0000000001166746

AUTHOR

Mappes Johanna

showing 5 related works from this author

Genetic diversity in populations of asexual and sexual bag worm moths (Lepidoptera: Psychidae).

2004

Abstract Background Despite the two-fold cost of sex, most of the higher animals reproduce sexually. The advantage of sex has been suggested to be its ability, through recombination, to generate greater genetic diversity than asexuality, thus enhancing adaptation in a changing environment. We studied the genetic diversity and the population structure of three closely related species of bag worm moths: two strictly sexual (Dahlica charlottae and Siederia rupicolella) and one strictly asexual (D. fennicella). These species compete for the same resources and share the same parasitoids. Results Allelic richness was comparable between the sexual species but it was higher than in the asexual spec…

IsoenzymesEcologyGenotypeReproductionParthenogenesisAnimalsGenetic VariationInsect ProteinsMothshuman activitiesQH540-549.5Research ArticleBMC ecology
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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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De novo Synthesis of Chemical Defenses in an Aposematic Moth.

2018

Abstract Many animals protect themselves from predation with chemicals, both self-made or sequestered from their diet. The potential drivers of the diversity of these chemicals have been long studied, but our knowledge of these chemicals and their acquisition mode is heavily based on specialist herbivores that sequester their defenses. The wood tiger moth (Arctia plantaginis, Linnaeus, 1758) is a well-studied aposematic species, but the nature of its chemical defenses has not been fully described . Here, we report the presence of two methoxypyrazines, 2-sec-butyl-3-methoxypyrazine and 2-isobutyl-3-methoxypyrazine, in the moths’ defensive secretions. By raising larvae on an artificial diet, …

Malechemical defensePyrazinesShort CommunicationAnimalspyrazineFemaleinsectMothsSolid Phase MicroextractionJournal of insect science (Online)
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Weak warning signals can persist in the absence of gene flow.

2019

Significance With our comprehensive set of field (model survival), laboratory (controlled learning, palatability, toxin analysis), and molecular data, we provide evidence that polymorphism can persist in an aposematic population, despite expectations of positive frequency-dependent selection. We show that this can happen if prey species carrying a strong signal can exploit predator learning to elicit broad avoidance of many signals, even if predators only have experience with a single signal. This could allow novel signals to be protected within a population of aposematic prey. Thus, under the expectations of broad generalization coupled with limited gene flow, weak aposematic signals can p…

Gene FlowunpalatabilityBehavior AnimalEvolutionfood and beveragesGenetic VariationBiological SciencesBiological EvolutionModels BiologicalpolymorphismAnimal Communicationfrequency-dependent selectionGenetics PopulationPhenotypePNAS PlusPredatory BehaviorAvoidance LearningAnimalsaposematismAnuraChickensAnimals Poisonoussecondary defensesProceedings of the National Academy of Sciences of the United States of America
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De novo transcriptome assembly and its annotation for the aposematic wood tiger moth (

2017

In this paper we report the public availability of transcriptome resources for the aposematic wood tiger moth (Parasemia plantaginis). A comprehensive assembly methods, quality statistics, and annotation are provided. This reference transcriptome may serve as a useful resource for investigating functional gene activity in aposematic Lepidopteran species. All data is freely available at the European Nucleotide Archive (http://www.ebi.ac.uk/ena) under study accession number: PRJEB14172.

Data in Brief ArticleGenomics data
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