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暹罗斗鱼(Betta splendens)的捕食后处理。

Prey processing in the Siamese fighting fish (Betta splendens).

机构信息

Department of Biology, Hofstra University, Hempstead, NY 11549, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2013 Jul;199(7):641-51. doi: 10.1007/s00359-013-0819-5. Epub 2013 Apr 24.

Abstract

We studied prey processing in the Siamese fighting fish (Betta splendens), involving slow, easily observed head-bobbing movements, which were compared with prey processing in other aquatic feeding vertebrates. We hypothesized that head-bobbing is a unique prey-processing behaviour, which alternatively could be structurally and functionally analogous with raking in basal teleosts, or with pharyngognathy in neoteleosts. Modulation of head-bobbing was elicited by prey with different motility and toughness. Head-bobbing involved sustained mouth occlusion and pronounced cranial elevation, similar to raking. However, the hyoid and pectoral girdle were protracted, and not retracted as in both raking and pharyngognathy. High-speed videofluoroscopy of hyoid movements confirmed that head-bobbing differs from other known aquatic prey-processing behaviours. Nevertheless, head-bobbing and other prey-processing behaviours converge on a recurrent functional theme in the trophic ecology of aquatic feeding vertebrates; the use of intraoral and oropharyngeal dentition surfaces to immobilize, reduce and process relatively large, tough or motile prey. Prey processing outside the pharyngeal region has not been described for neoteleosts previously, but morphological evidence suggests that relatives of Betta might use similar processing behaviours. Thus, our results suggest that pharyngognathy did not out-compete ancestral prey-processing mechanisms completely during the evolution of neoteleosts.

摘要

我们研究了暹罗斗鱼(Betta splendens)的捕食处理行为,其中涉及到缓慢、易于观察的头部摆动动作,并将其与其他水生脊椎动物的捕食处理行为进行了比较。我们假设头部摆动是一种独特的捕食处理行为,它可能在结构和功能上与基干硬骨鱼类的耙动行为类似,或者与新鳍亚纲鱼类的咽颌捕食行为类似。通过不同运动能力和坚韧度的猎物来诱发头部摆动的调制。头部摆动涉及持续的口部闭合和明显的头部抬高,类似于耙动。然而,舌骨和胸带被伸展,而不像耙动和咽颌捕食那样回缩。对舌骨运动的高速荧光透视录像证实,头部摆动与其他已知的水生捕食处理行为不同。尽管如此,头部摆动和其他捕食处理行为在水生摄食脊椎动物的营养生态学中收敛于一个共同的功能主题;利用口腔内和口咽腔的齿面来固定、减少和处理相对较大、坚韧或运动的猎物。新鳍亚纲鱼类的咽后区域的捕食处理行为以前没有被描述过,但形态学证据表明,Betta 的亲缘关系可能使用类似的处理行为。因此,我们的结果表明,在新鳍亚纲鱼类的进化过程中,咽颌捕食并没有完全淘汰祖先的捕食处理机制。

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