Clark Andrew J, Summers Adam P
Evolutionary and Comparative Physiology, Department of Ecology and Evolutionary Biology, 321 Steinhaus Hall, University of California, Irvine, CA 92697-2525, USA.
J Exp Biol. 2007 Nov;210(Pt 22):3897-909. doi: 10.1242/jeb.006940.
As in gnathostomes, the hagfish feeding apparatus includes skeletal, dental and muscular components. In the present study, we examined feeding morphology and kinematics in two hagfish species, Eptatretus stoutii and Myxine glutinosa, representing the two major hagfish lineages. E. stoutii have larger dental plates, larger basal plates, and stronger clavatus muscles (the major dental plate retractor) than M. glutinosa. Despite morphological differences, kinematic profiles are similar in E. stoutii and M. glutinosa. When protracted, the dental plate unfolds and exposes keratinous teeth, which are then embedded in the prey. Once food is grasped, the dental plate is retracted into the mouth. During retraction, the clavatus muscle can generate up to 16 N of force, which exceeds the bite force of some gnathostomes of similar size. In addition to producing high forces with the feeding muscles, hagfish can evert their dental plates to 180 degrees , exceeding the gape angles attained by virtually all gnathostomes, suggesting vertebrate jaws are not the prerequisites for muscle force generation and wide gapes. We propose that dental plate protraction and retraction can be modeled as a fixed pulley that lacks the speed amplification occurring in gnathostome jaws. Hagfish gape cycle times are approximately 1 s, and are longer than those of gnathostomes, suggesting that a functional advantage of jaws is the speed that allows gnathostomes to exploit elusive prey.
与有颌类动物一样,盲鳗的摄食器官包括骨骼、牙齿和肌肉成分。在本研究中,我们研究了两种盲鳗(强壮粘盲鳗和盲鳗)的摄食形态和运动学,它们代表了盲鳗的两个主要谱系。强壮粘盲鳗比盲鳗具有更大的齿板、更大的基板和更强壮的锁肌(主要的齿板回缩肌)。尽管形态存在差异,但强壮粘盲鳗和盲鳗的运动学特征相似。当齿板伸出时,它会展开并露出角质齿,然后将其嵌入猎物中。一旦抓住食物,齿板就会缩回到口中。在回缩过程中,锁肌可产生高达16牛的力,超过了一些体型相似的有颌类动物的咬合力。除了通过摄食肌肉产生强大的力量外,盲鳗还能将其齿板外翻180度,超过了几乎所有有颌类动物所能达到的张口角度,这表明脊椎动物的颌骨并非产生肌肉力量和实现大张口的先决条件。我们提出,齿板的伸出和回缩可以被模拟为一个固定滑轮,它缺乏有颌类动物颌骨中发生的速度放大作用。盲鳗的张口周期约为1秒,比有颌类动物的张口周期更长,这表明颌骨的一个功能优势是其速度,这使得有颌类动物能够捕食难以捉摸的猎物。