Related Experiment Video
Updated: Mar 22, 2026

Author Spotlight: Exploring Behavioral Pathways Through Cross-Species Insights in Foraging and Communication
Published on: November 17, 2023
Producers and scroungers: feeding-type composition changes with group size in a socially foraging spider
Marlis Dumke1, Marie E Herberstein2, Jutta M Schneider3
1Biocenter Grindel, Zoological Institute, University of Hamburg, Martin Luther King Platz 3, 20146 Hamburg, Germany Department of Biological Sciences, Macquarie University, North Ryde, New South Wales 2109, Australia marlis.dumke@uni-hamburg.de.
Abstract:
In groups of socially foraging animals, feeding behaviour may change with group size in response to varying cost-benefit trade-offs. Numerous studies have described group-size effects on group-average feeding behaviour, particularly emphasizing an increase in scrounging incidence for larger groups, where individuals (scroungers) feed from the food sources others (producers) discovered. However, individual variation in feeding behaviour remains unconsidered in the vast majority of these studies even though theoretical models predict individuals to specialize in feeding tactic and anticipate higher scrounger-type frequencies in larger groups. We combined group-level and individual-level analyses of group-size effects on social foraging in the subsocial spider Australomisidia ergandros Lending novel experimental support to model predictions, we found that individuals specialize in feeding tactic and that higher scrounging and lower producing incidence in larger groups were mediated through shifts in the ratio of feeding types. Further, feeding-type specialization was not explained by innate individual differences in hunting ability as all feeding types were equally efficient in prey capture when foraging alone. Context adaptivity of feeding behaviour might allow this subsocial species to succeed under varying socioecological conditions.
More Related Videos
Related Concept Videos
Optimal Foraging
Trophic Levels
Epiphytes, Parasites, and Carnivores
Predator-Prey Interactions
Symbiosis
Life Histories

