Related Experiment Video
Updated: Apr 28, 2026

07:37
Resurrection of Dormant Daphnia magna: Protocol and Applications
Published on: January 19, 2018
21.5K
Interclonal differences in incipient limiting level (ILL) in Daphnia magna
Anna Bednarska1, Joanna Pijanowska1, Barbara Pietrzak1
1Department of Hydrobiology, Institute of Ecology, Faculty of Biology, University of Warsaw, at Biological and Chemical Research Centre, Żwirki i Wigury 101, 02-089 Warszawa, Poland.
Journal of Plankton Research
|April 27, 2026
Summary
The incipient limiting level (ILL) for Daphnia magna varies significantly among clones, challenging assumptions of a universal food threshold. This clonal variation in ILL suggests local adaptation to different aquatic food environments.
Area of Science:
- Aquatic Ecology
- Limnology
- Zooplankton Ecology
Background:
- Seasonal phytoplankton changes create selection pressures on zooplankton herbivores like Daphnia.
- The threshold food level (TFL) is well-studied, but the incipient limiting level (ILL) is poorly understood at the intraspecific level.
- ILL is the food concentration above which growth or reproduction plateaus.
Purpose of the Study:
- To quantify clonal variation in the incipient limiting level (ILL) among four genetically distinct Daphnia magna clones.
- To investigate the relationship between habitat origin (pond vs. lake) and ILL.
- To assess how clonal variation in ILL affects somatic growth and population growth rates.
Main Methods:
- Rearing Daphnia magna clones along a gradient of algal concentrations under controlled laboratory conditions.
- Calculating somatic growth rate and intrinsic rate of increase for each clone at different food levels.
- Statistical analysis to determine significant differences in ILL among clones.
Main Results:
- Substantial variation in ILL for somatic growth rate was observed among Daphnia magna clones (0.7–1.0 mg Corg L⁻¹).
- Population growth rates also showed significant clonal variation, with one clone needing higher food levels (~1.3 mg Corg L⁻¹) for maximum fitness.
- No clear pattern emerged linking habitat origin (pond/lake) to specific ILL values, suggesting complex adaptive processes.
Conclusions:
- The assumption of a universal ILL for Daphnia magna is challenged by significant clonal variation.
- Clonal differences in ILL likely result from local adaptation to varying food regimes in pond and lake environments.
- Integrating clone-specific ILLs into ecological models can enhance predictions of zooplankton population dynamics under fluctuating trophic conditions.

