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首页> 外文期刊>Bioacoustics: The International Journal of Animal Sound and its Recording >Auditory sensitivity changes with diurnal temperature variation in little torrent frogs (Amolops torrentis)
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Auditory sensitivity changes with diurnal temperature variation in little torrent frogs (Amolops torrentis)

机译:听觉敏感性随着小洪流青蛙的昼夜温度变化而变化(Amolops Torrentis)

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Temperature fluctuation affects physiology and behaviour in ectotherms. Previous studies revealed that the phonotactic preference of female frogs was affected by temperature fluctuations; however, the corresponding plasticity of peripheral auditory sensitivity is unclear. In the present study, the auditory sensitivity of little torrent frogs (Amolops torrentis) was tested by auditory brainstem responses (ABRs) in both natural warm and cold conditions. The threshold and latency of the ABRs evoked by tone pips ranging from 1.0-7.0 kHz and clicks were compared between these two conditions. The results showed that ABR thresholds were higher and latencies were longer at cold compared to those at warm temperatures for relatively low frequencies (1.8-2.6 kHz), while no significant differences existed at relatively high frequencies (3.0-7.0 kHz). Our previous study showed that the best hearing frequency range of the little torrent frog is 1.6-2.0 kHz, whereas females behaviourally prefer higher frequencies (4.3 kHz). These results indicate that temperature fluctuations in natural habitats can change auditory sensitivity around the best hearing range (1.6-2.0 kHz), while they do not affect the female-preferred frequency range (4.3 kHz). Our results demonstrate that auditory frequency sensitivity exhibits diurnal temperature-dependent plastic changes, which may be adaptive for diurnal reproductive behaviour in this species.
机译:温度波动会影响异常的生理学和行为。以前的研究表明,雌性青蛙的音牙偏好受温度波动的影响;然而,外围听觉灵敏度的相应可塑性尚不清楚。在本研究中,在天然温暖和寒冷的条件下,通过听觉脑干响应(ABR)测试小洪流青蛙(Amolops Torrentis)的听觉敏感性。通过音调点引起的ABR的阈值和等待时间范围从1.0-7.0 kHz和点击比较这两个条件。结果表明,与相对较低的频率(1.8-2.6kHz)的温热温度下,ABR阈值较高,延迟较长,但在相对高频(3.0-7.0kHz)中没有显着差异。我们以前的研究表明,小洪流青蛙的最佳听力频率范围为1.6-2.0 kHz,而女性则行为较高频率(4.3 kHz)。这些结果表明,天然栖息地的温度波动可以在最佳听力范围(1.6-2.0 kHz)周围改变听觉灵敏度,而它们不会影响女性优选的频率范围(4.3 kHz)。我们的结果表明,听觉频率敏感性表现出昼夜温度依赖性塑性变化,这可能适应该物种中的昼夜生殖行为。

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