Fish with slow life‐history cope better with chronic manganese exposure than fish with fast life‐history
Uusi‐Heikkilä, S., Salonen, J., Karjalainen, J. S., Väisänen, A., Hippeläinen, J., Hämärvuo, T., & Kuparinen, A. (2024). Fish with slow life‐history cope better with chronic manganese exposure than fish with fast life‐history. Ecology and Evolution, 14(8), Article e70134. https://doi.org/10.1002/ece3.70134
Published in
Ecology and EvolutionAuthors
Date
2024Copyright
© 2024 The Author(s). Ecology and Evolution published by John Wiley & Sons Ltd.
Animals with different life-history types vary in their stress-coping styles, which can affect their fitness and survival in changing environments. We studied how chronic exposure to manganese sulfate (MnSO4), a common aquatic pollutant, affects life-history traits, physiology, and behavior of zebrafish (Danio rerio) with two life-history types: fast (previously selected for fast juvenile growth, early maturation, and small adult body size) and slow life histories (selected for slow juvenile growth, late maturation, and large adult body size). We found that MnSO4 had negative effects on growth and condition factors, but the magnitude of these effects depended on the life-history type. Individuals with fast life histories were more susceptible to MnSO4 than fish with slow life histories as they had lower growth rate, condition factor and feeding probability in high MnSO4 concentrations. Our results demonstrate that MnSO4 can impair fish performance, and life-history variation can modulate the stress-coping ability of individuals.
...
Publisher
WileyISSN Search the Publication Forum
2045-7758Keywords
Publication in research information system
https://converis.jyu.fi/converis/portal/detail/Publication/233362287
Metadata
Show full item recordCollections
Related funder(s)
European Commission; Research Council of FinlandFunding program(s)
ERC Consolidator Grant; Academy Research Fellow, AoF; Academy Project, AoF
The content of the publication reflects only the author’s view. The funder is not responsible for any use that may be made of the information it contains.
Additional information about funding
This study was funded by the Academy of Finland (project grants 325107 to SUH and 317495 to AK), Emil Aaltonen Foundation (through a project grant to AK). This project has also received funding from the European Research Council (ERC) under the European Union's Horizon 2020 Research and Innovation Programme (grant agreement No 770884).License
Related items
Showing items with similar title or keywords.
-
Sulfate sensitivity of aquatic organism in soft freshwaters explored by toxicity tests and species sensitivity distribution
Karjalainen, Juha; Hu, Xiaoxuan; Mäkinen, Mikko; Karjalainen, Anna; Järvistö, Johanna; Järvenpää, Kaisa; Sepponen, Minna; Leppänen, Matti T. (Elsevier BV, 2023)Elevated concentrations of sulfate in waterways are observed due to various anthropogenic activities. Elevated levels of sulfate can have harmful effects on aquatic life in freshwaters: sulfate can cause osmotic stress or ... -
Sulfate toxicity to early life stages of European whitefish (Coregonus lavaretus) in soft freshwater
Karjalainen, Juha; Mäkinen, Mikko; Karjalainen, Anna K. (Elsevier, 2021)Sulfate occurs naturally in the aquatic environment but its elevated levels can be toxic to aquatic life in freshwater environments. We investigated the toxicity of sulfate in humic, soft freshwater to whitefish (Coregonus ... -
Supplementary material for article "Exposure to environmental radionuclides is associated with altered metabolic and immunity pathways in a wild rodent".
Kivisaari, Kati; Watts, Phillip; Lavrinienko, Anton; Mappes, Tapio; Kesäniemi, Jenni; Jernfors, Toni; Kiljunen, Mikko (DRYAD, 2022)Electronic material for Kesäniemi J, Jernfors T, Lavrinienko A, Kivisaari K, Kiljunen M, Mappes T & Watts PC. 2019. Exposure to environmental radionuclides is associated with altered metabolic and immunity pathways in a ... -
Sulfate sensitivity of early life stages of freshwater mussels Unio crassus and Margaritifera margaritifera
Hu, Xiaoxuan; Mäkinen, Mikko; Taskinen, Jouni; Karjalainen, Juha (Springer Nature, 2024)Sulfate is increasingly found in elevated concentrations in freshwater ecosystems due to anthropogenic activities. Chronic exposure to sulfate has been reported to cause sublethal effects on freshwater invertebrates. ... -
The effect of fish life-history structures on the topologies of aquatic food webs
Vesterinen, Milko; Perälä, Tommi; Kuparinen, Anna (Elsevier, 2021)Biological organisms can vastly change their ecological functionality due to changes in body size and diet across their life. Consequently, it has been increasingly recognized that to attain sufficient biological realism, ...