Variation in upper thermal tolerance among 19 species from temperate wetlands
2021
Katzenberger, Marco | Duarte, Helder | Relyea, Rick A. | Beltrán Gala, Juan Francisco | Tejedo, Miguel | Universidad de Sevilla. Departamento de Zoología | National Science Foundation (NSF). United States | Ministerio de Ciencia e Innovación (MICIN). España | Ministerio de Economía y Competitividad (MINECO). España
Communities usually possess a multitude of interconnected trophic interactions within food webs. Their regulation generally depends on a balance between bottom-up and top-down effects. However, if sensitivity to temperature varies among species, rising temperatures may change trophic interactions via direct and indirect effects. We examined the critical thermal maximum (CTmax) of 19 species from temperate wetlands (insect predators, amphibian larvae, zooplankton and amphipods) and determined if they vary in their sensitivity to warming temperatures. CTmax differed between the groups, with predatory insects having higher CTmax than amphibians (both herbivorous larval anurans and predatory larval salamanders), amphipods and zooplankton. In a scenario of global warming, these differences in thermal tolerance may affect top-down and bottom-up processes, particularly considering that insect predators are more likely to maintain or improve their performance at higher temperatures, which could lead to increased predation rates on the herbivores in the food web. Further studies are needed to understand how the energy flows through communities, how species’ energy budgets may change and whether other physiological and behavioral responses (such as phenotypic plasticity and thermoregulation) can buffer or increase these changes in the top-down regulation of wetland food webs.
Show more [+] Less [-]U.S. National Science Foundation 0716149
Show more [+] Less [-]Ministerio de Ciencia e Innovación CGL2009-12767-C02-02
Show more [+] Less [-]Ministerio de Economía y Competitividad CGL201240246C0201, CGL2017-86924-P
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