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Habitat quality affects sound production and likely distance of detection on coral reefs

机译:生境质量会影响声音的产生,并可能影响珊瑚礁的探测距离

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The interwoven nature of habitats and their acoustic fingerprints (soundscapes) is being increasingly recognized as a key component of animal ecology. Natural soundscapes are crucial for orientation in many different taxa when seeking suitable breeding grounds or settlement habitats. In the marine environment, coral reef noise is an important navigation cue for settling reef fish larvae and is thus a possible driver of reef population dynamics. We explored reef noise across a gradient of reef qualities, tested sound propagation models against field recordings and combined them with fish audiograms to demonstrate the importance of reef quality in determining which reefs larvae are likely to detect. We found that higher-quality reefs were significantly louder and richer in acoustic events (transient content) than degraded reefs, and observed that sound propagated farther with less attenuation than predicted by classic models. We discuss how zones of detection of poor-quality reefs could be reduced by over an order of magnitude compared to healthy reefs. The present study provides new perspectives on the far reaching effects habitat degradation may have on organisms that utilize soundscapes for orientation towards or away from coral reefs, and highlights the value of sound recordings as a cost-effective reef survey and monitoring tool.
机译:栖息地和它们的声学指纹(声景)的交织性质被越来越多地视为动物生态学的关键组成部分。当寻找合适的繁殖地或定居地时,自然声景对于在许多不同的分类中定向至关重要。在海洋环境中,珊瑚礁噪声是解决珊瑚礁鱼幼体的重要航行线索,因此可能是珊瑚礁种群动态的驱动因素。我们探索了整个礁石质量梯度上的礁石噪声,针对现场记录测试了声音传播模型,并将它们与鱼类听力图结合使用,以证明礁石质量在确定可能检测到的礁石幼虫中的重要性。我们发现,高品质的珊瑚礁在声音事件(瞬态含量)方面比退化的珊瑚礁要响亮得多,并且声音丰富得多,并且观察到声音传播的距离远小于经典模型所预测的衰减。我们讨论了与健康的珊瑚礁相比,如何将劣质珊瑚礁的检测区域减少一个数量级。本研究为栖息地退化对利用声景朝向或远离珊瑚礁的生物所产生的深远影响提供了新的观点,并强调了录音作为一种具有成本效益的珊瑚礁调查和监测工具的价值。

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