Schaerlaeken Vicky, Meyers Jay J, Herrel Anthony
Department of Biology, University of Antwerp, Universiteitsplein 1, B-2610 Antwerpen, Belgium.
Zoology (Jena). 2007;110(2):127-38. doi: 10.1016/j.zool.2006.09.002. Epub 2007 Mar 23.
Most organisms feed on a variety of prey that may differ dramatically in their physical and behavioural characteristics (e.g. mobility, mass, texture, etc.). Thus the ability to modulate prey capture behaviour in accordance with the characteristics of the food appears crucial. In animals that use rapid tongue movements to capture prey (frogs and chameleons), the coordination of jaws and tongue is based on visual cues gathered prior to the prey capture event. However, most iguanian lizards have much slower tongue-based prey capture systems suggesting that sensory feedback from the tongue may play an important role in coordinating jaw and tongue movements. We investigated the modulation of prey capture kinematics in the agamid lizard Pogona vitticeps when feeding on a range of food items differing in their physical characteristics. As the lizard is a dietary generalist, we expected it to be able to modulate its prey capture kinematics as a function of the (mechanical) demands imposed by the prey. Additionally, we investigated the role of lingual sensory feedback by transecting the trigeminal sensory afferents. Our findings demonstrated that P. vitticeps modulates its prey capture kinematics according to specific prey properties (e.g. size). In addition, transection of the trigeminal sensory nerves had a strong effect on prey capture kinematics. However, significant prey type effects and prey type by transection effects suggest that other sources of sensory information are also used to modulate the prey capture kinematics in P. vitticeps.
大多数生物以各种各样的猎物为食,这些猎物在物理和行为特征(如移动性、质量、质地等)上可能有很大差异。因此,根据食物特征调节猎物捕获行为的能力显得至关重要。在利用快速舌头运动捕获猎物的动物(青蛙和变色龙)中,颌骨和舌头的协调基于猎物捕获事件之前收集的视觉线索。然而,大多数鬣蜥科蜥蜴的基于舌头的猎物捕获系统要慢得多,这表明来自舌头的感觉反馈可能在协调颌骨和舌头运动中发挥重要作用。我们研究了鬃狮蜥(Pogona vitticeps)在捕食一系列物理特征不同的食物时,其猎物捕获运动学的调节情况。由于这种蜥蜴是杂食性动物,我们预计它能够根据猎物施加的(机械)需求来调节其猎物捕获运动学。此外,我们通过切断三叉神经感觉传入纤维来研究舌感觉反馈的作用。我们的研究结果表明,鬃狮蜥会根据特定的猎物属性(如大小)来调节其猎物捕获运动学。此外,三叉神经感觉神经的切断对猎物捕获运动学有强烈影响。然而显著的猎物类型效应以及切断与猎物类型的交互效应表明,其他感觉信息来源也被用于调节鬃狮蜥的猎物捕获运动学。