Search results for "marine invertebrate"

showing 10 items of 39 documents

Polymorphism in Developmental Mode and Its Effect on Population Genetic Structure of a Spionid Polychaete, Pygospio elegans

2012

Population genetic structure of sedentary marine species is expected to be shaped mainly by the dispersal ability of their larvae. Long-lived planktonic larvae can connect populations through migration and gene flow, whereas species with nondispersive benthic or direct-developing larvae are expected to have genetically differentiated populations. Poecilogonous species producing different larval types are ideal when studying the effect of developmental mode on population genetic structure and connectivity. In the spionid polychaete Pygospio elegans, different larval types have been observed between, and sometimes also within, populations. We used microsatellite markers to study population st…

Gene FlowSalinityGenotypePopulationPlant ScienceEnvironmentBiologyENVIRONMENTAL-FACTORSGene flowBALTIC SEA AREAPELAGIC LARVAL DURATIONSpecies SpecificityATLANTIC SALMONReproduction AsexualAnimalseducationMARINE-INVERTEBRATESGenetic diversityPolychaeteeducation.field_of_studyGeographyEcologyfungiGenetic VariationPolychaetaCOD GADUS-MORHUAPOSTGLACIAL COLONIZATIONMarine invertebratesbiology.organism_classificationGenetics PopulationGASTROPOD GENUS ALDERIABenthic zoneLarvaGenetic structureta1181Biological dispersalAnimal MigrationAnimal Science and ZoologyLANDSCAPE GENETICSSALMON SALMO-SALARMicrosatellite RepeatsIntegrative and Comparative Biology
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Introduction to Symposium: Poecilogony--A Window on Larval Evolutionary Transitions in Marine Invertebrates

2012

Poecilogony is the intraspecific variation in developmental mode that has been described in some marine invertebrates. Poecilogonous species produce different larval forms (e.g., free-swimming planktotrophic larvae as well as brooded lecithotrophic or adelphophagic larvae). Poecilogony can be a controversial topic, since it is difficult to identify and characterize the phenomenon with certainty. It has been challenging to determine whether poecilogony represents developmental polymorphism with a genetic basis or developmental polyphenism reflecting plastic responses to environmental cues. Other outstanding questions include whether common mechanisms underlie the developmental variation we o…

LarvaPolyphenismEcologyMarine larval ecologyAnimal Science and ZoologyPlant ScienceComparative biologyMarine invertebratesBiologyEvolutionary transitionsIntraspecific competitionIntegrative and Comparative Biology
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Cytotoxic Activity of Tunicate Hemocytes

1996

Tunicates (protochordates) are filter-feeding marine invertebrates with a worldwide distribution. In their larval form, they exhibit many of the features characteristic of the vertebrates. The larva, with a tail, notochord, and dorsal neural tube, upon settlement undergoes a remarkable metamorphosis in which it loses most of its chordate characteristics and becomes a sessile invertebrate adult. Thus, due to these characteristics, tunicates are considered to be the most primitive members of the phylum Chordata. Owing to their position in the phylogenetic line leading to the vertebrates, they have attained importance as experimental organisms and have been examined by researchers from a varie…

Larvamedia_common.quotation_subjectNeural tubeZoologyChordateMarine invertebratesBiologybiology.organism_classificationTunicatemedicine.anatomical_structureNotochordmedicineMetamorphosisDevelopmental biologymedia_common
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Insight into the role of cetaceans in the life cycle of the tetraphyllideans (Platyhelminthes: Cestoda)

2007

Abstract Four types of tetraphyllidean larvae infect cetaceans worldwide: two plerocercoids differing in size, ‘small’ (SP) and ‘large’ (LP), and two merocercoids referred to as Phyllobothrium delphini and Monorygma grimaldii . The latter merocercoid larvae parasitize marine mammals exclusively and exhibit a specialised cystic structure. Adult stages are unknown for any of the larvae and thus the role of cetaceans in the life cycle of these species has been a long-standing problem. The SP and LP forms are thought to be earlier stages of P. delphini and M. grimaldii that are presumed to infect large pelagic sharks that feed on cetaceans. A molecular analysis of the D2 variable region of the …

Life Cycle StagesLarvabiologyEcologyDolphinsCestodaZoologyCetaceaMarine invertebratesCestode Infectionsbiology.organism_classificationHost-Parasite InteractionsTetraphyllideaInfectious DiseasesGenusPlerocercoidAnimalsCestodaParasitologyMesenteriesInternational Journal for Parasitology
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GHOST NETS AS SUBSTRATE FOR MARINE INVERTEBRATES

Marine InvertebratesSettore BIO/05 - ZoologiaBiodiversityGhost nets
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Marine molecular biology : An emerging field of biological sciences

2007

An appreciation of the potential applications of molecular biology is of growing importance in many areas of life sciences, including marine biology. During the past two decades, the development of sophisticated molecular technologies and instruments for biomedical research has resulted in significant advances in the biological sciences. However, the value of molecular techniques for addressing problems in marine biology has only recently begun to be cherished. It has been proven that the exploitation of molecular biological techniques will allow difficult research questions about marine organisms and ocean processes to be addressed. Marine molecular biology is a discipline, which strives t…

Marine biologyEcology (disciplines)FisheriesMarine BiologyBioengineeringMarine lifemarine biology ; molecular biology ; marine microbiology ; marine natural products ; marine ecology ; fisheriesMarine invertebratesBiological Science DisciplinesBiologyEcology and Evolutionary BiologyApplied Microbiology and BiotechnologyMolecular biologyBiological Science DisciplinesField (geography)General partnershipAnimalsMolecular BiologyEcosystemBiotechnology
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The immune mediators in echinoderms as souce of novel AMPs against microbial biofilms

2012

Marine invertebrate coelomocytes innate immunity staphylococcal biofilmsSettore BIO/19 - Microbiologia Generale
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Marine Invertebrates as Bioindicators of Heavy Metal Pollution

2014

Atmosphere, earth and water compose the environment. The presence of heavy metals in the environment has grown because of their large employment in some industrial and agricultural activities. Although these metals are terrestrial products, they flow into the sea through effluents and sewage or are directly discharged from industries placed on the seawater front. It should be considered that metals concentrations vary widely according to different seawater latitudes and depths and can be strongly influenced by fresh water discharges from heavily polluted rivers. In this review recent studies on heavy metal pollution in marine ecosystems and their organisms will be presented. Metal speciatio…

Pollution Heavy Metals Bioidicators Marine Invertebrates Sea Urchin EmbryosSettore BIO/06 - Anatomia Comparata E CitologiaOpen Journal of Metal
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Cadmium-binding proteins in midgut gland of freshwater crayfishProcambarus clarkii

1989

Metallothioneins, metal binding proteins, were originally isolated and characterized by Margoshes and Vallee. These proteins have a high affinity for various heavy metals, particularly cadmium and mercury and have extensively been studied in mammals. Metal binding proteins have been observed in a variety of marine invertebrates; however, there is very little information available on metal binding proteins in freshwater invertebrates, and particularly in freshwater crustaceans. Cadmium is an ubiquitous non essential element which possesses high toxicity to aquatic organisms. Cadmium binding proteins observed in invertebrates have similar characteristics to mammalian metallothioneins. In 1978…

Procambarus clarkiiCadmiumbiologyDecapodaHealth Toxicology and Mutagenesischemistry.chemical_elementAstacoideaGeneral MedicineMarine invertebratesToxicologybiology.organism_classificationCrayfishPollutionCrustaceanchemistryEnvironmental chemistryAnimalsMetallothioneinEcotoxicologyMetallothioneinSpectrophotometry UltravioletChromatography LiquidBulletin of Environmental Contamination and Toxicology
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Habitat degradation correlates with tolerance to climate-change related stressors in the green mussel Perna viridis from West Java, Indonesia

2013

It is unclear whether habitat degradation correlates with tolerance of marine invertebrates to abiotic stress. We therefore tested whether resistance to climate change-related stressors differs between populations of the green mussel Perna viridis from a heavily impacted and a mostly pristine site in West Java, Indonesia. In laboratory experiments, we compared their oxygen consumption and mortality under lowered salinity (-13 and -18 units, both responses), hypoxia (0.5 mg/l, mortality only) and thermal stress (+7 degrees C, mortality only). Mussels from the eutrophied and polluted Jakarta Bay showed a significantly smaller deviation from their normal oxygen consumption and higher survival …

SalinityPernaClimate ChangeAquatic ScienceBiologyOceanographyStress PhysiologicalAnimalsSeawaterWater PollutantsEcosystemAbiotic stressEcologyWater PollutionfungiHypoxia (environmental)Marine invertebratesMusselEutrophicationbiology.organism_classificationPollutionHabitat destructionIndonesiaEutrophicationBayEnvironmental MonitoringPerna viridisMarine Pollution Bulletin
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