278 resultados para Mytilus trossulus


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Measurement of marine algal toxins has traditionally focussed on shellfish monitoring while, over the last decade, passive sampling has been introduced as a complementary tool for exploratory studies. Since 2011, liquid chromatography-tandem mass spectrometry (LC-MS/MS) has been adopted as the EU reference method (No.15/2011) for detection and quantitation of lipophilic toxins. Traditional LC-MS approaches have been based on low-resolution mass spectrometry (LRMS), however, advances in instrument platforms have led to a heightened interest in the use of high-resolution mass spectrometry (HRMS) for toxin detection. This work describes the use of HRMS in combination with passive sampling as a progressive approach to marine algal toxin surveys. Experiments focused on comparison of LRMS and HRMS for determination of a broad range of toxins in shellfish and passive samplers. Matrix effects are an important issue to address in LC-MS; therefore, this phenomenon was evaluated for mussels (Mytilus galloprovincialis) and passive samplers using LRMS (triple quadrupole) and HRMS (quadrupole time-of-flight and Orbitrap) instruments. Matrix-matched calibration solutions containing okadaic acid and dinophysistoxins, pectenotoxin, azaspiracids, yessotoxins, domoic acid, pinnatoxins, gymnodimine A and 13-desmethyl spirolide C were prepared. Similar matrix effects were observed on all instruments types. Most notably, there was ion enhancement for pectenotoxins, okadaic acid/dinophysistoxins on one hand, and ion suppression for yessotoxins on the other. Interestingly, the ion selected for quantitation of PTX2 also influenced the magnitude of matrix effects, with the sodium adduct typically exhibiting less susceptibility to matrix effects than the ammonium adduct. As expected, mussel as a biological matrix, quantitatively produced significantly more matrix effects than passive sampler extracts, irrespective of toxin. Sample dilution was demonstrated as an effective measure to reduce matrix effects for all compounds, and was found to be particularly useful for the non-targeted approach. Limits of detection and method accuracy were comparable between the systems tested, demonstrating the applicability of HRMS as an effective tool for screening and quantitative analysis. HRMS offers the advantage of untargeted analysis, meaning that datasets can be retrospectively analysed. HRMS (full scan) chromatograms of passive samplers yielded significantly less complex data sets than mussels, and were thus more easily screened for unknowns. Consequently, we recommend the use of HRMS in combination with passive sampling for studies investigating emerging or hitherto uncharacterised toxins.

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1.This report presents the results of a field study conducted in the ECASA test site nOS in the Pertuis Breton, France. The site is located on the Atlantic West coasts. It is open to the bay of Biscay, but is slightly protected against westerly winds. The bay has been exploited by intertidal mussels culture for centuries. 2. Within the bay, mussels (Mytilus edulis) are cultivated either by the traditional pole technique, around the bay or on longlines in the centre of the bay. The area occupied by these longline s represents 250 ha, and the resulting annual production is 1 000 tonnes of mussels. The average depth at mid tide is of 13.8 m. The sediment is sandy, with a small fraction of mud. 3. The site is subject to several regular monitoring through the local implementation of national networks aiming at protecting the environment and marine resources, on pollutants (RNO), microbiological quality of the waters (REMI), phytoplanktonic toxic species (REPHY) and growth and mortality of molluscs (REMORA). Benthic macrofauna was studied in 1976. 4. Five sampling sations were chosen along a line, starting under the longlines, and at distances of 50, 100, 200, and 400 metres from the area cultivated. A reference station was chosen in a different direction at 2300 metres of the cultivated area. Sampling methods are described in the text. _Sediments were sampled for different analyses: grain size, content in organic matter, total organic carbon and nitrogen, and phytic pigments (chlorophyll a and phaeopigments). Redox were measured in cores. The macrofauna living into the sediment was also sampled. The water column was sampled for physical (temperature, transparency) and chemical parametres, including oxygen content, salinity, organic matter, dissolved nitrogen forms, phosphates and silicates. Results from benthic macrofauna surveys indicate that there were no significant differences between the different stations and the reference station, all being classified as slightly disturbed. The bay is submitted to freshwater runoffs from two adjacent rivers. 7. The sediment is slightly modified by the culture of bivalves. Total organic carbon, total nitrogen, Eh values and pheopigments were significantly higher under the trestles than in any other stations. Other stations often did not differ from the reference station. 8. The effects of shellfish culture on the water column were. However, it was observed a small decrease of the food available to the molluscs near the rearing 9. The DEB model was able to describe and predict adequately the growth of oysters, both in the Baie des Veys and in the Loch Creran. The parametres for its use in other environment are given, but a tuning of one parametre should be performed with the help of authors. 10. Among the indicators and models for use in are as of intertidal bivalve culture, it is recommended to use the sediment quality index, TOC (Total Organic Carbon), redox and pheopigments, in surficial sediment, AMBI for the macrofauna, chlorophyll a contents and nitrogen forms in the water column, and models describing the carrying capacity, filtration rate of molluscs, and a DEB model to predict the growth of molluscs.

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Depuis 1992, la surveillance de la santé des mollusques marins du littoral français est assurée par le réseau de Pathologie des Mollusques (Repamo). Ses activités s’inscrivent dans le cadre de la Directive Européenne 2006/88/CE. Depuis son évaluation par la plateforme nationale d’épidémiosurveillance en santé animale en 2012, l’objectif de surveillance est la détection précoce des infections dues à des organismes pathogènes exotiques et émergents affectant les mollusques marins sauvages et d’élevage. L’année 2015 est la première année de transition pour laquelle un début d’évolution des modalités de surveillance de la santé des mollusques marins animées par l’Ifremer a été amorcé. Un dispositif hybride de surveillance a été mis en place, s’appuyant sur l’existant et intégrant des débuts d’évolution. La surveillance événementielle a constitué l’activité principale du dispositif en 2015 et s’est appuyée sur des réseaux existants : (1) la surveillance des mortalités observées sur des animaux sentinelles déployés sur les sites ateliers des réseaux Ifremer RESCO 2 (12 sites) pour l’huître creuse Crassostrea gigas et MYTILOBS 2 (8 sites) pour la moule bleue Mytilus edulis. Pour l’huître creuse Crassostrea gigas, la mortalité cumulée moyenne était de 50,3% (écart-type 10,9%) pour le naissain standardisé Ifremer (NSI), de 11,0% (écart-type 9,1%) pour les huîtres de 18 mois et de 7,3% (écart-type 5,6%) pour les huîtres de 30 mois. Les mortalités ont été observées principalement entre le début du mois de mai et la mi-juillet. Lors de ces épisodes de mortalité, des prélèvements d’animaux ont été réalisés en vue d’analyses diagnostiques : 7 prélèvements pour le NSI, 2 pour les huîtres de 18 mois et 1 pour les huîtres de 30 mois. Aucun agent réglementé n’a été détecté dans les échantillons d’huîtres creuses prélevés et analysés. Le virus OsHV-1 a été détecté dans les 7 échantillons analysés de NSI, dans 2 échantillons analysés d’huîtres de 18 mois et dans 1 échantillon analysé d’huîtres de 30 mois. La bactérie Vibrio aestuarianus a été détectée dans 5 échantillons analysés de NSI, dans 1 échantillon d’huîtres de 18 mois et dans 1’échantillon d’huîtres de 30 mois. Pour la moule bleue Mytilus edulis, des mortalités cumulées variant de 9% sur le site du Vivier à 51% sur le site des filières du Pertuis Breton ont été estimées. Les mortalités ont été observées au printemps sur des moules âgées d’une année et en automne sur des moules plus jeunes. Lors de ces épisodes de mortalités, des prélèvements d’animaux ont été réalisés en vue d’analyses diagnostiques : 2 prélèvements pour les moules d’une année et 1 pour les jeunes moules. Ces prélèvements ont eu lieu dans le Pertuis Breton. Aucun agent réglementé n’a été détecté dans les échantillons de moules prélevés et analysés. Des bactéries du groupe Splendidus ont été détectées dans les 3 échantillons de moules analysés. (2) la surveillance s’appuyant sur les déclarations de mortalités de mollusques par les conchyliculteurs et pêcheurs à pied professionnels auprès des Directions départementales des territoires et de la mer (DDTM). Cette modalité s’applique aux huîtres creuses et aux moules bleues lorsqu’il n’existe pas de site atelier RESCO 2 ou MYTILOBS 2 dans la zone où des mortalités sont déclarées par les conchyliculteurs ou pêcheurs à pied. Le réseau REPAMO 2 a réalisé 22 interventions, dont 15 pour les moules Mytilus edulis, 4 pour les coques Cerastoderma edule, 2 pour les palourdes Ruditapes sp. et 1pour les coquilles saint Jacques Pecten maximus. La recherche d’agents infectieux dans ces espèces de mollusques prélevés lors de hausse de mortalité a permis de mettre en évidence les parasites réglementés Perkinsus olseni dans 1 lot de palourdes, et Marteilia refringens dans 4 lots de moules, ainsi que le virus OsHV-1 dans 1 lot de palourdes et 1 lot de coques, la bactérie Vibrio aestuarianus dans 3 lots de coques, et des bactéries du groupe Splendidus dans 3 lots de coques et dans 13 lots de moules. L’année 2015 a également permis la démonstration sur un site atelier d’un exercice de surveillance programmée, ciblée et fondée sur les risques d’introduction et d’installation d’un organisme pathogène exotique. Elle a concerné le parasite Mikrocytos mackini de l’huître creuse Crassostrea gigas, sur un site atelier de la Charente-Maritime, suivi par le réseau RESCO 2. Le parasite Mikrocytos mackini n’a pas été détecté. En revanche, le parasite Marteilia refringens a été détecté dans ¾ des prélèvements d’huîtres réalisés. Dans le cadre du soutien scientifique et technique de l’évolution de la surveillance événementielle, l’année 2015 a également permis de poursuivre la démarche relative aux développements méthodologiques en lien avec la surveillance événementielle des mortalités de mollusques marins. Une étude de faisabilité de la recherche prospective de regroupements spatio-temporels d’événements de mortalités d’huîtres creuses a été préparée en collaboration avec tous les acteurs de la santé des mollusques marins en Normandie. Un outil de collecte et d’analyse des données de signalements des mortalités, automatisé, simple d’utilisation et flexible, a été élaboré.

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The Water Framework Directive (WFD) establishes Environmental Quality Standards (EQS) in marine water for 34 priority substances. Among these substances, 25 are hydrophobic and bioaccumulable (2 metals and 23 organic compounds). For these 25 substances, monitoring in water matrix is not appropriate and an alternative matrix should be developed. Bivalve mollusks, particularly mussels (Mytilus edulis, Mytilus galloprovincialis), are used by Ifremer as a quantitative biological indicator since 1979 in France, to assess the marine water quality. This study has been carried out in order to determine thresholds in mussels at least as protective as EQS in marine water laid down by the WFD. Three steps are defined: - Provide an overview of knowledges about the relations between the concentrations of contaminants in the marine water and mussels through bioaccumulation factor (BAF) and bioconcentration factor (BCF). This allows to examine how a BCF or a BAF can be determined: BCF can be determined experimentally (according to US EPA or ASTM standards), or by Quantitative Activity-Structure Relationship models (QSAR): four equations can be used for mussels. BAF can be determined by field experiment; but none standards exists. It could be determined by using QSAR but this method is considered as invalid for mussels, or by using existing model: Dynamic Budget Model, but this is complex to use. - Collect concentrations data in marine water (Cwater) in bibliography for those 25 substances; and compare them with concentration in mussels (Cmussels) obtained through French monitoring network of chemicals contaminants (ROCCH) and biological integrator network RINBIO. According to available data, this leads to determine the BAF or the BCF (Cmussels /Cwater) with field data. - Compare BAF and BCF values (when available) obtained with various methods for these substances: BCF (stemming from the bibliography, using experimental process), BCF calculated by QSAR and BAF determined using field data. This study points out that experimental BCF data are available for 3 substances (Chlorpyrifos, HCH, Pentachlorobenzene). BCF by QSAR can be calculated for 20 substances. The use of field data allows to evaluate 4 BAF for organic compounds and 2 BAF for metals. Using these BAF or BCF value, thresholds in shellfish can be determined as an alternative to EQS in marine water.

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Microplastics (MP) are omnipresent contaminants in the marine environment. Ingestion of MP has been reported for a wide range of marine biota, but to what extent the uptake by organisms affects the dynamics and fate of MP in the marine system has received little attention. My thesis explored this topic by integrating laboratory tests and experiments, field quantitative surveys of MP distribution and dynamics, and the use of specialised analytical techniques such as Attenuated-Total-Reflectance- (ATR) and imaging- Fourier Transformed Infrared Spectroscopy (FTIR). I compared different methodologies to extract MP from wild invertebrate specimens, and selected the use of potassium hydroxide (KOH) as the most cost-effective approach. I used this approach to analyse the MP contamination in various invertebrate species with different ecological traits from European salt marshes. I found that 96% of the analysed specimens (330) did not contain any MP. As preliminary environmental analyses showed high levels of environmental MP contamination, I hypothesised that most MP do not accumulate into organisms but are rather fast egested. I subsequently used laboratory multi-trophic experiments and a long-term field experiment using the filter-feeding mussel Mytilus galloprovincialis and the detritus feeding polychaete Hediste diversicolor to test the aforementioned hypothesis. Overall, results showed that MP are ingested but rapidly egested by marine invertebrates, which may limit MP transfer via predator-prey interactions but at the same time enhance their transfer via detrital pathways in the sediments. These processes seem to be extremely variable over time, with potential unexplored environmental consequences. This rapid dynamics also limits the conclusions that can be derived from static observations of MP contents in marine organisms, not fully capturing the real levels of potential contaminations by marine species. This emphasises the need to consider such dynamics in future work to measure the uptake rates by organisms in natural systems.

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Marine mussels are exceptionally well-adapted to live in transitional habitats where they are exposed to fluctuating environmental parameters and elevated levels of natural and anthropogenic stressors throughout their lifecycle. However, there is a dearth of information about the molecular mechanisms that assist in dealing with environmental changes. This project aims to investigate the molecular mechanisms governing acclimatory and stress responses of the Mediterranean mussel (Mytilus galloprovincialis) by addressing relevant life stages and environmental stressors of emerging concern. The experimental approach consisted of two phases to explore (i) the physiological processes at early life history and the consequences of plastic pollution and (ii) the adult physiology processes under natural habitats. As the first phase, I employed a plastic leachate (styrene monomer), and polystyrene microplastics to understand the modulation of cytoprotective mechanisms during the early embryo stages. Results revealed the onset of transcriptional impairments of genes involved in MXR-related transporters and other physiological processes induced by styrene and PS-MPs. In the second phase, as a preliminary analysis, microbiota profile of adult mussels at the tissue scale and its surrounding water was explored to understand microbiota structures that may reflect peculiar adaptations to the respective tissue functions. The broader experiment has been implemented to understand the variability of transcriptional profiles in the mussel digestive glands in the natural setting. All the genes employed in this study have shown possibilities to use as molecular biomarker responses throughout the year for monitoring the physiology of mussels living in a particular environment and, in turn, more properly detecting changes in the environment. As a whole, my studies provide insights into the interactions between environmental parameters, and intrinsic characters, and physiology of marine bivalves, and it could help to interpretation of responses correctly under stress conditions and climate change scenarios.

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Microplastics have become ubiquitous pollutants in the marine environment. Ingestion of microplastics by a wide range of marine organisms has been recorded both in laboratory and field studies. Despite growing concern for microplastics, few studies have evaluated their concentrations and distribution in wild populations. Further, there is a need to identify cost-effective standardized methodologies for microplastics extraction and analysis in organisms. In this thesis I present: (i) the results of a multi-scale field sampling to quantify and characterize microplastics occurrence and distribution in 4 benthic marine invertebrates from saltmarshes along the North Adriatic Italian coastal lagoons; (ii) a comparison of the effects and cost-effectiveness of two extraction protocols for microplastics isolation on microfibers and on wild collected organisms; (iii) the development of a novel field- based technique to quantify and characterize the microplastic uptake rates of wild and farmed populations of mussels (Mytilus galloprovincialis) through the analysis of their biodeposits. I found very low and patchy amounts of microplastics in the gastrointestinal tracts of sampled organisms. The omnivorous crab Carcinus aestuarii was the species with the highest amounts of microplastics, but there was a notable variation among individuals. There were no substantial differences between enzymatic and alkaline extraction methods. However, the alkaline extraction was quicker and cheaper. Biodeposit traps proved to be an effective method to estimate mussel ingestion rates. However their performance differed significantly among sites, suggesting that the method, as currently designed, is sensible to local environmental conditions. There were no differences in the ingestion rates of microplastics between farmed and wild mussels. The estimates of microplastic ingestion and the validated procedures for their extraction provide a strong basis for future work on microplastic pollution.

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La maggior parte degli insediamenti urbani si trova in prossimità delle coste e più del 50% della popolazione vive entro 100 km dal mare. Questo significa che l’ambiente marino è fortemente influenzato dalle attività antropiche e, per questo, è necessario creare un piano di gestione degli ambienti costieri, in quanto la resilienza dell’habitat marino dipende dall’uso sostenibile degli ecosistemi marini urbani. Lo scopo dello studio è quello di analizzare la distribuzione spaziale e temporale delle specie native e aliene, presenti sulle banchine del porto-canale di Ravenna. Sono stati analizzati i popolamenti intertidali di 6 siti lungo il canale Candiano dal 2016 al 2018 nei mesi di maggio. I risultati hanno illustrato un gradiente terra-mare a partire dai siti più interni lungo il porto-canale. Le specie più abbondanti identificate sono i due mitili Mytilus Galloprovincialis (specie nativa) e Xenostrobus securis (specie invasiva); queste specie si avvicendano nelle stazioni centrali del Candiano e si cedono il posto a vicenda: la specie nativa rimane nelle acque esterne e meno impattate mentre quella invasiva resta nei siti interni più soggetti a disturbi di vario tipo, come quello antropico. La terza specie più numerosa è Sphaeroma serratum, isopode nativo del Mediterraneo, presente da sempre nelle zone lagunari del ravennate; in questo studio è stato rinvenuto nelle stazioni più interne, che potrebbe sfruttare come rifugio da possibili competitori. I risultati hanno mostrato l’abbondanza e la diversità delle specie, indigene e non ,del porto di Ravenna: su un totale di 71 taxa diversi, le specie aliene rappresentavano il 17%; queste sono state rinvenute soprattutto nei siti di campionamento più interni, dove sono presenti condizioni più limitanti e sfavorevoli per le specie native. Inoltre, è stato osservato come la diversità specifica aumenti lungo il gradiente mare-terra, considerando le zone con maggiore diversità anche quelle con maggiore specie aliene.