Search results for "MELITAEA-CINXIA"

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Effects of environment and genotype on dispersal differ across departure, transfer and settlement in a butterfly metapopulation

2022

Active dispersal is driven by extrinsic and intrinsic factors at the three stages of departure, transfer and settlement. Most empirical studies capture only one stage of this complex process, and knowledge of how much can be generalized from one stage to another remains unknown. Here we use genetic assignment tests to reconstruct dispersal across 5 years and 232 habitat patches of a Glanville fritillary butterfly ( Melitaea cinxia ) metapopulation. We link individual dispersal events to weather, landscape structure, size and quality of habitat patches, and individual genotype to identify the factors that influence the three stages of dispersal and post-settlement survival. We found that ne…

DYNAMICSGenotypePopulation DynamicsperhosetEMIGRATIONgenotyyppiGeneral Biochemistry Genetics and Molecular Biologypatch qualitybutterflyAnimalsdispersaltäpläverkkoperhonenWeathergenotype-by-environment interactionsEcosystemGeneral Environmental ScienceEkologiPERSONALITYCONSEQUENCESgenetic assignment testsEcologyGeneral Immunology and MicrobiologyMELITAEA-CINXIAlevinneisyysGeneral MedicineGENEpopulaatioekologiafitnessASSIGNMENT TESTSHABITAT FRAGMENTATIONMETABOLIC-RATE1181 Ecology evolutionary biologypatchqualityGeneral Agricultural and Biological SciencesButterfliesleviäminenFRITILLARYProceedings of the Royal Society B: Biological Sciences
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Complex plant quality—microbiota–population interactions modulate the response of a specialist herbivore to the defence of its host plant

2022

Many specialist herbivores have evolved strategies to cope with plant defences, with gut microbiota potentially participating to such adaptations. In this study, we assessed whether the history of plant use (population origin) and microbiota may interact with plant defence adaptation. We tested whether microbiota enhance the performance of Melitaea cinxia larvae on their host plant, Plantago lanceolata and increase their ability to cope the defensive compounds, iridoid glycosides (IGs). The gut microbiota were significantly affected by both larval population origin and host plant IG level. Contrary to our prediction, impoverishing the microbiota with antibiotic treatment did not reduce larv…

vuorovaikutusplant defencesuolistomikrobistoDIET QUALITYperhosetherbivoretoukatplant defenseglykosiditkasvitmicrobiotapuolustusmekanismit (biologia)ravintoketjutEcology Evolution Behavior and Systematicstrophic interactionsisäntäkasvitGUT MICROBIOTAMIDGUTIRIDOID GLYCOSIDE SEQUESTRATIONMELITAEA-CINXIApopulaatioekologiaLepidopteraGENERALISTCHEMICAL DEFENSEkasvinsyöjätBACTERIA1181 Ecology evolutionary biologySURVIVALmikro-organismitLANCEOLATA
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