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The Evolution of Chemical Alarm Signals: Attracting Predators Benefits Alarm Signal Senders

机译:化学警报信号的演变:吸引捕食者使警报信号发送者受益

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摘要

Abstract.-A wide variety of organisms possess damage-released alarm pheromones that evoke antipredator responses in conspecifics. Understanding the evolution of such involuntary alarm signals has been perplexing because it is difficult to see direct benefits to the sender, notwith- standing benefits derived from warning relatives. Recently, it has been proposed that the alarm pheromone, or Schreckstoff, of Ostariophysan fishes may function in a fashion analogous to distress calls of many birds and mammals. The alarm pheromone may attract secondary preda- tors to the proximity of the primary predation event, and, once there, the secondary predators may disrupt the predation event, thus allowing the prey greater opportunity to escape. Previous findings have established that the alarm pheromone of fathead minnows (Pimephales promelas) attracts predators, including northern pike (Esox lucius) to an area. In this study we demonstrate that the probability that fathead minnows will escape after being captured by a northern pike is significantly increased through interference by a second pike. Taken with the previous findings that alarm pheromone attracts predators, these results are the first to provide empirical evidence of benefits to senders of an involuntary alarm signal
机译:摘要-各种各样的生物体都具有破坏释放的警报信息素,这些信息素引起特定物种的反掠食者反应。了解这种非自愿警报信号的发展一直很困惑,因为很难看到对发送者的直接好处,尽管有来自警告亲戚的好处。最近,已经提出,Ostariophysan鱼的警报信息素或Schreckstoff可以类似于许多鸟类和哺乳动物的遇险呼叫的方式起作用。警报信息素可能将次要捕食者吸引到主要捕食事件的附近,一旦到达,次要捕食者可能破坏捕食事件,从而使猎物有更大的逃脱机会。先前的发现已经确定,黑头min(Pimephales promelas)的警报信息素会吸引包括北派克(Esox lucius)在内的捕食者到该地区。在这项研究中,我们证明了head鱼被北部派克捕获后逃逸的可能性通过第二个派克的干扰而大大增加。根据先前的发现,即信息素吸引了捕食者,这些结果首次为非自愿警报信号的发送者提供了有益的经验证据。

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