Evolution of seasonal plasticity in response to climate change differs between life-stages of a butterfly
Nielsen, M. E.; Wiklund, C.; Nylin, S.; Gotthard, K.
Show abstract
Climate change alters seasonal environments without altering photoperiod, creating a cue-environment mismatch for organisms that rely on photoperiod as a cue for seasonal plasticity and phenology. Evolution can potentially correct for this mismatch by altering the photoperiodic reaction norm, but often phenology depends on multiple plastic decisions made at different life stages and times of year. We tested whether seasonal plasticity in different life stages evolves independently or in concert under climate change using Pararge aegeria (Speckled wood butterfly). This butterfly uses day length as a cue for life history plasticity in two different life stages: larval development time and pupal diapause. Photoperiodic reaction norms for plasticity in these traits were first measured over 30 years ago for two different Swedish populations. In this study, we replicated historic experiments that measured these reaction norms using the contemporary populations. We found evidence for evolution of the reaction norm for larval development time, but in opposite directions in the two populations. In contrast, we found no evidence for evolution of the reaction norm for pupal diapause. These results show that different life stages can evolve differently in response to climate change and only studying one part of the life cycle will not always be enough to fully understand how climate change impacts phenotypic plasticity and phenology.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Multidimensional plasticity in the Glanville fritillary butterfly: larval performance curves are temperature, host and family specific. 93%
- Mitochondrial effects on fertility and longevity in Tigriopus californicus contradict predictions of the mother's curse hypothesis 93%
- Effects of Ambient Temperature on the Recognition and Preferences for Host Song Pulse-rate by the Acoustic Parasitoid Fly Ormia ochracea 93%
Similar papers in this journal
- Seasonal plasticity in morphology and metabolism differs between migratory North American and resident Costa Rican monarch butterflies 93%
- Physiological responses to a changing winter climate in an early spring-breeding amphibian 93%
- Exploring links between climatic predictability and the evolution of within- and transgenerational plasticity 93%
Similar papers in this journal
- Allele specific expression and gene regulation explain transgressive thermal tolerance in non-native hybrids of the endangered California tiger salamander (Ambystoma californiense) 93%
- Geographic divergence and the genomic basis of reproductive diapause in Drosophila triauraria 92%
- Extensive transgressive gene expression in testis but not ovary in the homoploid hybrid Italian sparrow 92%
Similar papers in this journal
- Adaptation at the edge: Patterns of local adaptation and genetic variation during a contemporary range expansion 94%
- Female resource limitation does not make the opportunity for selection more female biased. 93%
- Evolution of a novel female reproductive strategy in Drosophila melanogaster populations subjected to long term protein restriction 92%
Similar papers in this journal
- Sexual dichromatism in the neotropical genus Mannophryne (Anura: Aromobatidae) 93%
- Offspring of first-generation hatchery steelhead trout (Oncorhynchus mykiss) grow faster in the hatchery than offspring of wild fish, but survive worse in the wild: possible mechanisms for inadvertent domestication and fitness loss in hatchery salmon 93%
- Star Power: Early life stages of an endangered sea star are robust to current and near-future warming 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.