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耐力游泳表现的功能形态和鲀形目鱼类步态转换策略。

Functional morphology of endurance swimming performance and gait transition strategies in balistoid fishes.

机构信息

Department of Organismal Biology and Anatomy, University of Chicago, Chicago, IL 60637, USA.

Department of Organismal Biology and Anatomy, University of Chicago, Chicago, IL 60637, USA

出版信息

J Exp Biol. 2019 Apr 24;222(Pt 8):jeb194704. doi: 10.1242/jeb.194704.

Abstract

Triggerfishes and filefishes (Balistoidea) use balistiform locomotion to power steady swimming with their dorsal and anal fins, and transition to a gait dominated by body and caudal fin (BCF) kinematics at high speeds. Fin and body shapes are predicted to be strong determinants of swimming performance and gait transitions. The goal of this study was to combine morphometrics and critical swimming tests to explore the relationships between fin and body shapes and swimming performance in a phylogenetic context in order to understand the evolution of balistiform swimming. Among 13 species of balistoid fishes, those with high aspect ratio fins tended to achieve higher critical swimming speeds than fishes with low aspect ratio fins. Species with long, large median fins and wide caudal peduncles used the balistiform gait alone for a larger percentage of their total critical swimming speed than fishes with short, small median fins and narrow caudal peduncles. Although analyses revealed overall positive relationships between median fin aspect ratios and gait transition speeds, fishes on both ends of the aspect ratio spectrum achieved higher swimming speeds using the balistiform gait alone than fishes with median fins of intermediate aspect ratios. Each species is specialized for taking advantage of one gait, with balistiform specialists possessing long, large median fins capable of the large power requirements of high-speed swimming using the median fins alone, while BCF specialists possess short, small median fins, ill-suited for powering high-speed balistiform locomotion, but narrow caudal peduncles capable of efficient caudal fin oscillations to power high-speed locomotion.

摘要

扳机鱼和箱鲀(Balistoidea)利用箭形游动来驱动背鳍和臀鳍的稳定游泳,并在高速时过渡到以身体和尾鳍(BCF)运动学为主导的步态。鳍和身体形状被预测为游泳性能和步态转变的重要决定因素。本研究的目的是结合形态测量学和临界游泳测试,在系统发育背景下探讨鳍和身体形状与游泳性能之间的关系,以了解箭形游泳的进化。在 13 种扳机鱼中,具有高纵横比鳍的鱼类往往比具有低纵横比鳍的鱼类达到更高的临界游泳速度。具有长而大的中央鳍和宽尾柄的物种在其总临界游泳速度中单独使用箭形步态的比例比具有短而小的中央鳍和窄尾柄的物种更大。尽管分析显示中央鳍纵横比与步态转换速度之间存在总体上的正相关关系,但在纵横比谱的两端,使用箭形步态的鱼类比具有中间纵横比中央鳍的鱼类达到更高的游泳速度。每个物种都专门利用一种步态,箭形专业物种具有长而大的中央鳍,能够单独使用中央鳍满足高速游泳的高动力需求,而 BCF 专业物种具有短而小的中央鳍,不适合为高速箭形游动提供动力,但具有狭窄的尾柄,能够有效地摆动尾鳍来推动高速运动。

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