Journal article
Proceedings of the Royal Society B, 2023
APA
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Kalske, A., & Kessler, A. (2023). Herbivory selects for tolerance and constitutive defence across stages of community succession. Proceedings of the Royal Society B.
Chicago/Turabian
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Kalske, A., and A. Kessler. “Herbivory Selects for Tolerance and Constitutive Defence across Stages of Community Succession.” Proceedings of the Royal Society B (2023).
MLA
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Kalske, A., and A. Kessler. “Herbivory Selects for Tolerance and Constitutive Defence across Stages of Community Succession.” Proceedings of the Royal Society B, 2023.
BibTeX Click to copy
@article{a2023a,
title = {Herbivory selects for tolerance and constitutive defence across stages of community succession},
year = {2023},
journal = {Proceedings of the Royal Society B},
author = {Kalske, A. and Kessler, A.}
}
Plants defend themselves from herbivory by either reducing damage (resistance) or minimizing its negative fitness effects with compensatory growth (tolerance). Herbivore pressure can fluctuate from year to year in an early secondary successional community, which can create temporal variation in selection for defence traits. We manipulated insect herbivory and successional age of the community as agents of natural selection in replicated common gardens with the perennial herb Solidago altissima. In these genotypic selection experiments, herbivory consistently selected for better defended plants in both successional communities. Herbivore suppression increased plant survival and the probability of flowering only in mid-succession. Despite these substantial differences in the effects of herbivory between early and mid-succession, the selection on defence traits did not change. Succession affected selection only on aboveground biomass, with positive selection in early but not mid-succession, suggesting an important role of competition in the selective environment. These results demonstrate that changes in the community that affect key life-history traits in an individual species can occur over very short timescales in a dynamic secondary successional environment. The resulting community context-driven variation in natural selection may be an important, yet overlooked, contributor to adaptive mosaics across populations.