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Literatura académica sobre el tema "OsHV-1 µVar"
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Artículos de revistas sobre el tema "OsHV-1 µVar"
Burge, CA, KS Reece, AK Dhar, P. Kirkland, B. Morga, L. Dégremont, N. Faury, BJT Wippel, A. MacIntyre y CS Friedman. "First comparison of French and Australian OsHV-1 µvars by bath exposure". Diseases of Aquatic Organisms 138 (12 de marzo de 2020): 137–44. http://dx.doi.org/10.3354/dao03452.
Texto completoAgnew, M. Victoria, Carolyn S. Friedman, Christopher Langdon, Konstantin Divilov, Blaine Schoolfield, Benjamin Morga, Lionel Degremont et al. "Differential Mortality and High Viral Load in Naive Pacific Oyster Families Exposed to OsHV-1 Suggests Tolerance Rather than Resistance to Infection". Pathogens 9, n.º 12 (17 de diciembre de 2020): 1057. http://dx.doi.org/10.3390/pathogens9121057.
Texto completoCain, Georgia, Olivia Liu, Richard J. Whittington y Paul M. Hick. "Reduction in Virulence over Time in Ostreid herpesvirus 1 (OsHV-1) Microvariants between 2011 and 2015 in Australia". Viruses 13, n.º 5 (20 de mayo de 2021): 946. http://dx.doi.org/10.3390/v13050946.
Texto completoAbbadi, Miriam, Gianpiero Zamperin, Michele Gastaldelli, Francesco Pascoli, Umberto Rosani, Adelaide Milani, Alessia Schivo et al. "Identification of a newly described OsHV-1 µvar from the North Adriatic Sea (Italy)". Journal of General Virology 99, n.º 5 (1 de mayo de 2018): 693–703. http://dx.doi.org/10.1099/jgv.0.001042.
Texto completoPaul-Pont, I., O. Evans, NK Dhand y RJ Whittington. "Experimental infections of Pacific oyster Crassostrea gigas using the Australian ostreid herpesvirus-1 (OsHV-1) µVar strain". Diseases of Aquatic Organisms 113, n.º 2 (9 de marzo de 2015): 137–47. http://dx.doi.org/10.3354/dao02826.
Texto completode Kantzow, M., P. Hick, JA Becker y RJ Whittington. "Effect of water temperature on mortality of Pacific oysters Crassostrea gigas associated with microvariant ostreid herpesvirus 1 (OsHV-1 µVar)". Aquaculture Environment Interactions 8 (3 de agosto de 2016): 419–28. http://dx.doi.org/10.3354/aei00186.
Texto completoClerissi, Camille, Xing Luo, Aude Lucasson, Shogofa Mortaza, Julien de Lorgeril, Eve Toulza, Bruno Petton et al. "A core of functional complementary bacteria infects oysters in Pacific Oyster Mortality Syndrome". Animal Microbiome 5, n.º 1 (3 de mayo de 2023). http://dx.doi.org/10.1186/s42523-023-00246-8.
Texto completoPetton, Bruno, Delphine Destoumieux-Garzón, Fabrice Pernet, Eve Toulza, Julien de Lorgeril, Lionel Degremont y Guillaume Mitta. "The Pacific Oyster Mortality Syndrome, a Polymicrobial and Multifactorial Disease: State of Knowledge and Future Directions". Frontiers in Immunology 12 (18 de febrero de 2021). http://dx.doi.org/10.3389/fimmu.2021.630343.
Texto completoDestoumieux-Garzón, Delphine, Caroline Montagnani, Luc Dantan, Noémie de San Nicolas, Marie-Agnès Travers, Léo Duperret, Guillaume M. Charrière et al. "Cross-talk and mutual shaping between the immune system and the microbiota during an oyster's life". Philosophical Transactions of the Royal Society B: Biological Sciences 379, n.º 1901 (18 de marzo de 2024). http://dx.doi.org/10.1098/rstb.2023.0065.
Texto completoCao, A., MA Travers, T. Varela y A. Villalba. "The utility of selective breeding to increase resistance against OsHV-1 µVar for Pacific oyster Crassostrea (Magallana) gigas farming in Galicia is called into question by infection with Vibrio aestuarianus". Diseases of Aquatic Organisms, 2025. https://doi.org/10.3354/dao03838.
Texto completoTesis sobre el tema "OsHV-1 µVar"
Vanhuysse, Charles. "Impacts de l'ostréiculture à mésoéchelle sur le microphytobenthos et ses performances photosynthétiques, la macrofaune benthique et rôle de l'érosion estuarienne dans les mortalités de naissains d'huitres Crassostrea gigas liées à OsHV-1 μ Var Drivers of epipelic mictophytobenthic photobiology and groth in oyster farm Benthic macrofaunal changes in oyster parks during an OsHV-1 µVar oyster spat mortality outbreak Environmental dynamics of the Ostreid herpes virus (OsHV-1 µVar) in oyster spats and microphytobenthic biofilms during an in situ mortality outbreak In situ resuspension of benthic sediments and biofilm components during an OsHV-1 µVar Crassostrea gigas oyster spat mortality episode". Thesis, Normandie, 2019. http://www.theses.fr/2019NORMC262.
Texto completoSince 2008, the mortality of Pacific oyster spat Crassostrea gigas has mainly been linked to the Ostreid herpesvirus 1 μvariant (OsHV-1 μVar). Environmental parameters favoring the persistence and spread of the virus could affect its propagation dynamics. The objectives of this thesis were to study in situ the interactions between oyster spat and their benthic environment during an episode of mortality. The photobiology of the microphytobenthos beneath the tables seemed to be in a better state compared to that observed in aisles that could promote viral resilience. The oyster tables attenuated light, temperature and desiccation, thus avoiding thermo and photoinhibition of the microphytobenthos. The benthic habitat environmental quality indices based on the macrozoobenthic community showed a degradation of the environment following the influx of organic matter induced by oyster spat mortalities and strandings of the macroalgae. A significant amount of OsHV-1 was found on the surface of the biofilm before the mortalities. Resuspension was preferentially associated with microphytobenthic particles with small currents
Duperret, Léo. "Caractérisation des mécanismes moléculaires de la permissivité au Syndrome de Mortalité de l'Huître du Pacifique (POMS) sous influence de la température et du régime alimentaire". Electronic Thesis or Diss., Perpignan, 2024. http://www.theses.fr/2024PERP0042.
Texto completoOver the past decades, food production systems have had to meet the growing demand for food driven by the exponential increase in the global human population. This demand has led to intensified agriculture, livestock farming, and fishing practices, often at the expense of natural resources and planetary health. In the marine environment, intensified fishing has resulted in the depletion of certain stocks and the implementation of fishing quotas. The decline in marine resources has prompted the development of aquaculture, a practice for farming blue resources. However, with overproduction and global environmental changes, we have witnessed an upsurge in epizootics since 1970, particularly among ectothermic organisms. The Pacific Oyster Mortality Syndrome (POMS) is a prime example, responsible for significant annual mortality episodes in juvenile oysters of the species Magallana gigas across major producing countries. Emerging in 2008 in France, this polymicrobial disease is influenced by several factors, including temperature (between 16°C and 24°C along the French coasts) and the availability of nutritional resources. Although extensive research has helped characterize its pathogenesis and identify the various factors influencing the development of the disease, the molecular mechanisms underlying variations in permissiveness according to these factors remain largely unknown. This thesis addresses this objective. Through a rigorous experimental design, a holistic approach, and an integrative comparative analysis at multiple scales under permissive and non-permissive conditions for the disease, we identified the molecular mechanisms underlying permissiveness related to temperature and nutritional resources. These findings enhance our understanding of the complexity of host-pathogen-environment interactions and will ultimately contribute to the development of predictive models for epidemiological risk