首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Decision making in the face of a deadly predator: high-amplitude behavioural thresholds can be adaptive for rainforest crickets under high background noise levels
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Decision making in the face of a deadly predator: high-amplitude behavioural thresholds can be adaptive for rainforest crickets under high background noise levels

机译:面对致命捕食者的决策:高幅度行为阈值可以为高背景噪音水平下的雨林蟋蟀适应

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Many insect families have evolved ears that are adapted to detect ultrasonic calls of bats. The acoustic sensory cues indicating the presence of a bat are then used to initiate bat avoidance behaviours. Background noise, in particular at ultrasonic frequencies, complicates these decisions, since a response to the background may result in costly false alarms. Here, we quantify bat avoidance responses of small rainforest crickets (Gryllidae, Trigoniinae), which live under conditions of high levels of ultrasonic background noise. Their bat avoidance behaviour exhibits markedly higher thresholds than most other studied eared insects. Their responses do not qualitatively differ at suprathreshold amplitudes up to sound pressure levels of 105 dB. Moreover, they also exhibit evasive responses to single, high-frequency events and do not require the repetitive sequence of ultrasonic calls typical for the search phase of bat echolocation calls. Analysis of bat and katydid sound amplitudes and peak frequencies in the crickets' rainforest habitat revealed that the cricket's behavioural threshold would successfully reject the katydid background noise. Using measurements of the crickets' echo target strength for bat predators, we calculated the detection distances for both predators and prey. Despite their high behavioural threshold, the cricket prey still has a significant detection advantage at frequencies between 20 and 40 kHz. The low-amplitude bat calls they ignore are no predation threat because even much louder calls would be detected before the bat would hear the cricket echo. This leaves ample time for evasive actions. Thus, a simple decision criterion based on a high-amplitude behavioural threshold can be adaptive under the high background noise levels in nocturnal rainforests, in avoiding false alarms and only missing detection for bat calls too far away to pose a risk.
机译:许多昆虫家庭具有演进的耳朵,适合检测蝙蝠的超声波呼叫。然后使用指示存在蝙蝠的声学感官提示来启动BAT避免行为。背景噪声,特别是在超声波频率上,使这些决定复杂化,因为对背景的响应可能导致昂贵的误报。在这里,我们量化蝙蝠避免小型雨林蟋蟀(Gryllidae,Trigoniinae)的反应,其生活在高水平超声波背景噪声的条件下。他们的蝙蝠避免行为表现出比大多数其他研究的耳昆虫更高的门槛。它们的反应在Suprathreshold幅度上的反应不会在达到105dB的声压水平的巨大幅度下不同。此外,它们还表现出对单频,高频事件的求响应,并且不需要典型的超声波呼叫的重复序列,以便蝙蝠回声呼叫的搜索阶段。蝙蝠和Katydid声音幅度和蟋蟀雨林栖息地峰值频率的分析显示,板球的行为阈值将成功地拒绝Katydid背景噪音。使用蝙蝠捕食者的蟋蟀回声目标强度的测量,我们计算了捕食者和猎物的检测距离。尽管具有高行为阈值,但蟋蟀猎物仍然在20至40kHz之间的频率下具有显着的检测优势。他们忽略的低幅度蝙蝠呼叫是没有捕食威胁,因为在蝙蝠听到板球回声之前,将在蝙蝠之前进行更大的呼叫。这留下了充足的时间以获得逃避行为。因此,基于高幅度行为阈值的简单决策标准可以在夜间雨林的高背景下适应,在避免虚假警报,并且仅丢失对蝙蝠呼叫的检测太远以造成风险。

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