Trilobite tridents: hydrodynamic lift and stability mechanisms for queue formation

Fuente: arXiv
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Main Authors: Trenchard, Hugh A., Brett, Carlton E., Perc, Matjaz
Format: Preprint
Published: 2025
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author Trenchard, Hugh A.
Brett, Carlton E.
Perc, Matjaz
author_facet Trenchard, Hugh A.
Brett, Carlton E.
Perc, Matjaz
contents The bizarre trident-like cephalic projections of Walliserops trifurcatus have previously been interpreted as sexually selected weapons for intraspecific combat. We propose an alternative hypothesis grounded in biomechanics and collective behavior, that tridents evolved as adaptations for hydrodynamic lift and queue stability, conferring energetic advantages during group locomotion. Under this hypothesis, lift could offset gravitational forces, enabling greater locomotor efficiency, while mechanically linked formations, where tridents rested on the pygidia of leading individuals, enhanced pitch and roll stability and minimized costly accelerations and collisions. These formations also facilitated hydrodynamic drafting, allowing weaker individuals to conserve energy and remain integrated within the group. The trident's structure, though inefficient for solitary lift or combat, functioned effectively in cooperative formations, suggesting that its original selective advantage lay not in individual performance but in enhancing group cohesion and efficiency. Rather than emerging from competitive pressures alone, the trident may have arisen through selection for coordinated, cooperative movement -- potentially representing a precursor stage to traits later exapted for sexual selection.
format Preprint
id arxiv_https___arxiv_org_abs_2506_15922
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Trilobite tridents: hydrodynamic lift and stability mechanisms for queue formation
Trenchard, Hugh A.
Brett, Carlton E.
Perc, Matjaz
Populations and Evolution
The bizarre trident-like cephalic projections of Walliserops trifurcatus have previously been interpreted as sexually selected weapons for intraspecific combat. We propose an alternative hypothesis grounded in biomechanics and collective behavior, that tridents evolved as adaptations for hydrodynamic lift and queue stability, conferring energetic advantages during group locomotion. Under this hypothesis, lift could offset gravitational forces, enabling greater locomotor efficiency, while mechanically linked formations, where tridents rested on the pygidia of leading individuals, enhanced pitch and roll stability and minimized costly accelerations and collisions. These formations also facilitated hydrodynamic drafting, allowing weaker individuals to conserve energy and remain integrated within the group. The trident's structure, though inefficient for solitary lift or combat, functioned effectively in cooperative formations, suggesting that its original selective advantage lay not in individual performance but in enhancing group cohesion and efficiency. Rather than emerging from competitive pressures alone, the trident may have arisen through selection for coordinated, cooperative movement -- potentially representing a precursor stage to traits later exapted for sexual selection.
title Trilobite tridents: hydrodynamic lift and stability mechanisms for queue formation
topic Populations and Evolution
url https://arxiv.org/abs/2506.15922