Institute of Evolutionary Biology and Environmental Studies, University of Zurich, Winterthurerstrasse 190, 8057 Zurich, Switzerland.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2012 Nov;198(11):841-6. doi: 10.1007/s00359-012-0750-1. Epub 2012 Sep 13.
Chemical signaling is a vital mode of communication for most organisms, including larval amphibians. However, few studies have determined the identity or source of chemical compounds signaling amphibian defensive behaviors, in particular, whether alarm pheromones can be actively secreted from tadpoles signaling danger to conspecifics. Here we exposed tadpoles of the common toad Bufo bufo and common frog Rana temporaria to known cues signaling predation risk and to potential alarm pheromones. In both species, an immediate reduction in swimming activity extending over an hour was caused by chemical cues from the predator Aeshna cyanea (dragonfly larvae) that had been feeding on conspecific tadpoles. However, B. bufo tadpoles did not detectably alter their behavior upon exposure to potential alarm pheromones, neither to their own skin secretions, nor to the abundant predator-defense peptide bradykinin. Thus, chemicals signaling active predation had a stronger effect than general alarm secretions of other common toad tadpoles. This species may invest in a defensive strategy alternative to communication by alarm pheromones, given that Bufonidae are toxic to some predators and not known to produce defensive skin peptides. Comparative behavioral physiology of amphibian alarm responses may elucidate functional trade-offs in pheromone production and the evolution of chemical communication.
化学信号是大多数生物体(包括幼体两栖动物)进行通讯的重要方式。然而,很少有研究确定发出两栖动物防御行为信号的化学化合物的身份或来源,特别是警报信息素是否可以由发出危险信号的蝌蚪主动分泌。在这里,我们将普通蟾蜍 Bufo bufo 和普通青蛙 Rana temporaria 的蝌蚪暴露于已知的表示捕食风险的线索和潜在的警报信息素下。在这两个物种中,来自捕食者 Aeshna cyanea(蜻蜓幼虫)的化学线索(捕食了同种的蝌蚪)导致游泳活动立即减少,持续了一个多小时。然而,B. bufo 蝌蚪在接触潜在的警报信息素时,无论是自身的皮肤分泌物还是丰富的防御肽 bradykinin,都没有明显改变它们的行为。因此,发出主动捕食信号的化学物质比其他普通蟾蜍蝌蚪的一般警报分泌物的影响更强。鉴于 Bufonidae 对一些捕食者有毒,并且不被认为会产生防御性皮肤肽,该物种可能会投资于一种替代警报信息素通讯的防御策略。对两栖动物警报反应的比较行为生理学可能阐明了信息素产生和化学通讯进化中的功能权衡。