Université de Lyon/Saint-Étienne, Équipe Neuro-Ethologie Sensorielle, ENES/CNPS, CNRS UMR 8195, 23, rue Paul-Michelon, 42023 Saint-Étienne cedex 2, France.
C R Biol. 2012 Aug;335(8):529-34. doi: 10.1016/j.crvi.2012.06.004. Epub 2012 Jul 21.
While acoustic communication has been described in adults of various fish species, our knowledge about the ontogeny of fish sound production is limited. In adults, sound signals are known to be involved during aggressive interactions. However, aggressive behaviour may appear early in the life of fishes due to the possible competition for food and space. If acoustic signals are used to send information to competitors, sounds are likely to play a role during interactions between juvenile fish as well. The apparition and evolution of sound production were monitored in a group of juveniles of the cichlid fish Metriaclima zebra from hatching to 4 months of age. In addition, the link between vocalizations and agonistic behaviour was studied during dyadic interactions at three different ages. Sounds production appeared to be present early in the development of this fish and increased along with the number of aggressive behaviours. Recorded sounds consisted, in juveniles, in isolated pulses showing a decrease in frequency and duration as the fish grew. In adults, sounds became bursts of pulses but the transition from isolated to repetitive pulses was not observed. These results are compared to the existing literature on sound production ontogeny in fishes.
虽然已经描述了各种鱼类成鱼的声学通讯,但我们对鱼类发声发育的了解是有限的。在成鱼中,声音信号已知在攻击性相互作用中涉及。然而,由于可能对食物和空间的竞争,鱼类在生命早期可能就会表现出攻击性行为。如果声学信号被用来向竞争对手传递信息,那么声音很可能在幼年鱼类之间的相互作用中发挥作用。从孵化到 4 个月大,我们监测了一群慈鲷鱼 Metriaclima zebra 幼鱼的发声出现和进化。此外,在三个不同年龄的对偶相互作用中,研究了发声与攻击性行为之间的联系。在这种鱼类的发育早期,发声就已经存在,并随着攻击性行为的增加而增加。在幼鱼中,记录到的声音由孤立的脉冲组成,随着鱼类的生长,频率和持续时间降低。在成鱼中,声音变成了脉冲爆发,但没有观察到从孤立脉冲到重复脉冲的转变。这些结果与鱼类发声发育的现有文献进行了比较。