狮子鱼(Pterois spp.)发声所涉及肌肉的结构和发育见解。

IF 2 3区 农林科学 Q2 FISHERIES
Roxanne B Holmes, Nadia M Hamilton, Katharine E Criswell, Keturah Z Smithson, James E Herbert-Read, Lucille Chapuis
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引用次数: 0

摘要

声音信号是鱼类一种重要的交流方式。狮子鱼群中的两种狮子鱼,印度太平洋狮子鱼(Pterois volitans)和红狮子鱼(Pterois miles),都可以通过附着在鳔上的声音肌肉发出不同类型的声音。然而,在这些入侵物种中,这些发声的具体机制和功能仍然未知。我们使用三维生物成像来描述这两个物种的声音肌肉的解剖结构。我们进一步量化了P. volitans的肌肉,以具体探索肌肉是如何在个体发育过程中发育的,并验证了声音肌肉如果是一种性选择特征,就会表现出性别二态性的假设。P. volitans和P. miles都有一个生理发育的膀胱,两侧对称的一对外源音膀胱肌肉(essm),这被认为是控制浮力和产生发声的肌肉。这两个物种还显示出一对额外的前外源性肌肉,它们从脊柱背侧伸出,插入到膀胱前壁,可能也在声音产生中起作用。两种类型的音肌在个体发育过程中均存在。对volitans的后腹肌的定量分析表明,成熟和未成熟个体的后腹肌的长度和质量都随着体型的增加而线性增加。个体间在声学肌肉投资方面没有个体发生或性别差异。考虑到这些肌肉的主要功能是控制膀胱的浮力,这可能限制了这些肌肉相对于身体大小的修改,或者它们在性别或个体发育之间的声学功能可能没有差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural and developmental insights into the muscles involved in lionfish (Pterois spp.) vocalisations.

Vocal signalling is an important mode of communication in fishes. The two species of lionfish in the Pterois complex, the Indo-Pacific lionfish (Pterois volitans) and the red lionfish (Pterois miles), are both known to produce different types of sounds with sonic muscles attached to the swimbladder. However, the specific mechanism and the functions of these vocalisations in these invasive species are still unknown. We used three-dimensional bioimaging to describe the anatomy of the sonic muscles of both species. We further quantified the muscles of P. volitans to specifically explore how muscles developed across ontogeny and to test the hypothesis that sonic muscles would show sexual dimorphism if they were a sexually selected trait. Both P. volitans and P. miles showed a physoclistous swimbladder with a bilaterally symmetric pair of extrinsic sonic swimbladder muscles (ESSMs), which have been suggested to control buoyancy and generate vocalisations. Both species also displayed an additional pair of anterior extrinsic muscles, which projected dorsoventrally from the spinal column and inserted onto the anterior wall of the swimbladder, potentially also having a role in sound production. Both types of sonic muscles were present across ontogeny. Quantification of the posterior belly of the ESSMs in P. volitans showed that both the length and mass of these muscles in both mature and immature individuals increased linearly with body size. There were no ontogenetic or sex differences in sonic muscle investment between individuals. Given the primary function of these muscles is to control the swimbladder for buoyancy, this may constrain the modification of these muscles relative to body size, or they may have no differences in their acoustic function between sexes or across ontogeny.

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来源期刊
Journal of fish biology
Journal of fish biology 生物-海洋与淡水生物学
CiteScore
4.00
自引率
10.00%
发文量
292
审稿时长
3 months
期刊介绍: The Journal of Fish Biology is a leading international journal for scientists engaged in all aspects of fishes and fisheries research, both fresh water and marine. The journal publishes high-quality papers relevant to the central theme of fish biology and aims to bring together under one cover an overall picture of the research in progress and to provide international communication among researchers in many disciplines with a common interest in the biology of fish.
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