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白蚁群体同步飞行中社会交互作用的意义。

The significance of social interactions in synchronized swarming flight in a termite.

机构信息

Department of Entomology and Plant Pathology, Auburn University, Auburn, AL, USA.

Laboratory of Insect Ecology, Graduate School of Agriculture, Kyoto University, Kyoto, Japan.

出版信息

Biol Lett. 2024 Nov;20(11):20240423. doi: 10.1098/rsbl.2024.0423. Epub 2024 Nov 20.

Abstract

In social insects, individuals of working caste coordinate their actions to manage various collective tasks. Such collective behaviours exist not only in workers but also in winged reproductives (alates). During certain seasons, newly emerged alates fly from the nest to disperse and find mating partners in a synchronized manner. This 'swarming' behaviour is one of the collective behaviours that involve the greatest number of individuals in social insects. However, such synchronization is considered to be caused by the response to specific environmental cues rather than behavioural coordination among colony members. Here, we show that a termite shows synchronized dispersal flight among alates within the same colony even under the constant temperature environment. Under the semi-field environment with fluctuating temperatures, alates within the same colony synchronized their dispersal flight under higher temperatures, while flight was suppressed under lower temperatures. We observed that termites synchronized their dispersal flights even under constant temperature conditions in the laboratory (20℃), indicating that environmental cues are not always necessary for synchronization. In either case, higher synchronization happened with a larger number of alates. These results suggest that social factors interplay with environmental cues to enable the synchronized swarming flight of social insects.

摘要

在社会性昆虫中,工蚁个体协调它们的行动来管理各种集体任务。这种集体行为不仅存在于工蚁中,也存在于有翅繁殖蚁(飞蚁)中。在某些季节,新出现的飞蚁从巢中飞出,以同步的方式分散并寻找交配伙伴。这种“群飞”行为是社会性昆虫中涉及个体数量最多的集体行为之一。然而,这种同步性被认为是对特定环境线索的反应,而不是蚁群成员之间的行为协调。在这里,我们表明,即使在恒温环境下,白蚁也会表现出同一蚁群内飞蚁的同步分散飞行。在具有波动温度的半野外环境中,同一蚁群内的飞蚁在较高温度下同步分散飞行,而在较低温度下则抑制飞行。我们观察到,白蚁即使在实验室(20℃)的恒温条件下也能同步分散飞行,这表明环境线索并非总是同步所必需的。在任何一种情况下,飞蚁数量越多,同步性就越高。这些结果表明,社会因素与环境线索相互作用,使社会性昆虫能够进行同步的群飞。

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