Einstein Center for Neurosciences, Charité - Universitätsmedizin Berlin, 10117Berlin, Germany.
J Exp Biol. 2024 Aug 15;227(16). doi: 10.1242/jeb.247782. Epub 2024 Aug 26.
Acoustic signalling, integral to intraspecific communication and reproductive behaviour, undergoes notable changes during an animal's ontogenetic development. The onset and progression of this maturation in fish remains poorly understood. Here, we investigated the ontogeny of acoustic communication in the miniature teleost Danionella cerebrum, one of the smallest known vertebrates and an emerging model organism. Its adult males produce audible clicks that appear in sequences with a repetition rate of ∼60 or ∼120 Hz, caused by consecutive unilateral or alternating bilateral compressions of the swim bladder. To investigate the maturation of this ability, we performed long-term sound recordings and morphological studies of the sound production apparatus in D. cerebrum throughout its ontogenetic development. We found that fish start producing clicks during the second month of their lives and continually increase their abundance and structured repetition over the course of the following 1 to 2 months. The sound production machinery, including specialised bone and cartilage structures, starts to form in males after approximately 4 weeks and prior to reaching sexual maturity. Although clicks increase in amplitude as animals mature, click repetition rates of 60 and 120 Hz are stable throughout development. This suggests fully mature pattern generation in juvenile males, yet a continued development of the drumming apparatus capable of creating louder sounds.
声信号是种内交流和繁殖行为的基础,在动物的个体发育过程中会发生显著变化。鱼类这种成熟过程的开始和进展仍然知之甚少。在这里,我们研究了小型硬骨鱼 Danionella cerebrum 的声学通讯的个体发生,它是已知最小的脊椎动物之一,也是一种新兴的模式生物。其成年雄性会发出可听见的咔哒声,这些咔哒声以 60 或 120 Hz 的重复率出现在序列中,这是由连续单侧或交替双侧压缩鳔引起的。为了研究这种能力的成熟,我们在 Danionella cerebrum 的整个个体发育过程中进行了长期的声音记录和发声器官的形态学研究。我们发现,鱼类在生命的第二个月开始发出咔哒声,并在接下来的 1 到 2 个月内不断增加它们的数量和结构化重复。包括专门的骨骼和软骨结构在内的发声机制在雄性大约 4 周后形成,在此之前,它们尚未达到性成熟。尽管随着动物的成熟,咔哒声的幅度会增加,但 60 和 120 Hz 的咔哒重复率在整个发育过程中是稳定的。这表明幼鱼雄性已经完全成熟的模式生成,但发声器官的持续发展仍能够产生更响亮的声音。