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首页> 外文期刊>Behavioral Ecology and Sociobiology >Electrosensory prey detention in the African sharptooth catfish, Clarias gariepinus (Clariidae), of a weakly electric mormyrid fish, the bulldog (Marcusenius macrolepidotus)
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Electrosensory prey detention in the African sharptooth catfish, Clarias gariepinus (Clariidae), of a weakly electric mormyrid fish, the bulldog (Marcusenius macrolepidotus)

机译:在非洲锐齿cat鱼Clarias gariepinus(Clariidae)中,电感应猎物将一条弱电的蠕虫鱼斗牛犬(Marcusenius macrolepidotus)拘留

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摘要

During their seasonal runs in the Okavango and other freshwater bodies in southern Africa, the sharptooth catfish, Clarias gariepinus, specialises on the bulldog, Marcusenius macrolepidotus, as its main prey. We examined whether the catfish can locate bulldogs by detecting their pulse-type electric organ discharges (EODs). The electrosensory threshold for single-cycle, monopolar square-wave pulses was exceedingly low (down to 13 #mu# V_(p-p)/cm for 4-ms pulses) in trained, foodrewarded sharptooth catfish (n=4), confirming the results of Lissmann and machin who were, however, unable to identify a biological function. Other stimulus pulse waveforms (single-cycle, monopolar as well as bipolar sine-wave pulses) were also effective stimuli according totheir spectral low-frequency energy contents (0-30 Hz). Male bulldogs display an EOD pulse approximately 10X the duration of female EODs (=0.5 ms). The C. gariepinus threshold for field-recorded playbacks of a male bulldog EOD (of long duration) was 103#mu# V)(p-p)/cm, whereas the brief female and juvenile EODs were not detected (using intensities of natural EODs). EODs of other mormyrids were detected when either monopolar or of long duration. Signal source amplitude increased linearly with standardlength (SL) in bulldogs. Signal reach, as calculated from signal source amplitude and receiver sensitivity, is up to 150 cm for a large male bulldog (SL 27.5 cm), and 83 cm for a male that has just turned sexually mature (SL 12.6 cm). Therefore, most bulldogs eaten by catfish are probably male, in agreement with the size distribution of bulldogs found in catfish stomachs. These results suggest that sharptooth catfish rely havily on their acute electrical sense during hunting, and an important function for electroreception in an African catfish has been identified.
机译:尖齿cat鱼Clarias gariepinus在Okavango和南部非洲其他淡水水域的季节性活动中,主要捕食牛头犬Marcusenius macrolepidotus。我们检查了fish鱼是否可以通过检测其脉冲型电子器官放电(EOD)来定位斗牛犬。在经过训练的,有食物奖励的锐齿cat鱼中,单周期单极性方波脉冲的电感应阈值极低(对于4 ms脉冲,低至13#mu#V_(pp)/ cm),证实了结果Lissmann和machin的研究者,但是他们无法确定其生物学功能。其他刺激脉冲波形(单周期,单极性和双极性正弦波脉冲)也是根据其频谱低频能量含量(0-30 Hz)的有效刺激。雄性斗牛犬显示的EOD脉冲大约是雌性EOD持续时间(= 0.5 ms)的10倍。现场记录的雄性斗牛犬EOD(长时间)回放的C. gariepinus阈值为103#mu#V)(pp)/ cm,而未检测到短暂的雌性和少年EOD(使用自然EOD的强度) 。当单极或持续时间较长时,会检测到其他虫害的EOD。在牛头犬中,信号源幅度随标准长度(SL)线性增加。根据信号源幅度和接收器灵敏度计算得出的信号范围,对于大型雄性斗牛犬(SL为27.5 cm),可达150厘米;对于刚刚性成熟的雄性斗牛犬(SL为12.6 cm),可达83厘米。因此,cat鱼吃掉的大多数牛头犬可能是雄性,这与cat鱼胃中发现的牛头犬的大小分布一致。这些结果表明,锐齿cat鱼在狩猎过程中高度依赖于其敏锐的电觉,并且已经确定了非洲cat鱼中重要的电接收功能。

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