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Phylogenetic comparative analysis of electrocommunication signals in ghost knife fishes (Gymnotiformes : Apteronotidae)

机译:幽灵刀鱼中电子通讯信号的系统发育比较分析(弓形目:Apteronotidae)

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摘要

Electrocommunication signals in electric fish are diverse, easily recorded and have well-characterized neural control. Two signal features, the frequency and waveform of the electric organ discharge (EOD), vary widely across species. Modulations of the EOD (i.e. chirps and gradual frequency rises) also function as active communication signals during social interactions, but they have been studied in relatively few species. We compared the electrocommunication signals of 13 species in the largest gymnotiform family, Apteronotidae. Playback stimuli were used to elicit chirps and rises. We analyzed EOD frequency and waveform and the production and structure of chirps and rises. Species diversity in these signals was characterized with discriminant function analyses, and correlations between signal parameters were tested with phylogenetic comparative methods. Signals varied markedly across species and even between congeners and populations of the same species. Chirps and EODs were particularly evolutionarily labile, whereas rises differed little across species. Although all chirp parameters contributed to species differences in these signals, chirp amplitude modulation, frequency modulation (FM) and duration were particularly diverse. Within this diversity, however, interspecific correlations between chirp parameters suggest that mechanistic trade-offs may shape some aspects of signal evolution. In particular, a consistent trade-off between FM and EOD amplitude during chirps is likely to have influenced the evolution of chirp structure. These patterns suggest that functional or mechanistic linkages between signal parameters (e.g. the inability of electromotor neurons increase their firing rates without a loss of synchrony or amplitude of action potentials) constrain the evolution of signal structure.
机译:电鱼中的电通信信号种类繁多,易于记录并且具有良好的神经控制功能。两种信号特征,即电子器官放电(EOD)的频率和波形,在物种之间差异很大。 EOD的调制(即线性调频和逐渐增加的频率)在社交互动过程中也起着积极的交流信号的作用,但在相对较少的物种中进行了研究。我们比较了最大的裸齿form科(Apteronotidae)中13种物种的电通信信号。回放刺激用于引起chi和上升。我们分析了EOD频率和波形以及and和上升的产生和结构。通过判别函数分析来表征这些信号中的物种多样性,并使用系统发育比较方法测试信号参数之间的相关性。信号在不同物种之间甚至在同一物种的同类和种群之间均存在显着差异。 rp和EOD在进化上特别不稳定,而物种间的上升差异很小。尽管所有线性调频参数均会导致这些信号中的物种差异,但是线性调频幅度调制,频率调制(FM)和持续时间尤其多样化。但是,在这种多样性范围内,线性调频脉冲参数之间的种间相关性表明,机械权衡可能会影响信号演化的某些方面。特别是,在chi期间FM和EOD振幅之间的一致权衡很可能影响了influence结构的演变。这些模式表明信号参数之间的功能或机制联系(例如,电动神经元的失能会增加其放电率,而不会失去同步或动作电位的幅度)会限制信号结构的演变。

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