Search results for "CORYNOSOMA"

showing 10 items of 13 documents

Reproductive inequalities in the acanthocephalan Corynosoma cetaceum: looking beyond 'crowding' effects.

2018

Background: At present, much research effort has been devoted to investigate overall (average) responses of parasite populations to specific factors, e.g., density-dependence in fecundity or mortality. However, studies on parasite populations usually pay little attention to individual variation (inequality) in reproductive success. A previous study on the acanthocephalan Corynosoma cetaceum in franciscana dolphins, Pontoporia blainvillei, revealed no overall intensity-dependent, or microhabitat effects, on mass and fecundity of worms. In this study, we investigated whether the same factors could influence mass inequalities for this species of acanthocephalan.Methods: A total of 10,138 speci…

0106 biological sciences0301 basic medicineCompetitive Behaviormedia_common.quotation_subjectDolphinsPopulationHelminthiasisPopulation geneticsZoologyBiologyPolymorphidae010603 evolutionary biology01 natural sciencesCompetition (biology)lcsh:Infectious and parasitic diseasesAcanthocephalaCiencias Biológicas//purl.org/becyt/ford/1 [https]03 medical and health sciencesHelminthsAnimalslcsh:RC109-216Biomass//purl.org/becyt/ford/1.6 [https]media_commonBiomass (ecology)Reproductive successCompetitionReproductionResearchZoología Ornitología Entomología EtologíaBody size030108 mycology & parasitologyFecunditybiology.organism_classificationCrowdingInfectious DiseasesFertilityCorynosomaFecundityParasitologyFemaleInequalitiesAcanthocephalaCIENCIAS NATURALES Y EXACTASParasitesvectors
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Morphology, performance and attachment function in Corynosoma spp. (Acanthocephala)

2018

Background: Functional inference on the attachment of acanthocephalans has generally been drawn directly from morphology. However, performance of structures is often non-intuitive and context-dependent, thus performance analysis should be included whenever possible to improve functional interpretation. In acanthocephalans, performance analysis of attachment is available only for Acanthocephalus ranae, a species that solely relies on the proboscis to attach. Here we compare body morphology and muscle arrangement in 13 species of Corynosoma, which use their spiny body as a fundamental holdfast. A basic performance analysis using live cystacanths of two representative species is also provided.…

0301 basic medicineMaleEcomorphologyPerformanceEcomorphologyVideo RecordingAttachmentBiologyPolymorphidaeHost-Parasite InteractionsAcanthocephalalcsh:Infectious and parasitic diseasesPolymorphidaeCiencias Biológicas//purl.org/becyt/ford/1 [https]03 medical and health sciencesReceptacleAnimalsSeawaterlcsh:RC109-216//purl.org/becyt/ford/1.6 [https]HoldfastMammalsResearchMusclesProboscisECOMORPHOLOGYAnatomyZoología Ornitología Entomología Etología030108 mycology & parasitologyMUSCLEPERFORMANCEbiology.organism_classificationTrunkACANTHOCEPHALAPOLYMORPHIDAERetractorATTACHMENTInfectious DiseasesCorynosomaMicroscopy Electron ScanningMuscleParasitologyFemaleCORYNOSOMAHelminthiasis AnimalAcanthocephalaCIENCIAS NATURALES Y EXACTASParasites & Vectors
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Acanthocephalans from Marine Fishes from Patagonia, Argentina

2019

In this study, 542 individual fish from 20 species from the Patagonian continental shelf of Argentina were examined for acanthocephalans. A total of 1,547 acanthocephalans belonging to 5 species were collected from 18 species of fish. Adult forms were represented by 2 species: Aspersentis johni (Baylis, 1929) (Heteracanthocephalidae) from longtail southern cod, Patagonotothen ramsayi (Regan) (new host record), and Breizacanthus aznari Herna´ndez-Orts, Alama-Bermejo, Crespo, Garcı´a, Raga and Montero, 2012 (Arhythmacanthidae) from raneya, Raneya brasiliensis (Kaup). Immature worms of B. aznari were also collected from the intestine of pink cusk-eel, Genypterus blacodes (Forster) (new host re…

HeteracanthocephalidaebiologyParalichthysHost (biology)Otras Ciencias BiológicasZoologyGenypterus blacodesPolymorphidaebiology.organism_classificationACANTHOCEPHALACorynosoma bullosumCiencias BiológicasPolymorphidaePATAGONIAHeteracanthocephalidaeBreizacanthus aznariParasitologyCORYNOSOMAAcanthocephalaMesenteriesMARINE FISHESCIENCIAS NATURALES Y EXACTASEcology Evolution Behavior and SystematicsJournal of Parasitology
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Ovarian tissue in juvenile palaeacanthocephalans: Corynosoma semerme, C. strumosum and Echinorhynchus gadi

1986

SUMMARYThe structure of the ovarian tissue in juvenile Corynosoma semerme and C. strumosum from a fish paratenic host and in the cystacanth stage of Echinorhynchus gadi from an amphipod intermediate host was investigated by means of transmission electron microscopy. The species were obtained from hosts living in the Baltic Sea. The observations indicate that ovarian development was more advanced in cystacanths of E. gadi than in juveniles of C. semerme and C. strumosum. Free ovaries were present in E. gadi with an obvious supporting syncytium and surface microvilli. The biological significance of the different stages of ovarian development in these species is discussed briefly in relation t…

Infectious DiseasesbiologyBaltic seaOvarian tissueCorynosoma strumosumJuvenileEchinorhynchus gadiAnimal Science and ZoologyParasitologyAnatomyAcanthocephalabiology.organism_classificationCorynosoma semermeParasitology
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Presence of Genital Spines in a Male Corynosoma cetaceum Johnston and Best, 1942 (Acanthocephala)

2002

We collected 83 females and 80 males of Corynosoma cetaceum from 2 common dolphins, Delphinus delphis, collected in northern Patagonia (Argentina). Worms were most similar to specimens collected in other South American localities. However, 1 male had 2 spines adjacent to the genital pore and isolated from the rest of body spines. This finding confirms the recent reassignment of C. cetaceum to Corynosoma. Absence of genital spines is suggested to be avoided as the sole criterion to exclude specimens from Corynosoma or Andracantha. Aznar Avendaño, Francisco Javier, Francisco.Aznar@uv.es ; Raga Esteve, Juan Antonio, Toni.Raga@uv.es

Male CorynosomaGenital spines ; Male Corynosoma ; Acanthocephela:CIENCIAS DE LA VIDA::Biología animal (Zoología) [UNESCO]UNESCO::CIENCIAS DE LA VIDAAcanthocephelaUNESCO::CIENCIAS DE LA VIDA::Biología animal (Zoología)Genital spines:CIENCIAS DE LA VIDA [UNESCO]
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Assessing host-parasite specificity through coprological analysis: a case study with species of Corynosoma (Acanthocephala: Polymorphidae) from marin…

2011

In this paper we report an investigation of the utility of coprological analysis as an alternative technique to study parasite specificity whenever host sampling is problematic; acanthocephalans from marine mammals were used as a model. A total of 252 scats from the South American sea lion, Otaria flavescens, and rectal faeces from 43 franciscanas, Pontoporia blainvillei, from Buenos Aires Province, were examined for acanthocephalans. Specimens of two species, i.e. Corynosoma australe and C. cetaceum, were collected from both host species. In sea lions, 78 out of 145 (37.9%) females of C. australe were gravid and the sex ratio was strongly female-biased. However, none of the 168 females of …

MaleAquatic OrganismsOtras Ciencias BiológicasDolphinsCarnivoraZoologyHost SpecificityPredationAcanthocephalaPolymorphidaeCiencias BiológicasMARINE MAMMALSFecesParasite hostingAnimalsSex DistributionFecesbiologyHost (biology)EcologyGeneral MedicineOtaria flavescensbiology.organism_classificationACANTHOCEPHALAHOST-PARASITEAnimal Science and ZoologyParasitologyFemaleCORYNOSOMAAcanthocephalaSex ratioCIENCIAS NATURALES Y EXACTASJournal of helminthology
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Ovarian development of Corynosoma semerme (Acanthocephala) during experimental infections in rats.

1987

SUMMARYThe general structure and aspects of the development of the ovaries of the palaeacanthocephalan Corynosoma semerme were studied by transmission electron microscopy using worms varying in age from 18 to 90 h obtained from experimental primary infections in hydrocortisone-treated rats instead of seals, which serve as the natural definitive hosts. The observations can be interpreted to show that the immature ovaries become transformed relatively rapidly from cellular spheres to the more complex mature ovaries consisting of the supporting and oogonial syncytia and the germ-line cells. The supporting syncytium developed before the oogonial syncytium. The cytological appearance of ovaries …

MaleSyncytiumbiologyOvaryHelminthiasisZoologyOvarybiology.organism_classificationCorynosoma semermeUnknown ageAcanthocephalaRatsMicroscopy ElectronInfectious Diseasesmedicine.anatomical_structuremedicineUltrastructureParasite hostingAnimalsAnimal Science and ZoologyParasitologyFemaleAcanthocephalaParasitology
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Status of Corynosoma (Acanthocephala: Polymorphidae) based on anatomical, ecological, and phylogenetic evidence, with the erection of Pseudocorynosom…

2006

The possession of genital spines has been considered as a key taxonomic trait to differentiate Corynosoma from other genera of the Polymorphidae. However, Corynosoma currently consists of 2 groups of species with clear ecological and morphological divergences: the "marine" group (with ca. 30 species) infects mammals and piscivorous birds in the marine realm, whereas the "freshwater" group (with ca. 7 species) infects waterfowl in continental waters. Species from these groups differ in shape of body and neck, trunk spination, lemnisci length and shape, testes arrangement, and number and shape of cement glands. We tested whether species from these 2 groups formed a monophyletic assemblage bas…

MaleZoologyFresh WaterAcanthocephalaHost-Parasite InteractionsPolymorphidaeBirdsMonophylyWaterfowlAnimalsAmphipodaSeawaterPseudocorynosomaEcology Evolution Behavior and SystematicsPhylogenyPhylogenetic treebiologyEcologyBird Diseasesbiology.organism_classificationPolymorphusCaniformiaDucksMinkKey (lock)ParasitologyFemaleCetaceaHelminthiasis AnimalAcanthocephalaOttersThe Journal of parasitology
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Presence of genital spines in a male Corynosoma cetaceum Johnston and Best, 1942 (Acanthocephala).

2002

We collected 83 females and 80 males of Corynosoma cetaceum from 2 common dolphins, Delphinus delphis, collected in northern Patagonia (Argentina). Worms were most similar to specimens collected in other South American localities. However, 1 male had 2 spines adjacent to the genital pore and isolated from the rest of body spines. This finding confirms the recent reassignment of C. cetaceum to Corynosoma. Absence of genital spines is suggested to be avoided as the sole criterion to exclude specimens from Corynosoma or Andracantha.

MalebiologyDolphinsAndracanthaArgentinaCetaceaDelphinus delphisAnatomyCorynosoma cetaceumbiology.organism_classificationAcanthocephalaSouth americanbiology.animalAnimalsSex organParasitologyFemaleAcanthocephalaEcology Evolution Behavior and SystematicsThe Journal of parasitology
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Constructional morphology and mode of attachment of the trunk ofCorynosoma cetaceum (Acanthocephala: Polymorphidae)

1999

Dead specimens of Corynosoma cetaceum were used to describe the trunk musculature of this species and to infer the use of the trunk as a secondary holdfast. Inferences were based on trunk muscle arrangement, changes in trunk shape, size and distribution of spines, and geometry of tegument thickness. The foretrunk of C. cetaceum is swollen and forms a spiny disk that is bent ventrally. The disk is flattened by several groups of muscles not described previously, which seem able to finely adjust the disk surface over the substratum. Disk attachment appears to be accomplished by two dorsal neck retractor muscles specialized in pulling the anchored proboscis into the foretrunk. This mechanism ha…

RetractorPolymorphidaeMorphology (linguistics)biologyProboscisAnimal Science and ZoologyViral tegumentAnatomyCorynosoma cetaceumAcanthocephalabiology.organism_classificationTrunkDevelopmental BiologyJournal of Morphology
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