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Relationships between dietary breadth and flexibility in jaw movement: A case study of two recently diverged insular populations of Podarcis lizards (CROSBI ID 313858)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Taverne, Maxime ; Decamps, Thierry ; Mira, Oscar ; Sabolić, Iva ; Duarte Da Silva, Joao ; Glogoški, Marko ; Lisičić, Duje ; Štambuk, Anamaria ; Herrel, Anthony Relationships between dietary breadth and flexibility in jaw movement: A case study of two recently diverged insular populations of Podarcis lizards // Comparative biochemistry and physiology. Part A, Molecular & integrative physiology, 265 (2022), 1-10. doi: 10.1016/j.cbpa.2021.111140

Podaci o odgovornosti

Taverne, Maxime ; Decamps, Thierry ; Mira, Oscar ; Sabolić, Iva ; Duarte Da Silva, Joao ; Glogoški, Marko ; Lisičić, Duje ; Štambuk, Anamaria ; Herrel, Anthony

engleski

Relationships between dietary breadth and flexibility in jaw movement: A case study of two recently diverged insular populations of Podarcis lizards

The kinematics of lizard feeding are the result of complex interactions between the craniocervical, the hyolingual, and the locomotor systems. The coordinated movement of these elements is driven by sensory feedback from the tongue and jaws during intraoral transport. The kinematics of jaw movements have been suggested to be correlated with the functional characteristics of the prey consumed, such as prey mobility and hardness. However, whether and how dietary breadth correlates with the flexibility in the behavioral response has rarely been tested, especially at the intraspecific level. Here we tested whether an increase in dietary breadth was associated with a greater behavioral flexibility by comparing two recently diverged populations of insular Podarcis lizards differing in dietary breadth. To do so, we used a stereoscopic high-speed camera set-up to analyze the jaw kinematics while offering them different prey types. Our results show that prey type impacts kinematics, especially maximum gape, and maximum opening and closing speed. Furthermore, the behavioral flexibility was greater in the population with the greater dietary breadth, suggesting that populations which naturally encounter and feed on more diverse prey items show a greater ability to modulate their movements to deal with variation in functionally relevant prey properties. Finally, the more generalist population showed more stereotyped movements suggesting a finer motor control.

Dietary generalist ; Dietary specialist ; Jaw kinematics ; Prey type ; Stereotyped movements

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Podaci o izdanju

265

2022.

1-10

objavljeno

1095-6433

10.1016/j.cbpa.2021.111140

Povezanost rada

Biologija

Poveznice
Indeksiranost