0000000000133320

AUTHOR

Daniel P. Benesh

0000-0002-4572-9546

showing 13 related works from this author

Proximate factors affecting the larval life history of Acanthocephalus lucii (Acanthocephala).

2007

The growth and eventual size of larval helminths in their intermediate hosts presumably has a variety of fitness consequences. Therefore, elucidating the proximate factors affecting parasite development within intermediate hosts should provide insight into the evolution of parasite life histories. An experimental infection that resulted in heavy intensities of an acanthocephalan (Acanthocephalus lucii) in its isopod intermediate host (Asellus aquaticus) permitted the examination of parasite developmental responses to variable levels of resource availability and intraspecific competition. Isopods were infected by exposure to egg-containing fish feces, and larval infrapopulations were monitor…

MaleMoltingIntraspecific competitionAcanthocephalaHost-Parasite InteractionsFecesFish DiseasesParasite hostingHelminthsAnimalsAsellus aquaticusSex RatioIntestinal Diseases ParasiticEcology Evolution Behavior and SystematicsLarvaLife Cycle StagesbiologyHost (biology)EcologyIntermediate hostbiology.organism_classificationPerchesLarvaMultivariate AnalysisParasitologyFemaleHelminthiasis AnimalAcanthocephalaIsopodaThe Journal of parasitology
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Acanthocephalan size and sex affect the modification of intermediate host colouration

2009

Parasitology, 136 (8)

Malehost phenotype manipulationFood ChainZoologyHost-Parasite InteractionsAcanthocephalaIsopodaSex FactorsParasite hostingAnimalsAsellus aquaticusLarvabiologyEcologyHost (biology)Pigmentationhost exploitationintermediate hostlarval life historyIntermediate hostAcanthocephala; Asellus aquaticus; cystacanth; host exploitation; host phenotype manipulation; intermediate host; larval life history; sexual dimorphism; trophic transmissiontrophic transmissionbiology.organism_classificationFecunditySexual dimorphismInfectious DiseasesPerchesLarvaPredatory Behaviorsexual dimorphismcystacanthAnimal Science and ZoologyParasitologyFemaleAcanthocephalaIsopoda
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Seasonal changes in host phenotype manipulation by an acanthocephalan: time to be transmitted?

2009

Parasitology, 136 (2)

Aginghost pigmentationLightZoologySkin PigmentationEnvironmenthost manipulationAcanthocephalaHost-Parasite InteractionsIsopodaAcanthocephala; Asellus aquaticus; host manipulation; host-parasite interaction; host pigmentation; intermediate host; plastic/flexible behaviour; seasonality; trophic transmissionParasite hostingAnimalsAsellus aquaticusAsellus aquaticusAnalysis of VariancebiologyBehavior AnimalseasonalityEcologyHost (biology)intermediate hostIntermediate hostTemperatureAquatic animaltrophic transmissionbiology.organism_classificationhost-parasite interactionCrustaceanSurvival RateInfectious DiseasesPhenotypeLinear ModelsAnimal Science and ZoologyParasitologySeasonsplastic/flexible behaviourAcanthocephalaIsopodaParasitology
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Differences in parasite susceptibility and costs of resistance between naturally exposed and unexposed host populations

2009

It is generally assumed that resistance to parasitism entails costs. Consequently, hosts evolving in the absence of parasites are predicted to invest less in costly resistance mechanisms than hosts consistently exposed to parasites. This prediction has, however, rarely been tested in natural populations. We studied the susceptibility of three naïve, three parasitized and one recently isolated Asellus aquaticus isopod populations to an acanthocephalan parasite. We found that parasitized populations, with the exception of the isopod population sympatric with the parasite strain used, were less susceptible to the parasite than the naïve populations. Exposed but uninfected (resistant) isopods f…

education.field_of_studybiologyHost (biology)PopulationDefence mechanismsParasitismZoologybiology.organism_classificationSurvival AnalysisAcanthocephalaHost-Parasite InteractionsSympatric speciationAnimalsRegression AnalysisParasite hostingAsellus aquaticuseducationEcology Evolution Behavior and SystematicsIsopodaLocal adaptationJournal of Evolutionary Biology
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The natural history of Echinorhynchus bothniensis Zdzitowiecki and Valtonen, 1987 (Acanthocephala) in a high Arctic lake.

2015

The acanthocephalan Echinorhynchus bothniensis Zdzitowiecki and Valtonen, 1987 differs from most other species in the genus Echinorhynchus Zoega in Muller, 1776 by infecting mysids (order Mysida) instead of amphipods (order Amphipoda) as intermediate hosts. Here we report on the occurrence of E. bothniensis in mysids (Mysis segerstralei Audzijonytė et Vainola) and in its fish definitive hosts in a high Arctic lake. Out of 15 907 sampled mysids, 4.8% were infected with a mean intensity of 1.05 worms (range 1-5), although there was notable variation between samples taken in different years and sites. Larger mysids appear more likely to be infected. Of five fish species sampled, charr,Salvelin…

education.field_of_studyAmphipodafood.dishbiologyEcologyintermediate hostPopulationIntermediate hostZoologyMysissex ratiobiology.organism_classificationthorny-headed wormsfoodMysidaCoregonus lavaretusMysisEchinorhynchidaeta1181Parasitologybody sizeAcanthocephalaeducationSalvelinusFolia parasitologica
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Reliability of mitochondrial DNA in an acanthocephalan: The problem of pseudogenes

2006

The utility of mitochondrial DNA as a molecular marker for evolutionary studies is well recognized. However, several problems can arise when using mitochondrial DNA, one of which is the presence of nuclear mitochondrial pseudogenes, or Numts. Pseudogenes of cytochrome oxidase I were preferentially amplified from Acanthocephalus lucii (Acanthocephala) using a universal PCR approach. To verify the presence and abundance of pseudogenes, length heterogeneity analysis of the PCR fragments was performed. PCR products obtained with universal primers often contained fragments of different sizes. Cloned sequences from universal PCR products nearly always contained sequence abnormalities such as inde…

Mitochondrial DNAGenotypePseudogeneMolecular Sequence DataBiologyDNA MitochondrialPolymerase Chain ReactionAcanthocephalaElectron Transport Complex IVchemistry.chemical_compoundMolecular markerAnimalsIndelPhylogenyDNA PrimersGeneticsBase SequencePhylogenetic treeBiological EvolutionStop codonInfectious DiseaseschemistryCodon usage biasParasitologyNumtPseudogenesInternational Journal for Parasitology
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THE BEHAVIORAL RESPONSE OF AMPHIPODS HARBORING CORYNOSOMA CONSTRICTUM (ACANTHOCEPHALA) TO VARIOUS COMPONENTS OF LIGHT

2006

Many studies have shown that photic behavior of amphipods is subject to parasitic manipulation. However, all these investigations have focused on but one property of light (i.e., intensity). This study investigated the possibility that variable wavelength sensitivity, as a potentially important component of amphipod ecology, is subject to parasitic manipulation. The photic behavior of freshwater amphipods Hyalella azteca, infected with the duck acanthocephalan Corynosoma constrictum, was tested. The phototactic responses of infected and uninfected amphipods to various wavelengths in the visible spectrum were compared, and to delineate the effects of intensity and wavelength on behavior, the…

AmphipodaBehavior AnimalLightgenetic structuresbiologyEcologyMovementHyalella aztecabiology.organism_classificationCrustaceanAcanthocephalaHost-Parasite InteractionsLight intensityDucksBehavioral responsePhototaxisAnimalsAmphipodaFemaleParasitologyPhotic zonesense organsAcanthocephalaEcology Evolution Behavior and SystematicsJournal of Parasitology
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Sexual segregation of Echinorhynchus borealis von Linstow, 1901 (Acanthocephala) in the gut of burbot (Lota lota Linnaeus)

2015

Helminths often occupy defined niches in the gut of their definitive hosts. In the dioecious acanthocephalans, adult males and females usually have similar gut distributions, but sexual site segregation has been reported in at least some species. We studied the intestinal distribution of the acanthocephalan Echinorhynchus borealis von Linstow, 1901 (syn. of E. cinctulus Porta, 1905) in its definitive host, burbot (Lota lota Linnaeus). Over 80% of female worms were found in the pyloric caeca, whereas the majority of males were in the anterior two-thirds of the intestine. This difference was relatively consistent between individual fish hosts. Worms from different parts of the gut did not dif…

Ecological nichebiologyspatial distributionEcologyNichemicrohabitatZoologyAquatic animalEchinorhynchus cinctulussex ratiobiology.organism_classificationthorny-headed wormsnicheEchinorhynchidaeParasite hostingHelminthsta1181ParasitologyMatingAcanthocephalabody sizeSex ratioFolia Parasitologica
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The Effect of Echinorhynchus borealis (Acanthocephala) Infection on the Anti-Predator Behavior of a Benthic Amphipod

2008

In benthic habitats, predators can generally not be detected visually, so olfaction may be particularly important for inducing anti-predation behaviors in prey organisms. Manipulative parasites infecting benthic hosts could suppress these responses so as to increase the probability of predation and thus trophic transmission. We studied how infection with the acanthocephalan Echinorhynchus borealis affects the response of the benthic amphipod Pallasea quadrispinosa to water conditioned by burbot (Lota lota), the parasite's definitive host. In normal lake water, refuge use by infected and uninfected amphipods was similar, but when exposed to burbot-conditioned water, uninfected amphipods spen…

0106 biological sciencesGeologic SedimentsAmphipodaFresh Water010603 evolutionary biology01 natural sciencesPheromonesAcanthocephalaPredation03 medical and health sciencesAnimalsAmphipodaPredatorFinlandEcology Evolution Behavior and Systematics030304 developmental biologyTrophic level0303 health sciencesBehavior AnimalbiologyHost (biology)Ecologybiology.organism_classificationAdaptation PhysiologicalCrustaceanSmellGadiformesBenthic zonePredatory BehaviorParasitologyAcanthocephalaJournal of Parasitology
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Multidimensionality and intra-individual variation in host manipulation by an acanthocephalan

2008

Parasitology, 135 (5)

altered host phenotype; plastic/flexible behaviour; repeatability; Asellus aquaticus; Acanthocephala; intermediate host; isopodZoologyColoraltered host phenotypeAcanthocephalaHost-Parasite InteractionsIsopodaAnimalsAsellus aquaticusrepeatabilitybiologyBehavior AnimalHost (biology)Acanthocephalus luciiEcologyisopodintermediate hostIntermediate hostbiology.organism_classificationIntra individualCrustaceanInfectious DiseasesPhenotypeAnimal Science and ZoologyParasitologyAcanthocephalaplastic/flexible behaviourIsopoda
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Sexual differences in larval life history traits of acanthocephalan cystacanths

2006

Sexual differences in life history traits, such as size dimorphism, presumably arise via sexual selection and are most readily observed in adults. For complex life-cycle parasites, however, sexual selection may also have consequences for larval traits, e.g., growth in intermediate hosts. Two acanthocephalan species (Acanthocephalus lucii and Echinorhynchus borealis) were studied to determine, whether larval life histories differ between males and females. The size of female A. lucii cystacanths had a much stronger relationship with intermediate host size than males, suggesting females invest more in growth and are consequently more limited by resources. No relationship between host size and…

Malemedia_common.quotation_subjectZoologyAcanthocephalaHost-Parasite InteractionsLife history theoryIsopodaAnimalsAmphipodamedia_commonLife Cycle StagesSex CharacteristicsLarvabiologyIntermediate hostLongevitybiology.organism_classificationSexual dimorphismInfectious DiseasesLarvaSexual selectionBody ConstitutionFemaleParasitologyHelminthiasis AnimalAcanthocephalaIsopodaInternational Journal for Parasitology
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EFFECTS OF ACANTHOCEPHALUS LUCII (ACANTHOCEPHALA) ON INTERMEDIATE HOST SURVIVAL AND GROWTH: IMPLICATIONS FOR EXPLOITATION STRATEGIES

2007

Intermediate host exploitation by parasites is presumably constrained by the need to maintain host viability until transmission occurs. The relationship between parasitism and host survival, though, likely varies as the energetic requirements of parasites change during ontogeny. An experimental infection of an acanthocephalan (Acanthocephalus lucii) in its isopod intermediate host (Asellus aquaticus) was conducted to investigate host survival and growth throughout the course of parasite development. Individual isopods were infected by exposure to fish feces containing parasite eggs. Isopods exposed to A. lucii had reduced survival, but only early in the infection. Mean infection intensity w…

MaleOntogenyZoologyParasitismFresh WaterMoltingAcanthocephalaHost-Parasite InteractionsFecesFish DiseasesAnimalsParasite hostingAsellus aquaticusIntestinal Diseases ParasiticEcology Evolution Behavior and SystematicsProportional Hazards ModelsLife Cycle StagesbiologyEcologyHost (biology)Intermediate hostbiology.organism_classificationPerchesFemaleParasitologyHelminthiasis AnimalAcanthocephalaMoultingIsopodaJournal of Parasitology
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The occurrence of Echinorhynchus salmonis Müller, 1784 in benthic amphipods in the Baltic Sea

2015

The acanthocephalan Echinorhynchus salmonis Muller, 1784 is a common parasite of salmonid fish, but it has rarely been reported from an intermediate host. Samples of benthic amphipods, Monoporeia affinis (Lindstrom), were taken from multiple, deep sites (usually below 70 m) in the Gulf of Bothnia over the course of more than a decade and examined for acanthocephalans. Overall, only 0.44% of 23 296 amphipods were infected, all with just a single worm. This prevalence is consistent with several previous reports of acanthocephalans in deep-water, benthic amphipods, but it appears low compared to that often reported for acanthocephalan species infecting littoral amphipods. Parasite occurrence d…

densityEchinorhynchus salmonisbiologyEcologyintermediate hostIntermediate hostaggregationZoologybiology.organism_classificationGulf of BothniaEchinorhynchus gadiAcanthocephalaBenthic zoneAbundance (ecology)EchinorhynchidaeLittoral zoneParasite hostingta1181cystacanthParasitologyMonoporeiarepeatabilityAcanthocephalaFolia Parasitologica
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