Search results for "sympatric speciation"

showing 10 items of 101 documents

Stable coexistence of genetically divergent Atlantic cod ecotypes at multiple spatial scales

2018

Abstract Coexistence in the same habitat of closely related yet genetically different populations is a phenomenon that challenges our understanding of local population structure and adaptation. Identifying the underlying mechanisms for such coexistence can yield new insight into adaptive evolution, diversification and the potential for organisms to adapt and persist in response to a changing environment. Recent studies have documented cryptic, sympatric populations of Atlantic cod (Gadus morhua) in coastal areas. We analysed genetic origin of 6,483 individual cod sampled annually over 14 years from 125 locations along the Norwegian Skagerrak coast and document stable coexistence of two gene…

0106 biological sciencesSympatryGENOMIC DIVERGENCECHROMOSOMAL REARRANGEMENTSBiodiversityecotypes010603 evolutionary biology01 natural sciencessympatry/dk/atira/pure/sustainabledevelopmentgoals/life_below_waterLOCAL ADAPTATIONGeneticsGadusPOPULATION-STRUCTURESDG 14 - Life Below Waterdispersaltemporal genetic stabilityGADUS-MORHUA L.MARINE FISHESEcology Evolution Behavior and SystematicsEcotypebiologyEcology010604 marine biology & hydrobiologynatural selectionGROWTH-RATEOriginal Articlesbiology.organism_classificationSTATIONARY ECOTYPESNATURAL-SELECTIONNORTH-SEAHabitatSympatric speciationAtlantic codconnectivityBiological dispersalOriginal ArticleGeneral Agricultural and Biological SciencesAtlantic cod
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Differences in time and space use between two sympatric Acrocephalus warblers with similar diets

2016

Capsule: We found high diet overlap and different uses of space and time between Moustached Warblers Acrocephalus melanopogon and Reed Warblers Acrocephalus scirpaceus breeding in sympatry at a marshland in Spain. Aims: To study the degree of diet overlap between both species, their space use on a local scale and their breeding phenologies. Methods: We studied the breeding phenologies of the two species by standardized ringing activity. Spatial distribution was investigated by point counts. We determined diet composition from emetic samples and we collected invertebrates by standardized sweep-netting to estimate food availability. Results: Diet and prey selection were similar among species.…

0106 biological sciencesSympatryZOOLOGIAFood availabilityPrey selectionBOTANICAReproductive behaviorBreeding season010603 evolutionary biology01 natural sciencesIntraspecific competition010605 ornithologyPredationPasserineAbundanceAbundance (ecology)biology.animalSpace useSeasonal breederAcrocephalusSpatial distributionInvertebrateIntraspecific competitionEcology Evolution Behavior and SystematicsNature and Landscape ConservationbiologyEcologybiology.organism_classificationPasserineSympatryMarshPhenologySympatric speciationBreeding populationDietary overlap
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Molecular systematics in the acanthocephalan genus Echinorhynchus (sensu lato) in northern Europe

1994

SUMMARYNew biological species and high levels of inter- and intraspecific genetic divergence were discovered in an allozyme study of some North European members of the acanthocephalan genus Echinorhynchus (sensu lato), parasites of fish and malacostracan crustaceans. (i) A strong differentiation between the marine E. gadi and the fresh- and brackish-water E. salmonis (genetic identity I ≃ 0) supports a generic distinction between these taxa; however, the subdivision would not entirely concur with the concepts of Echinorhynchus (sensu stricto) and Metechinorhynchus suggested earlier. (ii) Samples of E. gadi from the Baltic, Norwegian and North Seas included three distinct, partially sympatri…

0106 biological sciencesSystematicsGenotypePopulationHelminthiasisZoologyFresh WaterBiology010603 evolutionary biology01 natural sciencesAcanthocephala030308 mycology & parasitologyFish Diseases03 medical and health sciencesGene FrequencySensuCrustaceaAnimalsSeawater14. Life underwatereducationAlleles0303 health scienceseducation.field_of_studyPolymorphism GeneticEcologyFishesGenetic Variationbiology.organism_classificationEuropeIsoenzymesGenetic divergencePhenotypeInfectious DiseasesMysisZoogeographySympatric speciationAnimal Science and ZoologyParasitologyTaxonomy (biology)Helminthiasis AnimalParasitology
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Defense strategies used by two sympatric vineyard moth pests.

2014

8 pages; International audience; Natural enemies including parasitoids are the major biological cause of mortality among phytophagous insects. In response to parasitism, these insects have evolved a set of defenses to protect themselves, including behavioral, morphological, physiological and immunological barriers. According to life history theory, resources are partitioned to various functions including defense, implying trade-offs among defense mechanisms. In this study we characterized the relative investment in behavioral, physical and immunological defense systems in two sympatric species of Tortricidae (Eupoecilia ambiguella, Lobesia botrana) which are important grapevine moth pests. …

0106 biological sciencesTortricidae[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyHemocytesBehavioral defensePhysiologyBiological pest controlParasitismMothsLobesia botrana010603 evolutionary biology01 natural sciencesParasitoidHost-Parasite InteractionsHemolymphLobesia botrana[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsVitis[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyPhysical defenseEnzyme Precursors[ SDE.BE ] Environmental Sciences/Biodiversity and EcologyEupoecilia ambiguellabiologyBehavior AnimalEcologyfungibiology.organism_classification010602 entomologyNatural population growthEupoecilia ambiguellaSympatric speciationParasitismInsect ScienceLarvaFrance[SDE.BE]Environmental Sciences/Biodiversity and EcologyImmunological defenseCatechol Oxidase[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/Symbiosis
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Factors influencing infection patterns of trophically transmitted parasites among a fish community: host diet, host-parasite compatibility or both?

2011

20 pages; International audience; Parasite infection patterns were compared with the occurrence of their intermediate hosts in the diet of nine sympatric fish species in a New Zealand lake. Stomach contents and infection levels of three gastrointestinal helminth species were examined from the entire fish community. The results highlighted some links between fish host diet and the flow of trophically transmitted helminths. Stomach contents indicated that all but one fish species were exposed to these helminths through their diet. Host feeding behaviour best explained infection patterns of the trematode Coitocaecum parvum among the fish community. Infection levels of the nematode Hedruris spi…

0106 biological sciences[ SDV.MP.PAR ] Life Sciences [q-bio]/Microbiology and Parasitology/ParasitologyAquatic Science010603 evolutionary biology01 natural sciences030308 mycology & parasitologyPredation03 medical and health sciencesgastrointestinal helminths[ SDV.EE.IEO ] Life Sciences [q-bio]/Ecology environment/SymbiosisAnimalsBody Sizehost specificityParasite hostingHelminths[SDV.MP.PAR]Life Sciences [q-bio]/Microbiology and Parasitology/Parasitology14. Life underwaterPredatorEcology Evolution Behavior and SystematicsTrophic level[ SDE.BE ] Environmental Sciences/Biodiversity and Ecology0303 health sciencesbiologyCoitocaecum parvumEcologyFishestrophically transmitted parasitesbiology.organism_classificationDietFertilityNematodeOviparitySympatric speciationFemaleTrematodafish diet[SDE.BE]Environmental Sciences/Biodiversity and EcologyIntroduced SpeciesNew Zealand[SDV.EE.IEO]Life Sciences [q-bio]/Ecology environment/SymbiosisJournal of Fish Biology
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Variation in parasite resistance of Arctic charr, Salvelinus alpinus, between and within sympatric morphs

2021

Abstract Genetic variation in resistance against parasite infections is a predominant feature in host–parasite systems. However, mechanisms maintaining genetic polymorphism in resistance in natural host populations are generally poorly known. We explored whether differences in natural infection pressure between resource‐based morphs of Arctic charr (Salvelinus alpinus) have resulted in differentiation in resistance profiles. We experimentally exposed offspring of two morphs from Lake Þingvallavatn (Iceland), the pelagic planktivorous charr (“murta”) and the large benthivorous charr (“kuðungableikja”), to their common parasite, eye fluke Diplostomum baeri, infecting the eye humor. We found t…

0106 biological sciencesgenetic structuresZoologyparasitismiBiology010603 evolutionary biology01 natural sciencesParasite loadnieriätrematode03 medical and health sciencesloisetAdaptive radiationGenetic variationParasite hostingmuuntelu (biologia)breeding colorationEcology Evolution Behavior and SystematicsResearch ArticlesQH540-549.5030304 developmental biologyNature and Landscape ConservationSalvelinusOriginal Research0303 health sciencesResistance (ecology)freshwater fish ecotypeEcologyhost–parasite interactionimumadothost– parasite interactionbiology.organism_classificationgeneettinen muunteluresistenssiimmunogenesspeciationSympatric speciationSexual selectionadaptive radiationEcology and Evolution
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“A cleaner break”: Genetic divergence between geographic groups and sympatric phenotypes revealed in ballan wrasse (Labrus bergylta)

2020

Abstract Capture and long‐distance translocation of cleaner fish to control lice infestations on marine salmonid farms has the potential to influence wild populations via overexploitation in source regions, and introgression in recipient regions. Knowledge of population genetic structure is therefore required. We studied the genetic structure of ballan wrasse, a phenotypically diverse and extensively used cleaner fish, from 18 locations in Norway and Sweden, and from Galicia, Spain, using 82 SNP markers. We detected two very distinct genetic groups in Scandinavia, northwestern and southeastern. These groups were split by a stretch of sandy beaches in southwest Norway, representing a habitat…

0106 biological sciencesmicrosatellitePopulationSNPtranslocationZoologyLabrus bergyltaCleaner fish010603 evolutionary biology01 natural sciences03 medical and health sciencesVDP::Genetikk og genomikk: 474Aquaculturelcsh:QH540-549.5VDP::Genetics and genomics: 474education:Genetikk og genomikk: 474 [VDP]Ecology Evolution Behavior and SystematicsOriginal Research030304 developmental biologyNature and Landscape Conservation0303 health scienceseducation.field_of_studyEcologybiologybusiness.industrybiology.organism_classificationGenetic divergencecleaner fishaquaculturefisheries managementSympatric speciationWrasseGenetic structurelcsh:Ecology:Genetics and genomics: 474 [VDP]businessEcology and Evolution
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Water temperature, not fish morph, determines parasite infections of sympatric Icelandic threespine sticklebacks (Gasterosteus aculeatus)

2013

Parasite communities of fishes are known to respond directly to the abiotic environment of the host, for example, to water quality and water temperature. Biotic factors are also important as they affect the exposure profile through heterogeneities in parasite distribution in the environment. Parasites in a particular environment may pose a strong selection on fish. For example, ecological differences in selection by parasites have been hypothesized to facilitate evolutionary differentiation of freshwater fish morphs specializing on different food types. However, as parasites may also respond directly to abiotic environment the parasite risk does not depend only on biotic features of the hos…

0106 biological sciencesstickleback morphotypeseducationZoologyhabitat specializationGasterosteus010603 evolutionary biology01 natural sciencesADAPTIVE RADIATIONSCENTRAL FINLANDEcological speciation03 medical and health sciencesCATARACT FORMATIONecological speciation14. Life underwaterPERCH PERCA-FLUVIATILISSPATIAL VARIATION3-SPINED STICKLEBACKSEcology Evolution Behavior and SystematicsOriginal Research030304 developmental biologyNature and Landscape ConservationTREMATODE PARASITESAbiotic componentAdaptive radiationHELMINTH COMMUNITIES0303 health sciencesARCTIC CHARRBiotic componentEcologybiologyEcologyCOMPONENT COMMUNITYSticklebackbiology.organism_classification6. Clean waterDiplostomumhost-parasite interactionsHabitatSympatric speciation1181 Ecology evolutionary biologyFreshwater fishta1181lajiutuminenAdaptive radiation; Diplostomum; Ecological speciation; Habitat specialization; Stickleback morphotypes; Host-parasite interactionsEcology and Evolution
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2017

The consequences of emerging marine diseases on the evolutionary trajectories of affected host populations in the marine realm are largely unexplored. Evolution in response to natural selection depends on the genetic variation of the traits under selection and the interaction of these traits with the environment (GxE). However, in the case of diseases, genotypes of pathogens add another dimension to this interaction. Therefore, the study of disease resistance needs to be extended to the interaction of host genotype, pathogen genotype and environment (GxGxE). In the present study we used a full-sib breeding design crossing two genetically differentiated populations of the Pacific oyster Cras…

0301 basic medicineBacterial diseaseNatural selectionbiologyEcologyfungiZoologyPlant disease resistancePacific oysterbiology.organism_classification03 medical and health sciences030104 developmental biologySympatric speciationGenetic variationGenotypeGeneticsGene–environment interactionGeneral Agricultural and Biological SciencesEcology Evolution Behavior and SystematicsEvolutionary Applications
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The protective value of a defensive display varies with the experience of wild predators

2019

AbstractPredation has driven the evolution of diverse adaptations for defence among prey, and one striking example is the deimatic display. While such displays can resemble, or indeed co-occur with, aposematic ‘warning’ signals, theory suggests deimatic displays may function independently of predator learning. The survival value of deimatic displays against wild predators has not been tested before. Here we used the mountain katydid Acripeza reticulata to test the efficacy of a putative deimatic display in the wild. Mountain katydids have a complex defence strategy; they are camouflaged at rest, but reveal a striking red-, blue-, and black-banded abdomen when attacked. We presented live kat…

0301 basic medicineValue (ethics)Allopatric speciationZoologylcsh:MedicineAposematismeläinten käyttäytyminenArticlePredationGryllidae03 medical and health sciences0302 clinical medicineAnimalspuolustusmekanismit (biologia)Australian magpielcsh:SciencePredatorMultidisciplinaryBehavior Animaldefensive displaybiologylcsh:RAustraliabehavioural ecologyhepokatitbiology.organism_classificationkatydids030104 developmental biologySympatric speciationPredatory BehaviorPredator attacklcsh:Q030217 neurology & neurosurgeryScientific Reports
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