Search results for "signal evolution"

showing 4 items of 4 documents

Evolutionary importance of intraspecific variation in sex pheromones

2021

Sex pheromones in many insect species are important species-recognition signals that attract conspecifics and inhibit attraction between heterospecifics; therefore, sex pheromones have predominantly been considered to evolve due to interactions between species. Recent research, however, is uncovering roles for these signals in mate choice, and that variation within and between populations can be drivers of species evolution. Variation in pheromone communication channels arises from a combination of context-dependent, condition-dependent, or genetic mechanisms in both signalers and receivers. Variation can affect mate choice and thus gene flow between individuals and populations, affecting s…

0106 biological sciences0301 basic medicineInsectaEvolution of sexual reproductionmedia_common.quotation_subjectevoluutioInsectBiology010603 evolutionary biology01 natural sciencesPheromonesintraspecific communicationIntraspecific competition03 medical and health sciencestrait variationAnimalsHumansSex Attractantsmuuntelu (biologia)Ecology Evolution Behavior and Systematicsmedia_commonsexual communicationferomonitspecies interactionssignal evolutionluonnonvalintaInterspecific competitionAttraction030104 developmental biologyVariation (linguistics)Mate choicesukupuolivalintaEvolutionary biologySex pheromonePheromonelajiutuminenEvolutionary ecologyTrends in Ecology & Evolution
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Appearance before performance? Nutritional constraints on life-history traits, but not warning signal expression in aposematic moths.

2019

Abstract Trade‐offs have been shown to play an important role in the divergence of mating strategies and sexual ornamentation, but their importance in explaining warning signal diversity has received less attention. In aposematic organisms, allocation costs of producing the conspicuous warning signal pigmentation under nutritional stress could potentially trade‐off with life‐history traits and maintain variation in warning coloration.We studied this with an aposematic herbivore Arctia plantaginis (Arctiidae), whose larvae and adults show extensive variation in aposematic coloration. In larvae, less melanic coloration (i.e. larger orange patterns) produces a more efficient warning signal aga…

Malegenotype‐by‐environment interactionsignal evolutionPigmentationMothsphenotypic plasticitymelaninEvolutionary EcologyLarvaAnimalsFemaleHerbivorydietLife History TraitsResearch ArticleThe Journal of animal ecology
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Evolution of signal diversity: predator-prey interactions and the maintenance of warning colour polymorphism in the wood tiger moth Arctia plantaginis

2017

Aposematic organisms avoid predation by advertising defences with warning signals. The theory of aposematism predicts warning signal uniformity, yet variation in warning coloration is widespread. The chemically defended wood tiger moth Arctia plantaginis shows both geographic variation and local polymorphism in warning coloration. In this thesis, I studied whether predation by local avian predators is driving the evolution of wood tiger moth warning colours. The close relatives of the wood tiger moth designated here to genus Arctia do not show similar colour polymorphism. The wood tiger moth is thus apparently under evolutionary radiation and provides a natural laboratory for observing curr…

varoitusvärimuuntelusiilikkäätpredator-prey interactionsmimikryevoluutioaposematismwarning signal evolutiongeneralizationmimicrysaalistustäpläsiilikäspolymorphism
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Appearance before performance? : Nutritional constraints on life‐history traits, but not warning signal expression in aposematic moths

2020

1.Trade‐offs have been shown to play an important role in the divergence of mating strategies and sexual ornamentation, but their importance in explaining warning signal diversity has received less attention. In aposematic organisms, allocation costs of producing the conspicuous warning signal pigmentation under nutritional stress could potentially trade‐off with life‐history traits and maintain variation in warning colouration. 2. We studied this with an aposematic herbivore Arctia plantaginis (Arctiidae), whose larvae and adults show extensive variation in aposematic colouration. In larvae, less melanic colouration (i.e. larger orange patterns) produces a more efficient warning signal aga…

varoitusväriravintosignal evolutionplastisuusgenotype-by-environment interactionpariutuminendietphenotypic plasticitygenotyyppimelanin
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