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Alarm Pheromone Composition and Behavioral Activity in Fungus-Growing Ants

机译:真菌生长蚂蚁的报警信息素组成和行为活动

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摘要

Chemical communication is a dominant method of communication throughout the animal kingdom and can be especially important in group-living animals in which communicating threats, either from predation or other dangers, can have large impacts on group survival. Social insects, in particular, have evolved a number of pheromonal compounds specifically to signal alarm. There is predicted to be little selection for interspecific variation in alarm cues because individuals may benefit from recognizing interspecific as well as conspecific cues and, consequently, alarm cues are not normally thought to be used for species or nestmate recognition. Here, we examine the composition of the alarm pheromones of seven species of fungus-growing ants (Attini), including both basal and derived species and examine the behavioral responses to alarm pheromone of Acromyrmex leaf-cutting ants, the sister genus to the highly studied Atta leaf-cutting ants. We find surprisingly high interspecific variation in alarm pheromone composition across the attine phylogeny. Interestingly, the active component of the alarm pheromone was different between the two leaf-cutting ant genera. Furthermore, in contrast to previous studies on Atta, we found no differences among morphological castes in their responses to alarm pheromone in Acromyrmex but we did find differences in responses among putative age classes. The results suggest that the evolution of alarm communication and signaling within social insect clades can be unexpectedly complex and that further work is warranted to understand whether the evolution of different alarm pheromone compounds is adaptive.Electronic supplementary materialThe online version of this article (doi:10.1007/s10886-017-0821-4) contains supplementary material, which is available to authorized users.
机译:化学交流是整个动物界交流的一种主要方式,在群体生活的动物中尤其重要,在这种动物中,交流的威胁(无论是捕食还是其他危险)都可能对群体的生存产生重大影响。尤其是社交昆虫,已经进化出许多信息素化合物专门用于发出警报信号。预测对于警报线索中的种间变异几乎没有选择,因为个体可能会从识别种间线索和同种线索中受益,因此,警报线索通常不被认为用于物种或巢穴识别。在这里,我们研究了7种真菌生长蚂蚁(Attini)的警报信息素的组成,包括基础物种和衍生物种,并研究了对Acromyrmex切叶蚂蚁(对高度研究的姐妹属)的警报信息素的行为响应。阿塔切叶蚁。我们发现整个attine系统发育中的警报信息素组成中的种间差异极高。有趣的是,两个切叶蚁属之间警报信息素的活性成分不同。此外,与以前关于Atta的研究相比,我们发现形态种姓在Acromyrmex中对警报信息素的反应没有差异,但在假定年龄组之间确实发现了差异。结果表明,社交昆虫进化枝中警报通讯和信号的演变可能出乎意料地复杂,因此有必要进行进一步的研究以了解不同警报信息素化合物的演变是否具有适应性。电子补充材料本文的在线版本(doi:10.1007) / s10886-017-0821-4)包含补充材料,授权用户可以使用。

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