Related Experiment Video
Updated: Apr 2, 2026

Dissection and Flat-mounting of the Threespine Stickleback Branchial Skeleton
Published on: May 7, 2016
Predation of Threespine Stickleback by Dragonfly Naiads
Emily A Lescak1, Frank A von Hippel1, Brian K Lohman2
1Department of Biological Sciences, University of Alaska Anchorage, 3211 Providence Dr., Anchorage AK 99508.
Dragonfly naiads do not prefer stickleback based on pelvic fin presence alone. However, naiads adjust predation, targeting small stickleback with spines and large stickleback without, indicating adaptive predatory behavior.
Area of Science:
- Evolutionary Biology
- Behavioral Ecology
- Aquatic Ecology
Background:
- Threespine stickleback populations with reduced pelvic girdles are often found in environments with low ions, few predators, and abundant macroinvertebrates.
- It is hypothesized that macroinvertebrates may use stickleback pelvic spines for prey capture and manipulation.
Purpose of the Study:
- To investigate if dragonfly naiads differentially prey on threespine stickleback with complete versus reduced pelvic fins.
- To document the hunting and capturing behaviors of dragonfly naiads towards stickleback with different pelvic phenotypes.
Main Methods:
- Arena experiments were conducted to observe naiad predation on stickleback with complete and reduced pelvic fins.
- Naiads were presented with single stickleback phenotypes and then with paired stickleback of differing phenotypes to assess prey choice.
Main Results:
- Dragonfly naiads did not show a higher predation rate on stickleback with one pelvic phenotype over the other when presented individually.
- When offered a choice, naiads preyed more heavily on small stickleback with pelvic spines and large stickleback without pelvic spines.
- Naiads demonstrated adaptive predatory behavior, adjusting their prey selection based on the pelvic phenotype of the stickleback.
Conclusions:
- Pelvic spine presence alone does not determine naiad predation preference in stickleback.
- Dragonfly naiad predation on threespine stickleback is influenced by a complex interaction between prey size and pelvic fin morphology, suggesting adaptive foraging strategies.
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