Institute for Biology, Karl-Franzens-University Graz, Graz 8010 ST, Austria
Center for Mind/Brain Sciences, University of Trento, Rovereto 38068 TN, Italy.
eNeuro. 2024 Jul 10;11(7). doi: 10.1523/ENEURO.0062-24.2024. Print 2024 Jul.
The zebrafish, a widely used model in neurobiology, relies on hearing in aquatic environments. Unfortunately, its auditory pathways have mainly been studied in larvae. In this study, we examined the involvement of the anterior tuberal nucleus (AT) in auditory processing in adult zebrafish. Our tract-tracing experiments revealed that the dorsal subdivision of AT is strongly bidirectionally connected to the central nucleus of the torus semicircularis (TSc), a major auditory nucleus in fishes. Immunohistochemical visualization of the ribosomal protein S6 (pS6) phosphorylation to map neural activity in response to auditory stimulation substantiated this finding: the dorsal but not the ventral part of AT responded strongly to auditory stimulation. A similar response to auditory stimulation was present in the TSc but not in the nucleus isthmi, a visual region, which we used as a control for testing if the pS6 activation was specific to the auditory stimulation. We also measured the time course of pS6 phosphorylation, which was previously unreported in teleost fish. After auditory stimulation, we found that pS6 phosphorylation peaked between 100 and 130 min and returned to baseline levels after 190 min. This information will be valuable for the design of future pS6 experiments. Our results suggest an anatomical and functional subdivision of AT, where only the dorsal part connects to the auditory network and processes auditory information.
斑马鱼是神经生物学中广泛使用的模型生物,其在水生环境中依赖听觉。不幸的是,其听觉通路主要在幼虫中进行研究。在这项研究中,我们研究了前管核(AT)在成年斑马鱼听觉处理中的作用。我们的追踪实验表明,AT 的背部分区与半规管圆丘中央核(TSc)强烈双向连接,TSc 是鱼类的主要听觉核。核糖体蛋白 S6(pS6)磷酸化的免疫组织化学可视化以映射听觉刺激引起的神经活动证实了这一发现:AT 的背侧而非腹侧强烈响应听觉刺激。TSc 中也存在类似的听觉刺激反应,但在视区神经丘(nucleus isthmi)中则没有,我们将其用作测试 pS6 激活是否特定于听觉刺激的对照。我们还测量了 pS6 磷酸化的时间过程,这在以前的硬骨鱼类中尚未报道过。在听觉刺激后,我们发现 pS6 磷酸化在 100-130 分钟之间达到峰值,在 190 分钟后恢复到基线水平。这些信息将对未来的 pS6 实验设计具有重要价值。我们的结果表明 AT 存在解剖和功能上的细分,只有背部分区与听觉网络相连并处理听觉信息。