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深入探究双重功能:蓑鲉用于调节浮力和发声的鱼鳔肌肉。

Diving into dual functionality: Swim bladder muscles in lionfish for buoyancy and sonic capabilities.

作者信息

Parmentier Eric, Herrel Anthony, Banse Marine, Hornstra Heidie, Bertucci Frédéric, Lecchini David

机构信息

Laboratory of Functional and Evolutionary Morphology, FOCUS, University of Liège, Liège, Belgium.

Département Adaptations du Vivant, Bâtiment, UMR 7179 MECADEV C.N.R. S/M.N.H.N., d'Anatomie Comparée, Paris, France.

出版信息

J Anat. 2024 Feb;244(2):249-259. doi: 10.1111/joa.13963. Epub 2023 Oct 27.

Abstract

Although the primary function of the swim bladder is buoyancy, it is also involved in hearing, and it can be associated with sonic muscles for voluntary sound production. The use of the swim bladder and associated muscles in sound production could be an exaptation since this is not its first function. We however lack models showing that the same muscles can be used in both movement and sound production. In this study, we investigate the functions of the muscles associated with the swim bladder in different Pteroinae (lionfish) species. Our results indicate that Pterois volitans, P. radiata and Dendrochirus zebra are able to produce long low-frequency hums when disturbed. The deliberate movements of the fin spines during sound production suggest that these sounds may serve as aposematic signals. In P. volitans and P. radiata, hums can be punctuated by intermittent louder pulses called knocks. Analysis of sonic features, morphology, electromyography and histology strongly suggest that these sounds are most likely produced by muscles closely associated with the swim bladder. These muscles originate from the neurocranium and insert on the posterior part of the swim bladder. Additionally, cineradiography supports the hypothesis that these same muscles are involved in altering the swim bladder's length and angle, thereby influencing the pitch of the fish body and participating in manoeuvring and locomotion movements. Fast contraction of the muscle should be related to sound production whereas sustained contractions allows modifications in swim bladder shape and body pitch.

摘要

虽然鱼鳔的主要功能是提供浮力,但它也参与听觉,并且可能与用于主动发声的发声肌肉有关。在发声过程中使用鱼鳔和相关肌肉可能是一种适应性功能转变,因为这并非其最初的功能。然而,我们缺乏模型来表明相同的肌肉可同时用于运动和发声。在本研究中,我们调查了不同蓑鲉属(狮子鱼)物种中与鱼鳔相关的肌肉的功能。我们的结果表明,当受到干扰时,魔鬼蓑鲉、辐射蓑鲉和斑马多棘蓑鲉能够发出长时间的低频嗡嗡声。发声过程中鳍棘的刻意运动表明这些声音可能用作警戒信号。在魔鬼蓑鲉和辐射蓑鲉中,嗡嗡声可能会被称为敲击声的间歇性更大脉冲打断。对声音特征、形态学、肌电图和组织学的分析强烈表明,这些声音很可能是由与鱼鳔紧密相关的肌肉产生的。这些肌肉起源于脑颅并附着在鱼鳔的后部。此外,X射线动态摄影支持了这样的假设,即这些相同的肌肉参与改变鱼鳔的长度和角度,从而影响鱼体的俯仰,并参与机动和运动动作。肌肉的快速收缩应与发声有关,而持续收缩则可改变鱼鳔的形状和身体俯仰。

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