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首页> 外文期刊>The Journal of Experimental Biology >Electrocommunication in pulse Gymnotiformes: the role of electric organ discharge (EOD) time course in species identification
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Electrocommunication in pulse Gymnotiformes: the role of electric organ discharge (EOD) time course in species identification

机译:脉冲Gymnotiformes的电通电:电器官排放(EOD)时间课程在物种鉴定中的作用

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Understanding how individuals detect and recognize signals emitted by conspecifics is fundamental to discussions of animal communication. The species pair Gymnotus omarorum and Brachyhypopomus gauderio, found in syntopy in Uruguay, emit species-specific electric organ discharge (EOD) that can be sensed by both species. The aim of this study was to unveil whether either of these species is able to identify a conspecific EOD, and to investigate distinctive recognition signal features. We designed a forced-choice experiment using a natural behavior (i.e. tracking electric field lines towards their source) in which each fish had to choose between a conspecific and a heterospecific electric field. We found a clear pattern of preference for a conspecific waveform even when pulses were played within 1 Hz of the same rate. By manipulating the time course of the explored signals, we found that the signal features for preference between conspecific and heterospecific waveforms were embedded in the time course of the signals. This study provides evidence that pulse Gymnotiformes can recognize a conspecific exclusively through species-specific electrosensory signals. It also suggests that the key signal features for species differentiation are probably encoded by burst coder electroreceptors. Given these results, and because receptors are sharply tuned to amplitude spectra and also tuned to phase spectra, we extend the electric color hypothesis used in the evaluation of objects to apply to communication signals.
机译:了解个人如何检测和识别Compecifics发出的信号是对动物通信讨论的基础。物种对Gymnotus Omarorum和Brachyhypomus gauderio在乌拉圭语法中发现,发出物种特异性电器官排出(EOD),​​可以由这两种物种感测。本研究的目的是揭开这些物种中的任何一种能够识别出色的EOD,并调查独特的识别信号特征。我们设计了一种使用自然行为的强制选择实验(即跟踪朝向其来源的电场线),其中每种鱼必须在一个异常和异相电气场之间进行选择。我们发现即使在相同速率的1 Hz内发挥脉冲,也发现了一种明确的偏好模式。通过操纵探索信号的时间过程,我们发现在信号的时间过程中嵌入了基本和异质波形之间的偏好的信号特征。本研究提供了证据,即脉冲Gymnotiformes可以专门通过特定于特定的电读信号来识别出的尖性。它还表明,物种差异的关键信号特征可能是由突发编码器电磁体编码的。鉴于这些结果,并且因为受体急剧调谐到幅度谱并调整到相位谱,所以我们延长了对物体评估的电气颜色假设来应用于通信信号。

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