Corrales Parada Carlos Daniel, Udovičić Iva, Haschei Giulia, Chagnaud Boris Philippe
Department of Biology, University of Graz, Graz, Austria.
Front Neuroanat. 2025 Aug 14;19:1589687. doi: 10.3389/fnana.2025.1589687. eCollection 2025.
Animals use different communication modalities for social interactions, often showing sensory adaptations linked to their preferred signaling system. How such adaptations affect individual processing centers usually remains elusive due to interspecies differences. One system in which such adaptations can be investigated are catfish. generally use acoustic signals for social communication, but in some species, they generate electric signals. This allows to investigate adaptations of networks associated with social signal detection in closely related species. We investigated potential sensory adaptations in two species ( - SG and - SN) with different communication channels. We tested their behavioral preferences toward different sensory modalities and found strong preferences for conspecifics. To investigate potential adaptations at the cellular level, we focused on the torus semicircularis (TS), a major midbrain sensory hub for auditory and electric sensory processing. We found an increase in projections from the anterior tuberal nucleus (AT) to the lateral TS (TSl, which processes electrosensory information) in SN, but no difference in the projections from the central TS (TSc) to AT in either species. An enhanced density of calcium binding proteins in the TSl was found only in SN. As electrocommunication is a derived communication channel in , our findings suggest that a shift to electric communication may have led to (i) stronger projections to and from sensory regions, and (ii) a change in neurochemical profile, which together might facilitate social signal detection.
动物在社交互动中使用不同的交流方式,通常表现出与其偏好的信号系统相关的感官适应性。由于物种间的差异,这种适应性如何影响个体处理中心通常仍不明确。鲶鱼是一种可以研究这种适应性的系统。鲶鱼一般使用声学信号进行社交交流,但在一些物种中,它们会产生电信号。这使得我们能够研究密切相关物种中与社会信号检测相关的网络适应性。我们研究了具有不同交流通道的两个物种(-SG和-SN)的潜在感官适应性。我们测试了它们对不同感官模式的行为偏好,发现它们对同种个体有强烈的偏好。为了研究细胞水平上的潜在适应性,我们聚焦于半规管隆起(TS),它是中脑用于听觉和电感觉处理的主要感觉中枢。我们发现SN中从前结节核(AT)到外侧TS(TSl,处理电感觉信息)的投射增加,但在这两个物种中,从中央TS(TSc)到AT的投射没有差异。仅在SN中发现TSl中钙结合蛋白的密度增加。由于电通讯是鲶鱼中一种衍生的通讯通道,我们的研究结果表明,向电通讯的转变可能导致(i)与感觉区域之间更强的投射,以及(ii)神经化学特征的变化,这两者共同可能有助于社会信号检测。