering and Technology, International Journal of Geological and Environmental Engineering | 2016

Spatial Dynamic of Pico- and Nano-Phytoplankton Communities in the Mouth of the Seine River

Mathilde Schapira; Sylvaine Francoise; Frank Maheux; Olivier Pierre-Duplessix; E. Rabiller; Benjamin Simon; R. Le Gendre


Archive | 2015

Le projet ANR-COMANCHE 2010-STRA-010. Interactions écosystémiques et impacts anthropiques dans les populations de COquilles Saint-Jacques (Pecten maximus) de la MANCHE. Rapport scientifique final

Eric Foucher; Michel Blanchard; Philippe Cugier; Nicolas Desroy; Catherine Dreanno; Juliette Fauchot; Spyros Fifas; Olivier Guyader; Frédéric Jean; Bertrand Le Gallic; Philippe Riou; Mathilde Schapira; Eric Thiébaut


Archive | 2014

Surveillance écologique et halieutique du site électronucléaire de Penly. Année 2013 - Rapport scientifique annuel

Ivan Schlaich; Benjamin Simon; Christophe Loots; Elvire Antajan; Emilie Rabiller; Frank Maheux; Mathilde Schapira; Sylvaine Francoise


Archive | 2014

Surveillance écologique et halieutique du site électronucléaire de Flamanville - Année 2013 - Rapport scientifique annuel

Chantal Abernot-Le Gac; Elvire Antajan; David Devreker; Luc Dreves; Laure Lamort; Jocelyne Martin; Olivier Pierre-Duplessix; Mathilde Schapira; Ivan Schlaich

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