Influence of Habitat Use on Prey Capture Behavior and Kinematics in the Pyrenean Brook Newt ( Calotriton asper )

ABSTRACT Caves are extreme environments that impose stringent selective pressures on organisms. Consequently, many cave dwellers show extreme adaptations such as the loss of eyes, depigmentation, and a low resting metabolic rate. Yet, how the initial stages of adaptation to these extreme environments take place remains poorly understood. Calotriton asper is a species of salamander that is ideal to understand the initial stages of adaptation to underground environments. This species presents two genetically distinct morphotypes that live either in surface streams or in cave streams, yet without showing obvious morphological differences. Here, we test for differences in the capacity to locate prey and differences in feeding kinematics between cave‐dwelling and surface‐dwelling populations under different light conditions. To do so, we quantified prey location ability using a Y‐maze and filmed animals capturing prey using high‐speed video cameras, both in light and in full darkness. Our results show that animals change capture style and exploration behavior in function of light conditions suggesting an intrinsic plasticity in the species allowing it to feed in both environments. However, the kinematics of capture suggest population‐specific behaviors allowing cave‐dwellers to be more efficient in capturing prey under total darkness.

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Journal
Journal of Experimental Zoology Part A Ecological and Integrative Physiology
Published
2026-09-14
DOI
https://doi.org/10.1002/jez.70131
Primary Topic
Subterranean biodiversity and taxonomy
Type
article
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article

Influence of Habitat Use on Prey Capture Behavior and Kinematics in the Pyrenean Brook Newt ( Calotriton asper )

Olivier Guillaume, Anthony Herrel, Anne‐Claire Fabre, N. Heier et al.
Journal of Experimental Zoology Part A Ecological and Integrative Physiology
Subterranean biodiversity and taxonomy
article

Influence of Habitat Use on Prey Capture Behavior and Kinematics in the Pyrenean Brook Newt ( Calotriton asper )

Olivier Guillaume, Anthony Herrel, Anne‐Claire Fabre, N. Heier, Isabelle Toussaint‐Lardé
article en

Abstract

ABSTRACT Caves are extreme environments that impose stringent selective pressures on organisms. Consequently, many cave dwellers show extreme adaptations such as the loss of eyes, depigmentation, and a low resting metabolic rate. Yet, how the initial stages of adaptation to these extreme environments take place remains poorly understood. Calotriton asper is a species of salamander that is ideal to understand the initial stages of adaptation to underground environments. This species presents two genetically distinct morphotypes that live either in surface streams or in cave streams, yet without showing obvious morphological differences. Here, we test for differences in the capacity to locate prey and differences in feeding kinematics between cave‐dwelling and surface‐dwelling populations under different light conditions. To do so, we quantified prey location ability using a Y‐maze and filmed animals capturing prey using high‐speed video cameras, both in light and in full darkness. Our results show that animals change capture style and exploration behavior in function of light conditions suggesting an intrinsic plasticity in the species allowing it to feed in both environments. However, the kinematics of capture suggest population‐specific behaviors allowing cave‐dwellers to be more efficient in capturing prey under total darkness.

Journal of Experimental Zoology Part A Ecological and Integrative Physiology
University of Bern (CH), Centre National de la Recherche Scientifique (FR), Natural History Museum (GB), University of Antwerp (BE), Ghent University (BE), Natural History Museum of Bern (CH), Mécanismes Adaptatifs et Evolution (FR), Station d’Écologie Théorique et Expérimentale (FR)
Life in Land
Openalex Percentile: Top 7%
Subterranean biodiversity and taxonomy
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