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2011, ICES identification leaflets for diseases and parasites of fish and shellfish, Volume 30., 7
Perkinsus marinus causes reduction in growth and meat condition followed by mortality of susceptible infected oysters, although most deleterious effects do not... 
fish diseases | Ostreidae | Crassostrea virginica | Crassostrea rhizophorae | histopathology | parasitic diseases | Crassostrea corteziensis | environmental conditions | Perkinsus marinus | geographical distribution | Crassostrea gigas
Book
1953, Fishery bulletin of the Fish and Wildlife Service, Volume 84., 167-185.
Book
1939, Manuscript reports of the biological stations, Volume 147B., 4
Book
Autophagy, ISSN 1554-8627, 03/2015, Volume 11, Issue 3, pp. 516 - 526
Recent mass mortality outbreaks around the world in Pacific oysters, Crassostrea gigas, have seriously affected the aquaculture economy. Although the causes... 
Pacific oyster | autophagy | Atg8-PE, Atg8-phosphatidylethenolamine | MAP1LC3A/B (LC3A/B), microtubule-associated proteins 1 light chain 3 alpha/beta (mammalian orthologs of the predicted Crassostrea gigas LC3 and yeast Atg8) | ATG, autophagy-related | Vibrio aestuarianus | OsHV-1, Ostreid herpesvirus 1 | LC3-II, cleaved, lipidated and autophagosome-associated form of LC3 | OsHV-1 | hpi, hours postinfection | PCR, polymerase chain reaction | DNA, deoxyribonucleic acid | Cl, ammonium chloride | Crassostrea gigas | Autophagy | MORTALITY | lipidated and autophagosome-associated form of LC3 | GUIDELINES | LC3-II | CELL BIOLOGY | MAP1LC3A | deoxyribonucleic acid | autophagy-related | STRESS | Atg8-phosphatidylethenolamine | microtubule-associated proteins 1 light chain 3 alpha | polymerase chain reaction | hpi | cleaved | B (LC3A | CRASSOSTREA-GIGAS | QUANTIFICATION | hours postinfection | ADAPTATIONS | beta (mammalian orthologs of the predicted Crassostrea gigas LC3 and yeast Atg8) | IDENTIFICATION | NH4Cl | Ostreid herpesvirus 1 | REAL-TIME PCR | Atg8-PE | ATG | ammonium chloride | DNA | MONITORING AUTOPHAGY | PCR | OSTREID HERPESVIRUS-1 | Amino Acid Sequence | Microscopy, Electron, Transmission | Herpesviridae - pathogenicity | Virus Diseases - immunology | Signal Transduction | DNA, Viral - isolation & purification | Gene Expression Regulation | Molecular Sequence Data | Phylogeny | Immunity, Innate | Bacterial Infections - veterinary | Crassostrea - immunology | Animals | Bacterial Infections - immunology | Crassostrea - virology | Crassostrea - microbiology | Virus Diseases - veterinary | Vibrio - pathogenicity | Real-Time Polymerase Chain Reaction | Aquaculture | Index Medicus
Journal Article
1985, Identification leaflets for diseases and parasites of fish and shellfish, Volume 30., 4
Perkinsus marinus causes reduction in growth and meat condition followed by mortality of susceptible infected oysters, although most deleterious effects do not... 
fish diseases | Ostreidae | Crassostrea virginica | Crassostrea rhizophorae | histopathology | parasitic diseases | Crassostrea corteziensis | environmental conditions | Perkinsus marinus | geographical distribution | Crassostrea gigas
Book
Journal Article
1934, Investigational report (United States. Bureau of Fisheries), Volume 18., 10
Contents: 1) Iodine content of oysters; 2) The effect of washing on the composition of oysters; 3) Value of oysters as a source of iodine. 
iodine | Crassostrea virginica | chemical composition | Crassostrea gigas
Book
PLoS ONE, ISSN 1932-6203, 10/2013, Volume 8, Issue 10, pp. e76464 - e76464
The evolution of TLR-mediated innate immunity is a fundamental question in immunology. Here, we report the characterization and functional analysis of four TLR... 
DEFENSE | RECOGNITION | MULTIDISCIPLINARY SCIENCES | COMPONENTS | MOLECULAR-CLONING | INFECTION | KAPPA-B | PACIFIC OYSTER | EXPRESSION | DROSOPHILA | MYD88 | Multigene Family | Crassostrea - metabolism | Hemocytes - immunology | Humans | Molecular Sequence Data | NF-kappa B - metabolism | Toll-Like Receptors - chemistry | Crassostrea - genetics | Gene Expression Profiling | Phylogeny | Crassostrea - classification | Myeloid Differentiation Factor 88 - chemistry | Peptides - metabolism | Toll-Like Receptors - antagonists & inhibitors | Toll-Like Receptors - metabolism | Cytokines - genetics | Genes, Reporter | Amino Acid Sequence | Cell Line | Gene Expression | Cytokines - metabolism | Peptides - chemistry | Signal Transduction | Models, Molecular | Cell Degranulation - immunology | Immunity, Innate | Hemocytes - metabolism | Peptides - pharmacology | Protein Transport | Crassostrea - immunology | Animals | NF-kappa B - genetics | Toll-Like Receptors - genetics | Protein Binding | Ligands | Protein Conformation | Myeloid Differentiation Factor 88 - metabolism | Evolution, Molecular | Oysters | Peptides | RNA | Crassostrea | Health aspects | Water-borne diseases | Membranes | Laboratories | Genes | Innate immunity | Infections | Activation | Genomes | mRNA | Immunity | Proteins | Signal transduction | Receptors | Immunology | Toll-like receptors | Evolution | Localization | Immune system | NF-κB protein | Cytokines | Marine biology | Functional analysis | Mammals | Immune systems | Signaling | Insects | Tumor necrosis factor | Plasma membranes | Degranulation | Adapter proteins | Hemocytes | Endosomes | Vibrio | Index Medicus
Journal Article