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细纹鳎猎物捕获的运动学:所有比目鱼的进食方式都不对称吗?

The kinematics of prey capture in Xystreurys liolepis: do all flatfish feed asymmetrically?

作者信息

Gibb A

出版信息

J Exp Biol. 1996;199(Pt 10):2269-83. doi: 10.1242/jeb.199.10.2269.

Abstract

Previous research has shown that one species of flatfish displays several functional asymmetries of the head and jaws during prey capture. However, it is not known whether the functional asymmetries observed for this species are common to all flatfishes. In order to determine whether functional asymmetry is present in other flatfish taxa, prey-capture behavior was examined in a species of flatfish with little cephalic morphological asymmetry, Xystreurys liolepis (Pleuronectiformes: Paralichthyidae). In addition, X. liolepis is one of a few species of flatfish in which both typical (sinistral) and reversed (dextral) individuals are commonly found. Five individuals (two dextral and three sinistral) of X. liolepis were video-taped feeding at 250 fields s-1 in order to quantify prey-capture kinematics. These data were used to test two hypotheses: (1) that typical and reversed-symmetry individuals have identical prey-capture kinematics, and (2) that X. liolepis exhibit no functional asymmetry during prey capture because they have little morphological asymmetry. Analysis of prey capture indicates that the kinematic variables measured for sinistral and dextral individuals are statistically indistinguishable. In addition, X. liolepis do not exhibit the same suite of functional asymmetries that has been found in a flatfish species with more extreme cephalic morphological asymmetry (Pleuronichthys verticalis). However, asymmetrical anterior movement of the ventral portion of the maxilla does occur in X. liolepis during mouth opening. Examination of osteological preparations and cleared and stained individuals indicates that the maxilla is asymmetrical in length in this species. A simple model indicates that the differential length of the maxilla is sufficient to explain the observed functional asymmetry during prey capture. These results suggest that certain morphological asymmetries of the jaws of flatfishes are modifications for specialized prey-capture behaviors.

摘要

先前的研究表明,一种比目鱼在捕食过程中头部和颌部表现出几种功能不对称。然而,尚不清楚该物种观察到的功能不对称是否在所有比目鱼中都普遍存在。为了确定其他比目鱼分类群中是否存在功能不对称,对一种头部形态不对称较小的比目鱼——光鳞异鳞鲀(Xystreurys liolepis,鲽形目:牙鲆科)的捕食行为进行了研究。此外,光鳞异鳞鲀是少数几种常见典型(左旋)和反向(右旋)个体的比目鱼之一。对五条光鳞异鳞鲀个体(两条右旋和三条左旋)以每秒250帧的速度进行捕食录像,以量化捕食运动学。这些数据用于检验两个假设:(1)典型对称和反向对称个体具有相同的捕食运动学;(2)光鳞异鳞鲀在捕食过程中不表现出功能不对称,因为它们的形态不对称较小。捕食分析表明,左旋和右旋个体测量的运动学变量在统计学上没有差异。此外,光鳞异鳞鲀没有表现出在头部形态不对称更极端的比目鱼物种(垂直褶鲆)中发现的相同功能不对称组合。然而,在光鳞异鳞鲀张口时,上颌腹侧部分确实会出现不对称的向前运动。对骨骼标本以及透明和染色个体的检查表明,该物种上颌长度不对称。一个简单的模型表明,上颌的长度差异足以解释捕食过程中观察到的功能不对称。这些结果表明,比目鱼颌部的某些形态不对称是为专门的捕食行为而进行的适应性改变。

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