6533b7d0fe1ef96bd125a25f
RESEARCH PRODUCT
Acclimation capacity and rate change through life in the zooplankton Daphnia
Tim BurtonSigurd EinumHanna-kaisa LakkaHanna-kaisa Lakkasubject
0106 biological sciences0303 health sciencesGeneral Immunology and MicrobiologybiologyZoologyGeneral MedicineBody sizebiology.organism_classification010603 evolutionary biology01 natural sciencesAcclimatizationZooplanktonDaphniaGeneral Biochemistry Genetics and Molecular BiologyHeat tolerance03 medical and health sciences13. Climate actionRate changeAllometryGeneral Agricultural and Biological Sciences030304 developmental biologyGeneral Environmental Sciencedescription
When a change in the environment occurs, organisms can maintain an optimal phenotypic state via plastic, reversible changes to their phenotypes. These adjustments, when occurring within a generation, are described as the process of acclimation. While acclimation has been studied for more than half a century, global environmental change has stimulated renewed interest in quantifying variation in the rate and capacity with which this process occurs, particularly among ectothermic organisms. Yet, despite the likely ecological importance of acclimation capacity and rate, how these traits change throughout life among members of the same species is largely unstudied. Here we investigate these relationships by measuring the acute heat tolerance of the clonally reproducing zooplankter Daphnia magna of different size/age and acclimation status. The heat tolerance of individuals completely acclimated to relatively warm (28°C) or cool (17°C) temperatures diverged during development, indicating that older, larger individuals had a greater capacity to increase heat tolerance. However, when cool acclimated individuals were briefly exposed to the warm temperature (i.e. were ‘heat-hardened'), it was younger, smaller animals with less capacity to acclimate that were able to do so more rapidly because they obtained or came closer to obtaining complete acclimation of heat tolerance. Our results illustrate that within a species, individuals can differ substantially in how rapidly and by how much they can respond to environmental change. We urge greater investigation of the intraspecific relationship between acclimation and development along with further consideration of the factors that might contribute to these enigmatic patterns of phenotypic variation.
year | journal | country | edition | language |
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2020-04-01 | Proceedings of the Royal Society B: Biological Sciences |