https://doi.org/10.25678/0003G1

Data for: Sub-Lethal Peak Exposure to Insecticides Triggers Olfaction-Mediated Avoidance in Zebrafish Larvae

In agricultural areas, insecticides inevitably reach water bodies via leaching or run-off. While designed to be neurotoxic to insects, insecticides have adverse effects on a multitude of organisms due to the high conservation of the nervous system among phyla. To estimate ecological effects of insecticides, it is important to investigate their impact on non-target organisms such as fish. Using the zebrafish as model, we investigated how different classes of insecticides influence fish behavior and uncovered neuronal underpinnings of the behavioral changes providing an unprecedented insight into the perception of these chemicals by fish. We observed that zebrafish larvae avoid diazinon and imidacloprid while showing no response to other insecticides with the same mode of action. Moreover, ablation of olfaction abolished the aversive responses, indicating that fish smelled the insecticides. Assessment of neuronal activity in 289 brain regions showed that hypothalamic areas involved in stress response were among the regions with the largest changes, indicating that the observed behavioral response resembles reactions to stimuli that threaten the homeostasis, such as changes in water chemistry. Our results contribute to the understanding of the environmental impact of insecticide exposure and can help refining acute toxicity assessment.

Data and Resources

Citation

This Data Package

Koenemann, S., Meyer, S., Betz, A., Zupanic, A., & vom Berg, C. (2021). Data for:Sub-Lethal Peak Exposure to Insecticides Triggers Olfaction-Mediated Avoidance in Zebrafish Larvae (Version 1.0) [Data set]. Eawag: Swiss Federal Institute of Aquatic Science and Technology. https://doi.org/10.25678/0003G1

The associated article

Könemann, S., Meyer, S., Betz, A., Županič, A., & vom Berg, C. (2021). Sub-Lethal Peak Exposure to Insecticides Triggers Olfaction-Mediated Avoidance in Zebrafish Larvae. Environmental Science & Technology, 55(17), 11835–11847. https://doi.org/10.1021/acs.est.1c01792

Metadata

Open Data Open Data
Long-term data Long-term data
Author
  • Koenemann, Sarah
  • Meyer, Stéphanie
  • Betz, Alexander
  • Zupanic, Anze
  • vom Berg, Colette
Keywords insecticide exposure,behavioral response,olfaction,neuronal activity,homeostatic threat
Variables
  • concentration
  • fluorescence
  • velocity
Substances (scientific names)
  • Diazinon, diethoxy-(6-methyl-2-propan-2-ylpyrimidin-4-yl)oxy-sulfanylidene-lambda5-phosphane
  • Dimathoate, 2-dimethoxyphosphinothioylsulfanyl-N-methylacetamide
  • Imidacloprid, (NE)-N-[1-[(6-chloropyridin-3-yl)methyl]imidazolidin-2-ylidene]nitramide
  • Methomyl, methyl (1E)-N-(methylcarbamoyloxy)ethanimidothioate
  • Pirimicarb, [2-(dimethylamino)-5,6-dimethylpyrimidin-4-yl] N,N-dimethylcarbamate
  • Thiacloprid, [3-[(6-chloropyridin-3-yl)methyl]-1,3-thiazolidin-2-ylidene]cyanamide
Substances (generic terms)
  • Insecticides
Taxa (scientific names)
  • Danio rerio
Organisms (generic terms)
  • fish
Systems
  • lab
Timerange
  • 2018-01 TO 2020-12
Review Level none
Curator Koenemann, Sarah
Contact Sarah.Koenemann@eawag.ch
DOI 10.25678/0003G1