Search results for "Harpacticoida"

showing 10 items of 12 documents

To Swim or Not to Swim: Potential Transmission of Balaenophilus manatorum (Copepoda: Harpacticoida) in Marine Turtles

2017

Species of Balaenophilus are the only harpacticoid copepods that exhibit a widespread, obligate association with vertebrates, i.e., B. unisetus with whales and B. manatorum with marine turtles and manatees. In the western Mediterranean, juveniles of the loggerhead sea turtle, Caretta caretta are the only available hosts for B. manatorum, which has been found occurring at high prevalence (>80%) on them. A key question is how these epibionts are transmitted from host to host. We investigated this issue based on experiments with live specimens of B. manatorum that were cultured with turtle skin. Specimens were obtained from head-started hatchlings of C. caretta from the western Mediterranean. …

0106 biological sciencesAvian clutch sizePhysiologyOvipositionlcsh:MedicinePathogenesisPathology and Laboratory Medicine01 natural sciencesLoggerhead sea turtlelaw.inventionlawReproductive PhysiologyMedicine and Health SciencesBiomechanicsTurtle (robot)lcsh:ScienceHarpacticoidaMusculoskeletal SystemMultidisciplinarybiologyOrganic CompoundsPlanktonTurtlesCrustaceansChemistryVertebratesHost-Pathogen InteractionsPhysical SciencesLegsAnatomyClutchesResearch ArticleArthropoda010603 evolutionary biologyCopepodsHost-Parasite InteractionsCopepodaSea WaterAnimalsSymbiosisHatchlingSwimmingEthanolBiological Locomotion010604 marine biology & hydrobiologylcsh:RLimbs (Anatomy)Organic ChemistryOrganismsChemical CompoundsBiology and Life SciencesReptilesbiology.organism_classificationInvertebratesFisheryBaleenTestudinesAlcoholsAmniotesEarth SciencesBiological dispersallcsh:QHydrologyhuman activitiesPLoS ONE
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An annotated checklist of freshwater Copepoda (Crustacea, Hexanauplia) from continental Ecuador and the Galapagos Archipelago.

2019

An annotated checklist of the free-living freshwater Copepoda recorded in different regions in Ecuador (including the Amazon, the Andes, the coastal region, and the Galapagos Islands) is here provided. We revised all published records, critically evaluated the validity of each taxon and provided short taxonomic and biogeographical remarks for each one. A total of 27 taxa have been reported, including species and records at the generic level only. The species and taxa identified only up to the generic level belong to five families and 14 genera. The Cyclopoida is the most diverse group with 16 records belonging to species (or identified to the generic level only) and eight genera, followed b…

0106 biological sciencesHexanaupliaSettore BIO/05 - ZoologiaBiodiversityCyclopoida01 natural sciencesCrustacealcsh:ZoologyBilaterialcsh:QL1-991species richnessHarpacticoidaCalanoidaInvertebratageography.geographical_feature_categorybiologyEcologyAmazon rainforestCephalornisHarpacticoidaBiodiversityNeotropicfreshwater CopepodaChecklistBiogeographyArchipelagoEcuadorCoelenterataNeotropicsArthropodaNephrozoa010607 zoologyProtostomiaCircumscriptional names of the taxon underCopepodaFaunistics & DistributionSystematicsgeographical distributionAnimaliaCalanoidaEcology Evolution Behavior and Systematicsgeography010604 marine biology & hydrobiologyCyclopoidaSouth Americabiology.organism_classificationTaxonNotchiaEcdysozoaAnimal Science and ZoologySpecies richnessCatalogues and ChecklistsAmericasMaxillopodaZooKeys
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An account on the taxonomy and molecular diversity of a marine rock-pool dweller, Tigriopus fulvus (Copepoda, Harpacticoida)

2019

[ES] El género de copépodos Tigriopus Norman, 1869 se distribuye en todo el mundo en charcas de rocas costeras y se considera que actualmente incluye 14 especies válidas. Tigriopus fulvus (Fischer 1860), con sus subespecies Tigriopus fulvus adriaticus Van Douwe 1913 y Tigriopus fulvus algiricus Monard 1935, y Tigriopus minutus Bozic 1960 han sido descritos para el área del Mediterráneo, pero la diversidad real del género es desconocida actualmente. El objetivo de este estudio fue evaluar la identidad real de las poblaciones mediterráneas de Tigriopus y dilucidar su taxonomía y patrón de diversidad genética. Con este fin, se secuenció un fragmento del gen de ADN mitocondrial (citocromo c oxi…

0106 biological sciencesTigriopusZOOLOGIATaxonomía basada en ADNSettore BIO/05 - ZoologiaZoologyMonopolización periódicaAquatic ScienceSubspecies01 natural sciencesHarpacticoidaDNA taxonomyTECNOLOGIA DEL MEDIO AMBIENTEgeographyGenetic diversitygeography.geographical_feature_categorybiologyGenetic structuring010604 marine biology & hydrobiologyCytochrome c oxidase subunit Igenetic structuring clockwork monopolization rocky shore communities cryptic species DNA taxonomyComunidades de costas rocosasbiology.organism_classificationEstructuración genéticaRocky shore communitiesGenetic structureCryptic speciesClockwork monopolizationTaxonomy (biology)Especies crípticasestructuración genética monopolización periódica comunidades de costas rocosas especies crípticas taxonomía basada en ADNTide pool
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Morphological and molecular characterization of three new parastenocarididae (Copepoda: Harpacticoida) from caves in Southern Italy

2020

We describe three new parastenocaridid: Cottarellicaris sanctiangeli Bruno & Cottarelli sp. nov., Stammericaris vincentimariae Bruno & Cottarelli sp. nov. and Proserpinicars specincola Bruno & Cottarelli sp. nov., collected in the pools of five different caves located in Calabria (Southern Italy). We conducted a phylogenetic analysis based on the mitochondrial COI and ribosomal 18S sequences of C. sanctiangeli sp. nov. and S. vincentimariae sp. nov., and of four more species of Stammericaris and one Proserpinicaris available from literature. Based on the molecular study, the specimens of C. sanctiangeli sp. nov. are clearly separated from the species belonging to the closely-rel…

Arthropoda18S rDNA geneStygofaunaSettore BIO/05 - ZoologiaStygofaunaCrustaceanKarstic caveMonophylyCaveGenusAnimaliaParastenocarididaeCladeHarpacticoidaEcology Evolution Behavior and SystematicsTaxonomySynapomorphycrustacean COI gene 18S rDNA gene karstic cave evaporitic cave stygofaunageographygeography.geographical_feature_categorybiologyPhylogenetic treeBotanyHarpacticoidaBiodiversitybiology.organism_classificationEvaporitic caveCOI geneQL1-991Evolutionary biologyQK1-989ZoologyMaxillopoda
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Meiofauna ratios as environmental indicators in the profundal depths of large lakes.

1995

Two sets of samples from Lake Paijanne and one from Lake Ladoga were used to examine the relations between the meiofauna and environmental variables. The most obvious indicators of an unpolluted environment were, in order of importance, the true meiofauna/total meiofauna ratio, the proportion of Aeolosomatidae, the proportion of Harpacticoida (excluding C. staphylinus), the meiofauna/macrofauna biomass ratio, the proportion of Naididae and the A. crassa + P. schmeili/true meiofauna ratio. Conversely, the clearest indicators of a polluted environment were the proportion of resting stages of Cyclopinae, the Nematoda/non-resting Copepoda ratio, and the proportions of Tubificidae, Oligochaeta, …

Biomass (ecology)NaididaebiologyEcologyMeiobenthosGeneral MedicineManagement Monitoring Policy and Lawbiology.organism_classificationPollutionCladoceraBenthic zoneEnvironmental scienceProfundal zoneOxygen saturationHarpacticoidaGeneral Environmental ScienceEnvironmental monitoring and assessment
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Diversity of meiofauna in the lacustrine profundal zone: Bathymetric differences and influence of environmental factors

1993

The diversity and species richness of total meiofauna, Harpacticoida and Oligochaeta in relation to depth and other environmental variables were studied at nine stations and in two profundal depth zones in Lake Paijanne which includes both oligotrophic and eutrophicated or organically loaded areas.

EcologybiologyEcologyMeiobenthosSpecies diversityAquatic Sciencebiology.organism_classificationBenthosBenthic zoneProfundal zoneBathymetrySpecies richnessHarpacticoidaEcology Evolution Behavior and SystematicsWater Science and TechnologyAquatic Sciences
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Balaenophilus manatorum (Ortíz, Lalana and Torres, 1992) (Copepoda: Harpacticoida) from loggerhead sea turtles, Caretta caretta, from Japan and the w…

2010

The ectoparasitic harpacticoid copepod, Balaenophilus manatorum (Ortiz, Lalana and Torres, 1992) (syn. Balaenophilus umigamecolus Ogawa, Matsuzaki and Misaki, 1997), has been reported on 3 species of marine turtles from the Pacific and the Mediterranean and from the West Indian manatee off Cuba in the Caribbean. The 3 available descriptions of this species were made using light microscopy. In this paper, we provide an amended description of B. manatorum using scanning electronic microscopy (SEM) for specimens in the collection from which B. umigamecolus was originally described. This material was collected from 1 loggerhead sea turtle, Caretta caretta, from Japan. The use of SEM allowed us …

MaleSpecies complexbiologyEcologyMediterranean RegionLepidochelys olivaceaEctoparasitic Infestationsbiology.organism_classificationLoggerhead sea turtleTurtlesCopepodaMediterranean seaTaxonJapanMultivariate AnalysisMicroscopy Electron ScanningAnimalsParasitologyFemaleCheloniidaeHarpacticoidaEcology Evolution Behavior and SystematicsMeristicsThe Journal of parasitology
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Notes on the Biology and Ecology of Opeatogenys gracilis (Canestrini 1864) (Pisces: Gobiesocidae) from Coastal Environments in Sicily (Mediterranean)

2001

A particularly large number of specimens of the Mediterranean coastal fish Opeatogenys gracilis (Canestrini 1864) (Pisces: Gobiesocidae) were collected from Posidonia oceanica mats of the “Stagnone di Marsala” sound (western Sicily) and in the Gulf of Carini (northern Sicily). A study was made of biometric and meristic characters and, for the first time for this species, diet composition. The biometric and meristic data did not distinguish between specimens from the two study sites. In accordance with its benthic habit, O. gracilis feeds on small phytal prey living on Posidonia oceanica leaves. The preferential food items throughout the year were Copepoda Harpacticoida.

Mediterranean climatebiologyBenthic zoneEcologyPosidonia oceanicaGobiesocidaeZoologyCoastal fishbiology.organism_classificationHarpacticoidaMeristicsPredation
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Stable carbon and nitrogen ratios in the sand smelt from a Mediterranean coastal area: Feeding habits and effect of season and size

2002

Enriched (δ13C values (annual average - 11·2%) suggest that in the study site (Stagnone di Marsala, Italy) the sand smelt Atherina boyeri exploited benthic prey throughout the year. In particular, Mysidacea and Isopoda seemed to dominate the diet. Stomach content data from the literature was in partial agreement with the present isotopic analysis suggesting that, while Mysidacea and Isopoda are exploited by A. boyeri, Copepoda Harpacticoida and Amphipoda are the dominant food items of the sand smelt diet. Several hypotheses are proposed to explain such partially different results from the two techniques. Both season and size influenced the δ13C and δ15N values of A. boyeri. Although through…

Settore BIO/07 - EcologiaAmphipodabiologyEcologyMysidaceaAtherina boyeriSand smeltMediterraneanAquatic Sciencebiology.organism_classificationStable isotopeAtherina boyeriBenthic zoneFood preferenceFeeding strategieHarpacticoidaEcology Evolution Behavior and SystematicsTrophic levelIsotope analysis
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Systematics and phylogeography of the genus Tigriopus (Copepoda, Harpacticoida, Harpacticidae) in the basin of the Mediterranean Sea

2020

[ES] El género de copépodos Tigriopus Norman, 1869 se distribuye en todo el mundo en piscinas costeras de rocas y actualmente se considera que incluye 15 especies válidas. Tigriopus fulvus (Fischer, 1860), con su subespecie Tigriopus fulvus adriaticus Van Douwe 1913 y Tigriopus fulvus algiricus Monard 1935, actualmente se informa que ocurren en el área mediterránea, pero actualmente se desconoce la diversidad real del género. Nuestro objetivo fue evaluar la identidad real de las poblaciones mediterráneas de Tigriopus y dilucidar su taxonomía y patrón de diversidad genética. Para alcanzar estos objetivos, utilizamos dos enfoques diferentes. El primero, basado en la morfología, donde las posi…

genetic structuring clockwork monopolization rocky shore communities cryptic species DNA taxonomy.SystematicsZOOLOGIATigriopusbiologyGenetic structuringSettore BIO/05 - Zoologiabiology.organism_classificationPhylogeographyDNA taxonomy.GenusRocky shore communitiesCryptic speciesClockwork monopolizationDna taxonomyHarpacticoidaHumanitiesTECNOLOGIA DEL MEDIO AMBIENTE
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