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Social Dominance Influences Individual Susceptibility to an Evolutionary Trap in Mosquitofish

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Journal Ecol Appl
Date 2025 Jan 20
PMID 39829287
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Abstract

Plastic pollution threatens almost every ecosystem in the world. Critically, many animals consume plastic, in part because plastic particles often look or smell like food. Plastic ingestion is thus an evolutionary trap, a phenomenon that occurs when cues are decoupled from their previously associated high fitness outcomes. Theory predicts that dominance hierarchies could dictate individual responses to evolutionary traps across social environments, but the social dimension of evolutionary trap responses has rarely been investigated. We tested how variation in group size influences the formation of dominance relationships and, in turn, how these dominance relationships drive differences in foraging behavior in Western mosquitofish (Gambusia affinis). This included foraging for a variety of familiar and novel food-like items, including microplastics. Overall, dominant individuals were often the first to sample food and had higher bite rates than subordinates, including when foraging for microplastics. Importantly, how dominance affected foraging behavior depended on group size and on whether groups were presented with familiar or novel foods. Furthermore, individuals were consistent in their foraging behavior across trials with different group sizes, indicating the formation of stable social roles. These results suggest that predicting the ecological and evolutionary consequences of evolutionary traps will require an understanding of how social structures influence trap susceptibility.

Citing Articles

Social dominance influences individual susceptibility to an evolutionary trap in mosquitofish.

Pollack L, Culshaw-Maurer M, Sih A Ecol Appl. 2025; 35(1):e3081.

PMID: 39829287 PMC: 11744343. DOI: 10.1002/eap.3081.

References
1.
Orr J, Vinebrooke R, Jackson M, Kroeker K, Kordas R, Mantyka-Pringle C . Towards a unified study of multiple stressors: divisions and common goals across research disciplines. Proc Biol Sci. 2020; 287(1926):20200421. PMC: 7282922. DOI: 10.1098/rspb.2020.0421. View

2.
Biro P, Stamps J . Are animal personality traits linked to life-history productivity?. Trends Ecol Evol. 2008; 23(7):361-8. DOI: 10.1016/j.tree.2008.04.003. View

3.
Aplin L, Farine D, Morand-Ferron J, Cockburn A, Thornton A, Sheldon B . Experimentally induced innovations lead to persistent culture via conformity in wild birds. Nature. 2014; 518(7540):538-41. PMC: 4344839. DOI: 10.1038/nature13998. View

4.
Strauss E, Curley J, Shizuka D, Hobson E . The centennial of the pecking order: current state and future prospects for the study of dominance hierarchies. Philos Trans R Soc Lond B Biol Sci. 2022; 377(1845):20200432. PMC: 8743894. DOI: 10.1098/rstb.2020.0432. View

4.
Rakita A, Nikolic N, Mildner M, Matiasek J, Elbe-Burger A . Re-epithelialization and immune cell behaviour in an ex vivo human skin model. Sci Rep. 2020; 10(1):1. PMC: 6959339. DOI: 10.1038/s41598-019-56847-4. View