243 resultados para Crassostrea gasar


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The explosion of the Deepwater Horizon (DWH) oil platform resulted in large amounts of crude oil and dispersant Corexit 9500A® released into the Gulf of Mexico and coincided with the spawning season of the oyster, Crassostrea virginica. The effects of exposing gametes and embryos of C. virginica to dispersant alone (Corexit), mechanically (HEWAF) and chemically dispersed (CEWAF) DWH oil were evaluated. Fertilization success and the morphological development, growth, and survival of larvae were assessed. Gamete exposure reduced fertilization (HEWAF: EC201 h = 1650 μg tPAH50 L− 1; CEWAF: EC201 h = 19.4 μg tPAH50 L− 1; Corexit: EC201 h = 6.9 mg L− 1). CEWAF and Corexit showed a similar toxicity on early life stages at equivalent nominal concentrations. Oysters exposed from gametes to CEWAF and Corexit experienced more deleterious effects than oysters exposed from embryos. Results suggest the presence of oil and dispersant during oyster spawning season may interfere with larval development and subsequent recruitment.

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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.

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Chemical pollution by pesticides has been identified as a possible contributing factor to the massive mortality outbreaks observed in Crassostrea gigas for several years. A previous study demonstrated the vertical transmission of DNA damage by subjecting oyster genitors to the herbicide diuron at environmental concentrations during gametogenesis. This trans-generational effect occurs through damage to genitor-exposed gametes, as measured by the comet-assay. The presence of DNA damage in gametes could be linked to the formation of DNA damage in other germ cells. In order to explore this question, the levels and cell distribution of the oxidized base lesion 8-oxodGuo were studied in the gonads of exposed genitors. High-performance liquid chromatography coupled with UV and electrochemical detection analysis showed an increase in 8-oxodGuo levels in both male and female gonads after exposure to diuron. Immunohistochemistry analysis showed the presence of 8-oxodGuo at all stages of male germ cells, from early to mature stages. Conversely, the oxidized base was only present in early germ cell stages in female gonads. These results indicate that male and female genitors underwent oxidative stress following exposure to diuron, resulting in DNA oxidation in both early germ cells and gametes, such as spermatozoa, which could explain the transmission of diuron-induced DNA damage to offspring. Furthermore, immunostaining of early germ cells seems indicates that damages caused by exposure to diuron on germ line not only affect the current sexual cycle but also could affect future gametogenesis.

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In the Pacific oyster, spermatozoa are characterized by a remarkably long movement phase (i.e., over 24 h) sustained by a capacity to maintain intracellular ATP level. To gain information on oxidative phosphorylation (OXPHOS) functionality during the motility phase of Pacific oyster spermatozoa, we studied 1) changes in spermatozoal mitochondrial activity, that is, mitochondrial membrane potential (MMP), and intracellular ATP content in relation to motion parameters and 2) the involvement of OXPHOS for spermatozoal movement using carbonyl cyanide m-chlorophenyl hydrazone (CCCP). The percentage of motile spermatozoa decreased over a 24 h movement period. MMP increased steadily during the first 9 h of the movement phase and was subsequently maintained at a constant level. Conversely, spermatozoal ATP content decreased steadily during the first 9 h postactivation and was maintained at this level during the following hours of the movement phase. When OXPHOS was decoupled by CCCP, the movement of spermatozoa was maintained 2 h and totally stopped after 4 h of incubation, whereas spermatozoa were still motile in the control after 4 h. Our results suggest that the ATP sustaining flagellar movement of spermatozoa may partially originate from glycolysis or from mobilization of stored ATP or from potential phosphagens during the first 2 h of movement as deduced by the decoupling by CCCP of OXPHOS. However, OXPHOS is required to sustain the long motility phase of Pacific oyster spermatozoa. In addition, spermatozoa may hydrolyze intracellular ATP content during the early part of the movement phase, stimulating mitochondrial activity. This stimulation seems to be involved in sustaining a high ATP level until the end of the motility phase.

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Depuis 2008, des mortalités massives d’huîtres creuses âgées de moins d’un an sont relevées sur le littoral français dès que la température de l’eau de mer atteint le seuil de 16°C. Ces mortalités de naissains sont associées à la détection du virus OsHV-1 μVar. Des travaux de qualification zoo-sanitaire menés depuis 2010 ont montré qu’un lot de naissains issus du captage naturel sur deux était infecté par le virus bien avant l’apparition des mortalités dans le milieu naturel, mais qu’a contrario les naissains d’écloserie expertisés présentaient une fréquence plus faible de portage latent. Dans ce contexte de crise zoo-sanitaire chronique, l’objectif de notre étude consistait à obtenir une information du statut zoo-sanitaire OsHV-1 μVar des populations de naissains du captage 2013 à l’échelle national. Ce travail avait pour finalité de permettre l’identification précoce des zones de captage associées à un risque de mortalité due à l’infection par OsHV-1 μVar. La méthodologie de l’épreuve thermique de laboratoire (ETL) correspond en une période de 1 mois d’isolement des naissains à évaluer en conditions contrôlées de laboratoire. Lors de cette période la température de l’eau de mer est maintenue constante à 21°C et la mortalité est relevée tous les 10 jours. La survie finale associée à des analyses qPCR permettent de qualifier le statut sanitaire en terme de portage OsHV-1 μVar de l’échantillon (statut infecté ou non infecté). Entre février et mars 2014, vingt et un échantillons de naissains âgés de 5 à 7 mois ont été échantillonnés dans six sites du littoral français (étang de Thau, bassin d’Arcachon, pertuis Charentais, baie de Bourgneuf, baie de Vilaine et rade de Brest) pour être qualifiés par ETL au site expérimental Ifremer d’Argenton. Les résultats de la campagne 2014 de qualification zoo-sanitaire confirment qu’en période hivernale, dans le milieu naturel, des naissains de captage peuvent être infectés par OsHV-1 μVar sans développement apparent de maladies ni mortalité. En revanche en ETL, ces lots de naissains infectés par OsHV-1 μVar présentent des taux de mortalité importants. Ainsi, sur les 20 échantillons de naissains de captage étudiés, onze ont révélé des maladies en ETL avec des mortalités cumulées variant de 16 % à 80 %. Ce ratio d’un échantillon sur deux de naissains infectés par OsHV-1 μVar demeure proche de celui observé de 2010 à 2013 lors des travaux précédents qui avaient permis de définir l’ETL. les six sites étudiés ont montré des résultats contrastés. En effet, les résultats se sont révélés favorables pour l’étang de Thau et la baie de Bourgneuf et défavorables dans le cas de la rade de Brest et la Baie de Vilaine. Pour ces deux derniers sites, tous les échantillons de naissains testés ont montré de fortes mortalités pendant l’ETL. Des différences s’observent également intra-site, notamment à Marennes Oléron avec 1 échantillon sur 3 infectés par OsHV-1 μVar ou dans pour Arcachon avec 3 échantillons sur 5. Dans le contexte préoccupant de l’épizootie actuelle, nos résultats confirment que certains lots de naissains de captage sont infectés par OsHV-1 μVar dès les mois de février-mars et pourrait être des acteurs actifs dans le déclenchement annuel du processus infectieux en milieu naturel quand la température de l’eau dépasse 16°C. Par ailleurs, notre étude démontre qu’il serait possible chaque année d’obtenir une qualification sanitaire précoce des zones de captage. Cela permettrait d’améliorer la gestion des risques liés aux transferts de naissains infectés par OsHV-1 μVar dans les différents bassins de production.

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Depuis 2008, des mortalités massives d’huîtres creuses âgées de moins d’un an sont relevées sur le littoral français dès que la température de l’eau de mer atteint le seuil de 16°C. Ces mortalités de naissains sont associées à la détection du virus OsHV-1 μVar. Depuis 2010, des travaux de qualification zoo-sanitaire ont montré qu’environ un lot de naissains de captage sur deux était infecté par le virus avant l’apparition des mortalités dans le milieu naturel. En 2014, dans le cadre de la première action QUALIF, les résultats de la qualification zoo-sanitaire des naissains du captage de l’année 2013 à l’échelle nationale ont mis en évidence le caractère infectieux des maladies développées par ces naissains porteurs latents d’OsHV-1 μVar. L’objectif 2015 du second volet QUALIF consistait à reproduire le travail de qualification zoo-sanitaire OsHV-1 μVar pour les naissains du captage de l’année 2014. Les résultats (2014 et 2015) permettront d’aborder la variation interannuelle du statut zoo-sanitaire des naissains pour chacun des sites étudiés. La méthodologie de l’épreuve de qualification zoo-sanitaire consiste en une période de 1 mois d’isolement des naissains en conditions contrôlées de laboratoire. Lors de cette épreuve, la température de l’eau de mer est maintenue constante à 21°C et la mortalité est relevée tous les 10 jours. La survie finale et les analyses qPCR permettent de qualifier le statut sanitaire en terme de portage OsHV-1 μVar de l’échantillon (infecté ou non infecté). De début janvier à fin mars 2015, 39 échantillons de naissains âgés de 5 à 7 mois ont été prélevés dans 6 sites du littoral français (étang de Thau, bassin d’Arcachon, bassin de Marennes Oléron, baie de Bourgneuf, embouchure de La Vilaine et rade de Brest) pour être testés en épreuve thermique de laboratoire (ETL) dans l’outil expérimental Ifremer à Argenton. Les résultats montrent que 25 des 39 (soit 64 %) lots de naissains de captage testés ont développé des maladies en ETL associés à des mortalités cumulées variant de 6 à 72 %. Cette valeur de 64 % de lots détectés est plus élevée que celle précédemment observée en 2014 (55 %). Les résultats de cette seconde campagne de qualification zoo-sanitaire sont favorables pour les naissains de l’étang de Thau (absence de mortalité), moins favorables pour ceux d’Arcachon, Marennes Oléron, et ceux de la baie de Bourgneuf (réponses contrastées en terme de mortalité intra-site) et très défavorables pour les naissains de La Vilaine et de la rade de Brest (mortalités observées sur tous les échantillons testés). La principale conclusion de cette seconde étude de qualification zoo-sanitaire est identique à celle de 2014, à savoir qu’il est existe dans le milieu naturel en période hivernale des lots de naissains de captage infectés par OsHV-1 μVar sans développement apparent des maladies. Ces lots de naissains porteurs latents d’OsHV-1 μVar sont détectables en ETL et la présence d’OsHV-1 μVar peut alors être confirmée par qPCR. Dans le contexte actuel d’épizooties chroniques, nos résultats confirment à nouveau qu’il est possible d’identifier précocement les lots de naissains infectés ou non par OsHV-1 μVar. Ces animaux infectés sont un réservoir du virus en période hivernale. Dès que la température de l’eau de mer franchit le seuil de 16°C, ils participeront à la réémergence des maladies en milieu naturel. Par ailleurs, cette seconde étude de qualification zoo-sanitaire confirme la possibilité d’apprécier le risque sanitaire pour chaque zone de captage en fonction de la détection précoce des lots de naissains infectés par OsHV-1 μVar.

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The temporal variability of delta(13)C in suspended particulate organic matter (POM) and oyster Crassostrea gigas along a salinity gradient was investigated from May 1992 to September 1993 within the estuarine bay of Marennes-Oleron (France). During this period the mean daily discharge of the Charente River exhibited large seasonal variation, with a high discharge from November 1992 to January 1993. Contrary to that at the river mouth and the marine littoral, delta(13)C in POM and in oysters at mid-estuary was affected by the high flood period. The delta(13)C values of POM decreased in mid-estuary and remained at low levels during the high discharge period, indicating an increasing contribution of terrestrial inputs to the estuarine POM pool. At the same site, a remarkable decrease of delta(13)C in oysters occurred between December 1992 and March 1993 (after a time lag compared to the ambient POM), indicating incorporation of terrestrial organic matter in oyster tissues during the high flood discharge. The lag between the delta(13)C decrease in POM and oysters is attributed to the time needed for oyster tissues to incorporate enough newly terrestrial light carbon to be recognized by the delta(13)C measure (about 1 to 2 mo). This time interval depends on tissue turnover time. The delta(13)C POM decrease (i.e. 1.3 parts per thousand) cannot explain entirely the decrease observed in oysters (i.e. 2.3 parts per thousand). In fact, the pattern exhibited by mid-estuarine oysters can be explained by the increasing contribution of terrestrial organic matter to their feeding, and the inability to preferentially utilize specific components of the estuarine POM that are C-13-enriched.

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The linked concepts of 'microbial loop' and 'protozoan trophic link' have been very well documented in filter-feeding microzooplankton such as copepods, but have not been applied to energy transfer to benthic suspension-feeding macrofauna, with the exception of the recent demonstration of heterotrophic flagellate assimilation by mussels. The oyster Crassostrea gigas obtains energy resources by filtering microalgae (similar to 5 to 100 mu m). However, in turbid estuaries, light-limited phytoplanktonic production cannot entirely account for oyster energy requirements. Conversely, picoplankters (<2 mu m), which are main effecters of coastal energy flow and matter cycling, are not efficiently retained by oyster filtration. Ciliate protozoal as both micro-sized cells (similar to 5 to 100 run) and bacteria grazers, may represent a major intermediary in trophic transfer between picoplankton and metazoa. The ciliate Uronema was intensely cultured and labelled, using the cyanobacteria Synechococcus as an auto-fluorescent biomarker. The labelled ciliates were offered as potential prey to oysters. We report here the first experimental evidence of a significant retention and ingestion of ciliates by oysters, supporting the role of protozoa as a realistic trophic link between picoplankters and filter-feeding bivalves and thus enhancing their potential importance in estuarine microbial food webs.

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Oysters play an important role in estuarine and coastal marine habitats, where the majority of humans live. In these ecosystems, environmental degradation is substantial, and oysters must cope with highly dynamic and stressful environmental constraints during their lives in the intertidal zone. The availability of the genome sequence of the Pacific oyster Crassostrea gigas represents a unique opportunity for a comprehensive assessment of the signal transduction pathways that the species has developed to deal with this unique habitat. We performed an in silico analysis to identify, annotate and classify protein kinases in C. gigas, according to their kinase domain taxonomy classification, and compared with kinome already described in other animal species. The C. gigas kinome consists of 371 protein kinases, making it closely related to the sea urchin kinome, which has 353 protein kinases. The absence of gene redundancy in some groups of the C. gigas kinome may simplify functional studies of protein kinases. Through data mining of transcriptomes in C. gigas, we identified part of the kinome which may be central during development and may play a role in response to various environmental factors. Overall, this work contributes to a better understanding of key sensing pathways that may be central for adaptation to a highly dynamic marine environment.

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Afin de vérifier sur un site régional la présence d'une qualité d'eau de mer permettant la réalisation d'élevages larvaires d'huîtres creuses Crassostrea gigas (et/ou d'huîtres plates Ostrea edulis) sur une base régulière tout au long de l'année, une série d'élevages comparatifs a été réalisée à la Station IFREMER de Palavas, de mars 1995 à septembre 1995. Le matériel biologique nécessaire à cette comparaison est constitué de larves d'huîtres creuses Crassostrea gigas et en algues unicellulaires provenant de l'éc1oserie commerciale de la SATMAR. Les résultats obtenus démontrent la capacité de l'eau de mer du site étudié sur Leucate à supporter la production de larves d'huîtres creuses compétentes à se métamorphoser et à se fixer. Cette étude s'inscrit dans la démarche de la Région Languedoc-Roussillon et du CEPRALMAR visant à favoriser l'implantation d'une écloserie de production de Mollusques Bivalves sur le littoral méditerranéen.

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Since 2008, massive mortality events of Pacific oysters (Crassostrea gigas) have been reported worldwide and these disease events are often associated with Ostreid herpesvirus type 1 (OsHV-1). Epidemiological field studies have also reported oyster age and other pathogens of the Vibrio genus are contributing factors to this syndrome. We undertook a controlled laboratory experiment to simultaneously investigate survival and immunological response of juvenile and adult C. gigas at different time-points post-infection with OsHV-1, Vibrio tasmaniensis LGP32 and V. aestuarianus. Our data corroborates epidemiological studies that juveniles are more susceptible to OsHV-1, whereas adults are more susceptible to Vibrio. We measured the expression of 102 immune-genes by high-throughput RT-qPCR, which revealed oysters have different transcriptional responses to OsHV-1 and Vibrio. The transcriptional response in the early stages of OsHV-1 infection involved genes related to apoptosis and the interferon-pathway. Transcriptional response to Vibrio infection involved antimicrobial peptides, heat shock proteins and galectins. Interestingly, oysters in the later stages of OsHV-1 infection had a transcriptional response that resembled an antibacterial response, which is suggestive of the oyster's microbiome causing secondary infections (dysbiosis-driven pathology). This study provides molecular evidence that oysters can mount distinct immune response to viral and bacterial pathogens and these responses differ depending on the age of the host.

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Mortality of young Pacific oysters Crassostrea gigas associated with the ostreid herpesvirus 1 (OsHV-1) is occurring worldwide. Here, we examined for the first time the effect of salinity on OsHV-1 transmission and disease-related mortality of C. gigas, as well as salinity-related effects on the pathogen itself. To obtain donors for OsHV-1 transmission, we transferred laboratory-raised oysters to an estuary during a disease outbreak and then back to the laboratory. Oysters that tested OsHV-1 positive were placed in seawater tanks (35‰, 21°C). Water from these tanks was used to infect naïve oysters in 2 experimental setups: (1) oysters acclimated or non-acclimated to a salinity of 10, 15, 25 and 35‰ and (2) oysters acclimated to a salinity of 25‰; the latter were exposed to OsHV-1 water diluted to a salinity of 10 or 25‰. The survival of oysters exposed to OsHV-1 water and acclimated to a salinity of 10‰ was >95%, compared to only 43 to 73% survival in oysters acclimated to higher salinities (Expt 1), reflecting differences in the levels of OsHV-1 DNA and viral gene expression (Expts 1 and 2). However, the survival of their non-acclimated counterparts was only 23% (Expt 2), and the levels of OsHV-1 DNA and the expression of 4 viral genes were low (Expt 1). Thus, OsHV-1 may not have been the ultimate cause of mortality in non-acclimated oysters weakened by a salinity shock. It appears that reducing disease risk by means of low salinity is unlikely in the field.

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Dissertação de Mestrado, Aquacultura e Pescas, Especialização em Aquacultura, Faculdade de Ciências e Tecnologia, Universidade do Algarve, 2015

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The occurrence of OsHV-1, a herpes virus causing mass mortality in the Pacific oyster Crassostrea gigas was investigated with the aim to select individuals with different susceptibility to the infection. Naïve spat transferred to infected areas and juveniles currently being grown at those sites were analyzed using molecular and histology approaches. The survey period distinguishes itself by very warm temperatures reaching up to 3.5°C above the average. The virus was not detected in the virus free area although a spread of the disease could be expected due to high temperatures. Overall mortality, prevalence of infection and viral load was higher in spat confirming the higher susceptibility in early life stages. OsHV-1 and oyster mortality were detected in naïve spat after 15 days of cohabitation with infected animals. Although, infection was associated with mortality in spat, the high seawater temperatures could also be the direct cause of mortality at the warmest site. One stock of juveniles suffered an event of abnormal mortality that was significantly associated with OsHV-1 infection. Those animals were infected with a previously undescribed microvariant whereas the other stocks were infected with OsHV-1 μVar. Cell lesions due to the infection were observed by histology and true infections were corroborated by in situ hybridization. Survivors from the natural outbreak were exposed to OsHV-1 μVar by intramuscular injection and were compared to naïve animals. The survival rate in previously exposed animals was significantly higher than in naïve oysters. Results derived from this study allowed the selection of animals that might possess interesting characteristics for future analysis on OsHV-1 resistance.

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The Sydney rock oyster (Saccostrea glomerata) (SRO) is an oyster species that only occurs in estuaries along Australia's east coast. The SRO industry evolved from commercial gathering of oyster in the 1790s to a high production volume aquaculture industry in the 1970s. However, since the late 1970s the SRO industry has experienced a significant and continuous decline in production quantities and the industry's future commercial viably appears to be uncertain. The aim of this study was to review the history and the status of the SRO industry and to discuss the potential future prospects of this industry. This study summarised findings of the existing literature about the industry and defined development stages of the industry. Particular focus was put on the more recent development within the industry (1980s-present) which has not been covered adequately in the existing literature. The finding from this study revealed that major issues of the industry are linked to the management of prevailing diseases, the handling of water quality impairments from increasing coastal development, increasing competition from Australia's Pacific oyster (Crassostrea gigas) industry and the current socio-economic profile of the industry. The study also found that policy makers are currently confronted by the dilemma of saving a "dying art". Findings from this industry review may be vital for current and future fisheries managers and stakeholders as a basis for reviewing industry management and development strategies. This review may also be of interest for other aquaculture industries and fisheries who are dealing with similar challenges as the SRO industry.