Functional heterogeneity facilitates effectual collective task performance in a worker-polymorphic ant

IF 2.5 3区 环境科学与生态学 Q2 BEHAVIORAL SCIENCES
Takuto Sakai, Isaac Planas-Sitjà, Adam L Cronin
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Abstract

Effective coordination of group actions underlies the success of group-living organisms. Recent studies of animal personality have shown that groups composed of individuals with different behavioral propensities can outperform uniform groups in a range of different tasks, but we have only a rudimentary understanding of how differences in individual behavior influence the behavior of the group as a whole. In this study, we use natural variation in behavioral propensity among morphologically distinct worker castes of the small carpenter ant Camponotus yamaokai to shed new light on this. Iterative testing indicated that ants displayed consistent behavioral differences among individuals and between castes, with major workers exhibiting a lower exploratory tendency than minors. By constructing groups of different caste composition and quantifying their performance in the task of colony emigration, we show that group performance is an asymmetric humped function of caste ratio, with optimal performance achieved by groups with natural caste ratios. Using a simulation model based on our empirical data, we demonstrate that interindividual differences in social attraction and exploratory tendency are sufficient to explain the observed patterns. Our results provide new insights into how group performance in collective tasks can vary with group composition.
功能异质性促进了工态蚂蚁有效的集体任务绩效
群体行动的有效协调是群居生物成功的基础。最近对动物个性的研究表明,由不同行为倾向的个体组成的群体在一系列不同的任务中表现优于统一的群体,但我们对个体行为差异如何影响整体群体的行为只有初步的了解。在这项研究中,我们利用形态不同的小木蚁(camonotus yamaokai)工种之间行为倾向的自然变化来阐明这一点。迭代测试表明,蚂蚁在个体和等级之间表现出一致的行为差异,主要工蚁的探索倾向低于未成年工蚁。通过构建不同种姓组成的群体并量化其在群体迁移任务中的绩效,我们发现群体绩效是种姓比例的非对称驼峰函数,自然种姓比例的群体绩效最优。利用基于实证数据的模拟模型,我们证明了社会吸引力和探索倾向的个体间差异足以解释观察到的模式。我们的研究结果为团队在集体任务中的表现如何随团队组成而变化提供了新的见解。
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来源期刊
Behavioral Ecology
Behavioral Ecology 环境科学-动物学
CiteScore
5.20
自引率
8.30%
发文量
93
审稿时长
3.0 months
期刊介绍: Studies on the whole range of behaving organisms, including plants, invertebrates, vertebrates, and humans, are included. Behavioral Ecology construes the field in its broadest sense to include 1) the use of ecological and evolutionary processes to explain the occurrence and adaptive significance of behavior patterns; 2) the use of behavioral processes to predict ecological patterns, and 3) empirical, comparative analyses relating behavior to the environment in which it occurs.
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