Co-adaptation of electric organ discharges and chirps in South American ghost knifefishes (Apteronotidae)

Jacquelyn M. Petzold , Gary Marsat , G. Troy Smith
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引用次数: 14

Abstract

Animal communication signals that simultaneously share the same sensory channel are likely to co-evolve to maximize the transmission of each signal component. Weakly electric fish continuously produce a weak electric field that functions in communication. Fish modulate the electric organ discharge (EOD) on short timescales to produce context-specific signals called chirps. EODs and chirps are simultaneously detected by electroreceptors and processed in the electrosensory system. We analyzed these signals, first to explore whether EOD waveform is encoded in the signal received by electroreceptors and then to examine how EODs and chirps interact to influence conspicuousness. Our findings show that gross discrimination of sinusoidal from complex EOD waveforms is feasible for all species, but fine discrimination of waveform may be possible only for species with waveforms of intermediate complexity. The degree of chirp frequency modulation and chirp relative decay strongly influenced chirp conspicuousness, but other chirp parameters were less influential. The frequency difference between the interacting EODs also strongly impacted chirp conspicuousness. Finally, we developed a method for creating hybrid chirp/EOD combinations to independently analyze the impact of chirp species, EOD species, and EOD difference frequency on chirp conspicuousness. All three components and their interactions strongly influenced chirp conspicuousness, which suggests that evolutionary changes in parameters of either chirps or EODs are likely to influence chirp detection. Examining other environmental factors such as noise created by fish movement and species-typical patterns of sociality may enrich our understanding of how interacting EODs affect the detection and discrimination of chirps across species.

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南美鬼刀鱼(翼鱼科)电器官放电与啁啾的共同适应
同时共享同一感觉通道的动物交流信号可能会共同进化以最大限度地传输每个信号成分。弱电鱼不断地产生一种用于交流的弱电场。鱼类在短时间内调节电器官放电(EOD),以产生特定于环境的信号,称为啁啾。爆炸物和啁啾同时被电感受器检测并在电感觉系统中处理。我们分析了这些信号,首先探讨了EOD波形是否编码在电感受器接收的信号中,然后研究了EOD和啁啾如何相互作用以影响显著性。我们的研究结果表明,从复杂的EOD波形中大致区分正弦波对所有物种都是可行的,但精细的波形区分可能只对波形具有中等复杂程度的物种是可能的。啁啾调频程度和啁啾相对衰减对啁啾显著性影响较大,而其他啁啾参数对啁啾显著性影响较小。相互作用eod之间的频率差异也强烈影响啁啾的显著性。最后,我们开发了一种创建混合啁啾/EOD组合的方法,以独立分析啁啾种类、EOD种类和EOD差频对啁啾显著性的影响。这三种成分及其相互作用强烈影响啁啾的显著性,这表明啁啾或eod参数的进化变化可能影响啁啾检测。研究其他环境因素,如鱼类运动产生的噪音和物种典型的社交模式,可以丰富我们对相互作用的eod如何影响跨物种啁啾的探测和辨别的理解。
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来源期刊
Journal of Physiology-Paris
Journal of Physiology-Paris 医学-神经科学
CiteScore
2.02
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: Each issue of the Journal of Physiology (Paris) is specially commissioned, and provides an overview of one important area of neuroscience, delivering review and research papers from leading researchers in that field. The content will interest both those specializing in the experimental study of the brain and those working in interdisciplinary fields linking theory and biological data, including cellular neuroscience, mathematical analysis of brain function, computational neuroscience, biophysics of brain imaging and cognitive psychology.
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Editorial Automated detection of high-frequency oscillations in electrophysiological signals: Methodological advances Digital hardware implementation of a stochastic two-dimensional neuron model Recent progress in multi-electrode spike sorting methods Retrospectively supervised click decoder calibration for self-calibrating point-and-click brain–computer interfaces
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