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Interspecific variation of warning calls in piranhas: a comparative analysis

机译:食人鱼预警信号的种间变化:比较分析

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摘要

Fish sounds are known to be species-specific, possessing unique temporal and spectral features. We have recorded and compared sounds in eight piranha species to evaluate the potential role of acoustic communication as a driving force in clade diversification. All piranha species showed the same kind of sound-producing mechanism: sonic muscles originate on vertebrae and attach to a tendon surrounding the bladder ventrally. Contractions of the sound-producing muscles force swimbladder vibration and dictate the fundamental frequency. It results the calling features of the eight piranha species logically share many common characteristics. In all the species, the calls are harmonic sounds composed of multiple continuous cycles. However, the sounds of Serrasalmus elongatus (higher number of cycles and high fundamental frequency) and S. manueli (long cycle periods and low fundamental frequency) are clearly distinguishable from the other species. The sonic mechanism being largely conserved throughout piranha evolution, acoustic communication can hardly be considered as the main driving force in the diversification process. However, sounds of some species are clearly distinguishable despite the short space for variations supporting the need for specific communication. Behavioural studies are needed to clearly understand the eventual role of the calls during spawning events.
机译:鱼的声音是特定于物种的,具有独特的时间和频谱特征。我们已经记录并比较了八个食人鱼物种中的声音,以评估声通信作为进化枝多样化的驱动力的潜在作用。所有食人鱼物种都表现出相同的发声机制:声波肌肉起源于椎骨,并附着于围绕膀胱的肌腱。产生声音的肌肉的收缩迫使泳囊振动并决定基本频率。结果表明,八个食人鱼物种的呼唤特征在逻辑上具有许多共同特征。在所有种类中,这些声音都是由多个连续周期组成的和声。然而,Serrasalmus elongatus(较高的循环数和较高的基频)的声音和S. manueli(较长的周期和较低的基频)的声音可以与其他物种区分开。在食人鱼的整个进化过程中,音速机制都得到了很大程度的保留,因此,声音传播几乎不能被视为多样化过程中的主要驱动力。然而,尽管变体空间短,支持特定的沟通需求,但某些物种的声音仍可清晰地区分。需要进行行为研究以清楚地了解产卵过程中呼叫的最终作用。

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