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Ontogenetic change in effectiveness of chemical defence against different predators in Oxycarenus true bugs.
Raska, Jan; Chalusová, Katerina; Krajicek, Jan; Cabala, Radomír; Bosáková, Zuzana; Stys, Pavel; Exnerová, Alice.
Afiliação
  • Raska J; Department of Zoology, Charles University Faculty of Science, Praha, Czech Republic.
  • Chalusová K; Department of Zoology, Charles University Faculty of Science, Praha, Czech Republic.
  • Krajicek J; Department of Analytical Chemistry, Charles University Faculty of Science, Praha, Czech Republic.
  • Cabala R; Department of Analytical Chemistry, Charles University Faculty of Science, Praha, Czech Republic.
  • Bosáková Z; Department of Analytical Chemistry, Charles University Faculty of Science, Praha, Czech Republic.
  • Stys P; Department of Zoology, Charles University Faculty of Science, Praha, Czech Republic.
  • Exnerová A; Department of Zoology, Charles University Faculty of Science, Praha, Czech Republic.
J Evol Biol ; 36(7): 1050-1064, 2023 07.
Article em En | MEDLINE | ID: mdl-37428808
Many prey species change their antipredator defence during ontogeny, which may be connected to different potential predators over the life cycle of the prey. To test this hypothesis, we compared reactions of two predator taxa - spiders and birds - to larvae and adults of two invasive true bug species, Oxycarenus hyalinipennis and Oxycarenus lavaterae (Heteroptera: Oxycarenidae) with life-stage-specific chemical defence mechanisms. The reactions to larvae and adults of both true bug species strikingly differed between the two predator taxa. The spiders were deterred by the defences of adult bugs, but the larval defences were ineffective against them. By contrast, birds attacked the larvae considerably less often than the adult bugs. The results indicate a predator-specific ontogenetic change in defence effectiveness of both Oxycarenus species. The change in defence is likely linked to the life-stage-specific composition of secretions in both species: whereas secretions of larvae are dominated by unsaturated aldehydes, secretions of adults are rich in terpenoids, which probably serve dual function of defensive chemicals and pheromones. Our results highlight the variation in defence between different life stages and the importance of testing responses of different types of predators.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Heterópteros Idioma: En Ano de publicação: 2023 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Heterópteros Idioma: En Ano de publicação: 2023 Tipo de documento: Article