Sasaki Takao, Hölldobler Bert, Millar Jocelyn G, Pratt Stephen C
Department of Zoology, University of Oxford, South Parks Road, Oxford OX1 3PS, UK School of Life Sciences and Center for Social Dynamics and Complexity, Arizona State University, Tempe, AZ 85287, USA
School of Life Sciences and Center for Social Dynamics and Complexity, Arizona State University, Tempe, AZ 85287, USA Biocenter, Behavioral Physiology and Sociobiology, University of Würzburg, D-97074 Würzburg, Germany.
J Exp Biol. 2014 Sep 15;217(Pt 18):3229-36. doi: 10.1242/jeb.106849. Epub 2014 Jul 10.
Because collective cognition emerges from local signaling among group members, deciphering communication systems is crucial to understanding the underlying mechanisms. Alarm signals are widespread in the social insects and can elicit a variety of behavioral responses to danger, but the functional plasticity of these signals has not been well studied. Here we report an alarm pheromone in the ant Temnothorax rugatulus that elicits two different behaviors depending on context. When an ant was tethered inside an unfamiliar nest site and unable to move freely, she released a pheromone from her mandibular gland that signaled other ants to reject this nest as a potential new home, presumably to avoid potential danger. When the same pheromone was presented near the ants' home nest, they were instead attracted to it, presumably to respond to a threat to the colony. We used coupled gas chromatography/mass spectrometry to identify candidate compounds from the mandibular gland and tested each one in a nest choice bioassay. We found that 2,5-dimethylpyrazine was sufficient to induce rejection of a marked new nest and also to attract ants when released at the home nest. This is the first detailed investigation of chemical communication in the leptothoracine ants. We discuss the possibility that this pheromone's deterrent function can improve an emigrating colony's nest site selection performance.
由于群体认知源自群体成员之间的局部信号传递,因此破译通信系统对于理解其潜在机制至关重要。警报信号在社会性昆虫中广泛存在,并且能够引发对危险的各种行为反应,但是这些信号的功能可塑性尚未得到充分研究。在此,我们报告了皱纹胸切叶蚁中的一种警报信息素,它会根据环境引发两种不同的行为。当一只蚂蚁被拴在一个不熟悉的巢穴地点且无法自由移动时,它会从下颌腺释放一种信息素,向其他蚂蚁发出信号,拒绝将这个巢穴作为潜在的新家园,大概是为了避免潜在危险。当在蚂蚁的主巢附近释放相同的信息素时,它们反而会被吸引,大概是为了应对蚁群面临的威胁。我们使用气相色谱/质谱联用技术从下颌腺中鉴定出候选化合物,并在巢穴选择生物测定中对每一种进行了测试。我们发现2,5 - 二甲基吡嗪足以促使蚂蚁拒绝标记的新巢穴,并且当在主巢释放时也能吸引蚂蚁。这是对细胸蚁化学通讯的首次详细研究。我们讨论了这种信息素的威慑功能能够改善迁移蚁群巢穴选址性能的可能性。