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An exception to the matched filter hypothesis: A mismatch of male call frequency and female best hearing frequency in a torrent frog

机译:匹配滤波器假说的一个例外:洪流蛙中男性的呼叫频率和女性的最佳听力频率不匹配

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摘要

The matched filter hypothesis proposes that the tuning of auditory sensitivity and the spectral character of calls will match in order to maximize auditory processing efficiency during courtship. In this study, we analyzed the acoustic structure of male calls and both male and female hearing sensitivities in the little torrent frog (Amolops torrentis), an anuran species who transmits acoustic signals across streams. The results were in striking contradiction to the matched filter hypothesis. Auditory brainstem response results showed that the best hearing range was 1.6–2 kHz consistent with the best sensitive frequency of most terrestrial lentic taxa, yet completely mismatched with the dominant frequency of conspecific calls (4.3 kHz). Moreover, phonotaxis tests show that females strongly prefer high‐frequency (4.3 kHz) over low‐frequency calls (1.6 kHz) regardless of ambient noise levels, although peripheral auditory sensitivity is highest in the 1.6–2 kHz range. These results are consistent with the idea that A. torrentis evolved from nonstreamside species and that high‐frequency calls evolved under the pressure of stream noise. Our results also suggest that female preferences based on central auditory system characteristics may evolve independently of peripheral auditory system sensitivity in order to maximize communication effectiveness in noisy environments.
机译:匹配的过滤器假设提出,听觉灵敏度的调整和呼叫的频谱特征将匹配,以便在求爱时最大化听觉处理效率。在这项研究中,我们分析了小洪蛙(Amolops torrentis)中的雄性叫声的声学结构以及男女的听觉敏感性,这是一种无极性物种,可以在溪流中传播声信号。结果与匹配的过滤器假设大相径庭。听觉脑干反应结果表明,最佳听觉范围为1.6–2 kHz,与大多数陆地小透镜类群的最佳敏感频率一致,但与特定呼叫的主导频率(4.3 kHz)完全不匹配。此外,声光测验表明,尽管周围听觉灵敏度在1.6–2 kHz范围内最高,但无论环境噪声水平如何,女性都强烈偏爱高频(4.3 kHz)而不是低频通话(1.6 kHz)。这些结果与A.torrent是从非河边物种进化而来的,高频呼叫是在河流噪声的压力下进化的想法相一致的。我们的研究结果还表明,基于中央听觉系统特征的女性偏爱可能会独立于周围听觉系统的敏感性而发展,以便在嘈杂的环境中最大化沟通效率。

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