Search results for "SEMAT"

showing 10 items of 173 documents

Variation in male fertility in a polymorphic moth, Parasemia plantaginis

2016

The maintenance of multiple morphs in warning signals is enigmatic because directional selection through predator avoidance should lead to the rapid loss of such variation. Opposing natural and sexual selection is a good candidate driving the maintenance of multiple male morphs but it also includes another enigma: when warning signal efficiency differs between male morphs, why would females choose a phenotype with lower survival? We tested the hypothesis that indirect responses to selection on correlated characters through sexual selection may substantially shape the evolution of male coloration. If male phenotypes differ in their fertilization ability, female choice against the best surviv…

0106 biological sciences0301 basic medicinemedia_common.quotation_subjectspermatophoreZoologyFertilitymating success010603 evolutionary biology01 natural sciencespolymorphism03 medical and health sciencesParasemia plantaginisaposematismMatingreproductive and urinary physiologyEcology Evolution Behavior and Systematicsmedia_commonfertilitybiologyReproductive successDirectional selectionEcologybiology.organism_classificationerebid moths030104 developmental biologyMate choiceSexual selectionSpermatophoreta1181Animal Science and ZoologyAnimal Behaviour
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Can multiple-model mimicry explain warning signal polymorphism in the wood tiger moth, Arctia plantaginis (Lepidoptera: Erebidae)?

2018

0106 biological sciences0301 basic medicinevaroitusvärisiilikkäätZoologyBiology010603 evolutionary biology01 natural sciencesErebidaetäpläsiilikäsLepidoptera genitalia03 medical and health sciencesArctia plantaginisimperfect mimicryaposematismEcology Evolution Behavior and SystematicsTigermimikrypredator–prey interactionsbiology.organism_classificationsignal-detection theorymuuntelu030104 developmental biologypalatabilityGeometridaeMimicryta1181Biological Journal of the Linnean Society
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Corrigendum: Predator-Induced Plasticity on Warning Signal and Larval Life-History Traits of the Aposematic Wood Tiger Moth, Arctia plantaginis

2021

In the published article, there was an error regarding the affiliation for Diana Abondano Almeida. As well as having affiliation 2, they should also have Department of Wildlife-/Zoo-Animal-Biology and Systematics, Faculty of Biological Sciences, Goethe Universität, Frankfurt, Germany. The authors apologize for this error and state that this does not change the scientific conclusions of the article in any way. The original article has been updated.

0106 biological sciences0303 health sciencesEcologyEvolution010603 evolutionary biology01 natural sciencesantipredator03 medical and health sciencesddc:590Plastic responseAposematismLarvaQH359-425Life-historypredationQH540-549.5Ecology Evolution Behavior and Systematics030304 developmental biologyFrontiers in Ecology and Evolution
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Parental care shapes evolution of aposematism and provides lifelong protection against predators

2019

ABSTRACTSocial interactions within species can modulate the response to selection and determine the extent of evolutionary change. Yet relatively little work has determined whether the social environment can influence the evolution of traits that are selected by interactions with other species - a major source of natural selection. Here we show that the amount of parental care received as an offspring can influence the expression, and potential evolution, of warning displays deployed against predators in adulthood. In theory, warning displays by prey are selected by predators for uniformity and to reliably advertise the extent to which individuals are chemically defended. However, the corre…

0106 biological sciences0303 health sciencesNatural selectionbiologyOffspringZoologyAposematismNicrophorus vespilloidesbiology.organism_classification010603 evolutionary biology01 natural sciencesPredationEvolvability03 medical and health sciencesChemical defensePaternal care030304 developmental biology
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Transparency reduces predator detection in chemically protected clearwing butterflies

2018

Abstract1. Predation is an important selective pressure and some prey have evolved warning colour signals advertising unpalatability (i.e. aposematism) as an antipredator strategy. Unexpectedly, some butterfly species from the unpalatable tribe Ithomiini possess transparent wings, an adaptation rare on land but common in water where it helps avoiding predator detection.2. We tested if transparency of butterfly wings was associated with decreased detectability by predators, by comparing four butterfly species exhibiting different degrees of transparency, ranging from fully opaque to largely transparent. We tested our prediction using using both wild birds and humans in behavioural experiment…

0106 biological sciences0303 health sciencesbiologyTransparency (market)ZoologyAposematismbiology.organism_classification010603 evolutionary biology01 natural sciencesIthomiiniPredation03 medical and health sciencesButterflyCrypsisAdaptationPredator030304 developmental biology
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2019

Aposematic organisms couple conspicuous warning signals with a secondary defense to deter predators from attacking. Novel signals of aposematic prey are expected to be selected against due to positive frequency-dependent selection. How, then, can novel phenotypes persist after they arise, and why do so many aposematic species exhibit intrapopulation signal variability? Using a polytypic poison frog ( Dendrobates tinctorius ), we explored the forces of selection on variable aposematic signals using 2 phenotypically distinct (white, yellow) populations. Contrary to expectations, local phenotype was not always better protected compared to novel phenotypes in either population; in the white po…

0106 biological sciences0303 health scienceseducation.field_of_studyMultidisciplinaryDendrobatesFrequency-dependent selectionPopulationZoologyAposematismBiologybiology.organism_classification010603 evolutionary biology01 natural sciencesPredationGene flowWhite (mutation)03 medical and health sciencesSignal variabilityeducation030304 developmental biologyProceedings of the National Academy of Sciences
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2018

Aposematic theory has historically predicted that predators should select for warning signals to converge on a single form, as a result of frequency-dependent learning. However, widespread variation in warning signals is observed across closely related species, populations and, most problematically for evolutionary biologists, among individuals in the same population. Recent research has yielded an increased awareness of this diversity, challenging the paradigm of signal monomorphy in aposematic animals. Here we provide a comprehensive synthesis of these disparate lines of investigation, identifying within them three broad classes of explanation for variation in aposematic warning signals: …

0106 biological sciences0303 health scienceseducation.field_of_studybiologyPopulationFrequency-dependent selectionAposematismbiology.organism_classification010603 evolutionary biology01 natural sciencesGeneral Biochemistry Genetics and Molecular BiologyMüllerian mimicryGenetic architecture03 medical and health sciencesEvolutionary biologySexual selectionHeliconiusGeneral Agricultural and Biological ScienceseducationSelection (genetic algorithm)030304 developmental biologyBiological Reviews
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2020

Abstract To understand how variation in warning displays evolves and is maintained, we need to understand not only how perceivers of these traits select color and toxicity but also the sources of the genetic and phenotypic variation exposed to selection by them. We studied these aspects in the wood tiger moth Arctia plantaginis, which has two locally co-occurring male color morphs in Europe: yellow and white. When threatened, both morphs produce defensive secretions from their abdomen and from thoracic glands. Abdominal fluid has shown to be more important against invertebrate predators than avian predators, and the defensive secretion of the yellow morph is more effective against ants. Her…

0106 biological sciences0303 health sciencesfungiZoologyAposematismHeritabilityBiology010603 evolutionary biology01 natural sciencesPredationWhite (mutation)03 medical and health sciencesThreatened speciesGenetic variationAnimal Science and ZoologyChemical defenseMatingEcology Evolution Behavior and Systematics030304 developmental biologyBehavioral Ecology
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Fight or flight trade-offs and the defensive behaviour of the mountain katydid, Acripeza reticulata

2020

The defensive repertoires of prey are shaped by diverse ecological and evolutionary demands. This can generate trade-offs between the components of defences, as in the classic ‘fight or flight’ dichotomy, or dedicated investment in a singular end, allowing individuals in better condition to mount a more effective defence all round. Further, sexual dimorphism may drive sex differences in such responses, although our understanding of the interaction between sexual selection and defensive behaviour is in its infancy. Deimatic, or ‘startle’, defences typically combine multiple protective strategies, such as camouflage and aposematism, with a rapid transition between them, and thus offer unique …

0106 biological sciences05 social sciencesTrade offsZoologyEscape responseAposematismBiology010603 evolutionary biology01 natural sciencesPredationSexual dimorphismFight-or-flight responseCamouflageSexual selection0501 psychology and cognitive sciencesAnimal Science and Zoology050102 behavioral science & comparative psychologyEcology Evolution Behavior and SystematicsAnimal Behaviour
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Warning coloration can be disruptive: aposematic marginal wing patterning in the wood tiger moth

2015

Warning (aposematic) and cryptic colorations appear to be mutually incompatible because the primary function of the former is to increase detectability, whereas the function of the latter is to decrease it. Disruptive coloration is a type of crypsis in which the color pattern breaks up the outline of the prey, thus hindering its detection. This delusion can work even when the prey’s pattern elements are highly contrasting; thus, it is possible for an animal’s coloration to combine both warning and disruptive functions. The coloration of the wood tiger moth (Parasemia plantaginis) is such that the moth is conspicuous when it rests on vegetation, but when it feigns death and drops to the gras…

0106 biological sciencesAposematismdisruptive coloration010603 evolutionary biology01 natural sciencesPredation03 medical and health sciencesDisruptive colorationParasemia plantaginiscamouflageaposematismEcology Evolution Behavior and SystematicsOriginal Research030304 developmental biologyNature and Landscape ConservationParusdistruptive coloration0303 health sciencesWingEcologybiologyEcologybiology.organism_classificationsaalistuscrypsisdefenseCamouflageCrypsista1181predationEcology and Evolution
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