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首页> 外文期刊>The Journal of Experimental Biology >Timing of praying mantis evasive responses during simulated bat attack
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Timing of praying mantis evasive responses during simulated bat attack

机译:在模拟蝙蝠袭击中螳螂躲避反应的时间安排

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Praying mantids perform evasive maneuvers that vary with the level of danger posed by their bat predators. The vocalization pattern of attacking bats provides cues that mantids can potentially use to decide how and when to respond. Using pulse trains simulating bat attack echolocation sequences, this study determines when in the attack sequence the mantis power dive (its response to high-level threat) occurs and predicts the parameters within the echolocation sequence that are important for eliciting the response. For sequences with a rapid transition from low to high pulse repetition rates (PRRs), the evasive response occurred close to the point during the simulated sequence when the bat would have contacted the mantis. However, the evasive response occurred earlier if the transition was gradual. Regardless of the transition type, the prediction data show that sequences trigger the response when PRRs reach 20-40 pulses s(-1). These results suggest that a bat gradually increasing its PRR could 'tip off' the mantis, enabling it to escape. Attack sequences contain gradual transitions when bats engage in strobing behavior, an echolocation phenomenon that may help the bat perceive the auditory scene. Conversely, bat attack sequences that contain rapid increases in PRR close to the point of capture could circumvent the mantid's auditory defense. Based on these findings, mantids as well as other insects could benefit from having a back-up defense response to offset any advantage the bat gains by rapidly switching from low to high PRRs.
机译:螳螂会进行回避动作,这些动作随蝙蝠掠食者所构成的危险程度而变化。攻击蝙蝠的发声模式提供了线索,螳螂可以用来决定如何以及何时做出回应。本研究使用模拟蝙蝠攻击回声定位序列的脉冲序列,确定了在攻击序列中何时发生螳螂跳水(其对高级别威胁的响应),并预测了回声定位序列中对于引起响应很重要的参数。对于具有从低脉冲重复频率(PRR)到高脉冲重复频率(PRR)的快速过渡的序列,在蝙蝠本应与螳螂接触的模拟序列中,回避反应发生在接近该点的位置。但是,如果过渡是渐进的,则回避反应会较早发生。无论过渡类型如何,预测数据均显示,当PRR达到20-40个脉冲s(-1)时,序列会触发响应。这些结果表明,逐渐增加其PRR的蝙蝠可能会“翻倒”螳螂,使其逃脱。当蝙蝠进行频闪行为时,攻击序列会逐渐过渡,这是一种回声定位现象,可能有助于蝙蝠感知听觉场景。相反,蝙蝠攻击序列的PRR迅速增加,接近捕获点,可能会绕开螳螂的听觉防御。基于这些发现,螳螂和其他昆虫可以通过快速从低PRR切换到高PRR来弥补后备蝙蝠获得的任何优势,从而受益于后备防御反应。

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