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The effect of individual variation on the structure and function of interaction networks in harvester ants

机译:个体变异对蚂蚁相互作用网络结构和功能的影响

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摘要

Social insects exhibit coordinated behaviour without central control. Local interactions among individuals determine their behaviour and regulate the activity of the colony. Harvester ants are recruited for outside work, using networks of brief antennal contacts, in the nest chamber closest to the nest exit: the entrance chamber. Here, we combine empirical observations, image analysis and computer simulations to investigate the structure and function of the interaction network in the entrance chamber. Ant interactions were distributed heterogeneously in the chamber, with an interaction hot-spot at the entrance leading further into the nest. The distribution of the total interactions per ant followed a right-skewed distribution, indicating the presence of highly connected individuals. Numbers of ant encounters observed positively correlated with the duration of observation. Individuals varied in interaction frequency, even after accounting for the duration of observation. An ant's interaction frequency was explained by its path shape and location within the entrance chamber. Computer simulations demonstrate that variation among individuals in connectivity accelerates information flow to an extent equivalent to an increase in the total number of interactions. Individual variation in connectivity, arising from variation among ants in location and spatial behaviour, creates interaction centres, which may expedite information flow.
机译:社会昆虫表现出协调的行为而没有中央控制。个人之间的局部互动决定了他们的行为并调节了殖民地的活动。使用简短的触角接触网络,在最靠近巢穴出口的巢穴中(即进入巢穴),招募收割蚁进行外部工作。在这里,我们结合经验观察,图像分析和计算机模拟来研究进入室中相互作用网络的结构和功能。蚂蚁的相互作用在室内异质分布,入口处的相互作用热点进一步通向巢穴。每个蚂蚁的总互动分布遵循右偏分布,表明存在高度关联的个体。观察到的蚂蚁遭遇次数与观察时间呈正相关。即使考虑了观察时间,个体的交互频率也有所不同。蚂蚁的相互作用频率由其进入室内的路径形状和位置来解释。计算机模拟表明,连接性之间个体之间的差异会加速信息流,其程度相当于增加了交互总数。蚂蚁在位置和空间行为上的变化会导致连通性的个体变化,从而形成交互中心,从而加快信息流。

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