Projecten per jaar
Samenvatting
Climate change can severely impact species that depend on temporary resources by inducing phenological mismatches between consumer and resource seasonal timing. In the winter moth, warmer winters caused eggs to hatch before their food source, young oak leaves, became available. This phenological mismatch changed the selection on the temperature sensitivity of egg development rate. However, we know little about the fine-scale fitness consequences of phenological mismatch at the individual level and how this mismatch affects population dynamics in the winter moth. To determine the fitness consequences of mistimed egg hatching relative to timing of oak budburst, we quantified survival and pupation weight in a feeding experiment. We found that mismatch greatly increased mortality rates of freshly hatched caterpillars, as well as affecting caterpillar growth and development time. We then investigated whether these individual fitness consequences have population-level impacts by estimating the effect of phenological mismatch on population dynamics, using our long-term data (1994-2021) on relative winter moth population densities at four locations in The Netherlands. We found a significant effect of mismatch on population density with higher population growth rates in years with a smaller phenological mismatch. Our results indicate that climate change-induced phenological mismatch can incur severe individual fitness consequences that can impact population density in the wild.
Originele taal-2 | English |
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Artikelnummer | 20230414 |
Aantal pagina's | 11 |
Tijdschrift | Proceedings of the Royal Society B |
Volume | 290 |
Nummer van het tijdschrift | 2005 |
DOI's | |
Status | Published - 23-aug.-2023 |
Vingerafdruk
Duik in de onderzoeksthema's van 'Phenological mismatch affects individual fitness and population growth in the winter moth'. Samen vormen ze een unieke vingerafdruk.Datasets
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Phenological mismatch affects individual fitness and population growth in the winter moth
van Dis, N. E. (Contributor), Sieperda, G.-J. (Contributor), Bansal, V. (Contributor), van Lith, B. (Contributor), Wertheim, B. (Contributor) & Visser, M. (Contributor), DRYAD, 23-aug.-2023
DOI: 10.5061/dryad.m905qfv5p, https://zenodo.org/records/7682614
Dataset
Pers/Media
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Editorial: Diet, nutrition and insect responses to environmental change
van Dis, N., Wertheim, B. & Visser, M.
15/06/2024
1 item van Media-aandacht
Pers / media: Onderzoek › Popular
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AL: Adaptive Life
Etienne, R. (Coordinator), Kas, M. (Coordinator), Olff, H. (Coordinator), Weissing, F. (Coordinator) & Groothuis, T. (Coordinator)
01/01/2016 → 01/01/2026
Project: Research
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AL-II: Eco-evolutionary dynamics in the winter moth, Operophtera brumata: The mechanism of adaptation to changing ecological conditions due to climate change
Wertheim, B. (Hoofdonderzoeker), Hut, R. (Hoofdonderzoeker), Visser, M. (Hoofdonderzoeker) & van Dis, N. E. (PhD student)
01/09/2018 → 01/12/2023
Project: Research