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- W2089492757 abstract "Abstract 1. Effective thermoregulation is crucial for the fitness of small flying insects. Phenotypic plasticity of the ventral hindwing of pierid butterflies is widely recognised as adaptive for effective thermoregulation. Butterflies eclosing in cooler environments have more heavily melanised wings that absorb solar radiation, thus allowing flight under these cool conditions. 2. Many pierids also exhibit phenotypic plasticity of dorsal forewing melanisation but in this case, cooler environments reduce melanisation. It has been hypothesised that this plasticity is also adaptive because it increases solar reflection from the wing surfaces onto the body in certain basking postures. 3. The degree of seasonal variation in ventral hindwing and dorsal forewing melanisation of wild‐caught Pieris rapae was quantified to determine if it shows patterns of plasticity similar to that documented for other Pieris species. 4. Male wing melanisation on both wing surfaces shows the characteristic seasonal, adaptive plasticity. However, only some dorsal forewing pattern elements of females conformed to the predictions of the hypothesis of adaptive dorsal forewing melanisation. Sexual dimorphism of wing pattern plasticity may result from, and/or affect, sexual dimorphism of behaviour and physiology of these butterflies." @default.
- W2089492757 created "2016-06-24" @default.
- W2089492757 creator A5035878719 @default.
- W2089492757 creator A5041583547 @default.
- W2089492757 date "2008-01-18" @default.
- W2089492757 modified "2023-10-17" @default.
- W2089492757 title "Seasonal phenotypic plasticity of wing melanisation in the cabbage white butterfly, Pieris rapae L. (Lepidoptera: Pieridae)" @default.
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- W2089492757 doi "https://doi.org/10.1111/j.1365-2311.2007.00931.x" @default.
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