Injury shortens life expectancy in ants and affects some risk-related decisions of workers

IF 1.9 2区 生物学 Q3 BEHAVIORAL SCIENCES
Filip Turza, Krzysztof Miler
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Abstract

The Formica cinerea ants are known to be highly territorial and aggressively defend their nest and foraging areas against other ants. During the foraging, workers engage in large-scale battles with other colonies of ants and injuries often occur in the process. Such injuries open the body up to pathologies and can lead to costs expressed in lower survival. Here, we addressed the significance of injury in dictating decisions related to engagement in risky behavior in ants (i.e., rescue and aggression). We manipulated the life expectancies of F. cinerea workers by injury and found that the survival of injured workers was shorter compared to the intact individuals. Furthermore, we found that injured workers discriminated between the intact and injured nestmates and showed more rescue behavior toward intact individuals. These rescue actions were expressed as digging around the trapped ant in need of rescue, pulling at its body parts, transporting the sand covering it, and biting the thread entrapping it. In turn, intact and injured workers showed similar and high levels of aggression toward heterospecifics. Our findings highlight the role of behavioral context in the studies devoted to the decision-making processes among social insects and the importance of life expectancy in their behavioral patterns.

Abstract Image

伤害缩短了蚂蚁的预期寿命,并影响了工人的一些风险相关决策
众所周知,灰蚁具有高度的领地性,并积极保护自己的巢穴和觅食区免受其他蚂蚁的攻击。在觅食过程中,工人们与其他蚂蚁群体进行大规模的战斗,在这个过程中经常会受伤。这种损伤会使身体出现病理,并可能导致生存率降低的成本。在这里,我们讨论了伤害在决定蚂蚁参与危险行为(即救援和攻击)相关决策中的重要性。我们通过伤害操纵了灰葡萄球菌工人的预期寿命,发现受伤工人的存活时间比完好工人更短。此外,我们发现受伤的工作人员区分了完整的和受伤的巢友,并对完整的个体表现出更多的救援行为。这些救援行动表现为在被困蚂蚁周围挖掘需要救援的蚂蚁,拉动它的身体部位,运送覆盖它的沙子,咬诱捕它的线。反过来,完好和受伤的工人对异性异性表现出相似且高度的攻击性。我们的研究结果强调了行为背景在社会昆虫决策过程研究中的作用,以及预期寿命在其行为模式中的重要性。
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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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