Nest excavators’ learning walks in the Australian desert ant Melophorus bagoti

IF 1.9 2区 生物学 Q3 BEHAVIORAL SCIENCES Animal Cognition Pub Date : 2024-05-24 DOI:10.1007/s10071-024-01877-3
Sudhakar Deeti, Donald James McLean, Ken Cheng
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Abstract

The Australian red honey ant, Melophorus bagoti, stands out as the most thermophilic ant in Australia, engaging in all outdoor activities during the hottest periods of the day during summer months. This species of desert ants often navigates by means of path integration and learning landmark cues around the nest. In our study, we observed the outdoor activities of M. bagoti workers engaged in nest excavation, the maintenance of the nest structure, primarily by taking excess sand out of the nest. Before undertaking nest excavation, the ants conducted a single exploratory walk. Following their initial learning expedition, these ants then engaged in nest excavation activities. Consistent with previous findings on pre-foraging learning walks, after just one learning walk, the desert ants in our study demonstrated the ability to return home from locations 2 m away from the nest, although not from locations 4 m away. These findings indicate that even for activities like dumping excavated sand within a range of 5–10 cm outside the nest, these ants learn and utilize the visual landmark panorama around the nest.

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澳大利亚沙漠蚂蚁 Melophorus bagoti 的蚁巢挖掘者学习步行。
澳大利亚红蜜蚁(Melophorus bagoti)是澳大利亚最耐高温的蚂蚁,在夏季一天中最热的时段从事所有户外活动。这种沙漠蚂蚁通常通过整合路径和学习巢穴周围的地标线索来导航。在我们的研究中,我们观察了巴戈蒂蚁工蚁的户外活动,它们从事巢穴挖掘和巢穴结构维护工作,主要是清除巢穴中多余的沙子。在进行巢穴挖掘之前,蚂蚁先进行了一次探索性行走。在初步学习考察之后,这些蚂蚁又开始了巢穴挖掘活动。与之前关于觅食前学习行走的研究结果一致,在我们的研究中,沙漠蚂蚁只进行了一次学习行走后,就能从离巢穴2米远的地方返回家园,但不能从4米远的地方返回家园。这些发现表明,即使是在巢外5-10厘米的范围内倾倒挖出的沙子等活动,这些蚂蚁也能学习和利用巢周围的视觉地标全景。
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来源期刊
Animal Cognition
Animal Cognition 生物-动物学
CiteScore
4.50
自引率
18.50%
发文量
125
审稿时长
4-8 weeks
期刊介绍: Animal Cognition is an interdisciplinary journal offering current research from many disciplines (ethology, behavioral ecology, animal behavior and learning, cognitive sciences, comparative psychology and evolutionary psychology) on all aspects of animal (and human) cognition in an evolutionary framework. Animal Cognition publishes original empirical and theoretical work, reviews, methods papers, short communications and correspondence on the mechanisms and evolution of biologically rooted cognitive-intellectual structures. The journal explores animal time perception and use; causality detection; innate reaction patterns and innate bases of learning; numerical competence and frequency expectancies; symbol use; communication; problem solving, animal thinking and use of tools, and the modularity of the mind.
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