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首页> 外文期刊>Brain, Behavior, and Immunity >Social management of LPS-induced inflammation in Formica polyctena ants.
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Social management of LPS-induced inflammation in Formica polyctena ants.

机译:LPS诱导的福尔摩卡多尾蚁炎症的社会管理。

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摘要

Invertebrates, and especially insects, constitute valuable and convenient models for the study of the evolutionary roots of immune-related behaviors. With stable conditions in the nest, high population densities, and frequent interactions, social insects such as ants provide an excellent system for examining the spread of pathogens. The evolutionary success of these species raises questions about the behavioral responses of social insects to an infected nestmate. In this experiment, we tested the behavioral changes of the red wood ant Formica polyctena toward an immune-stimulated nestmate. We used bacterial endotoxin (lipopolysaccharides, LPS) to active the innate immune system of individual worker ants without biasing our observation with possible cues or host-manipulation from a living pathogen. We show that LPS-induced immune activation in ants triggers behavioral changes in nestmates. Contrary to what would be expected, we did not find removal strategies (e.g. agonistic behaviors) or avoidance of the pathogenic source, but rather a balance between a limitation of pathogen dissemination (i.e. decreased trophallaxis and locomotion of the LPS-treated ant), and what could constitute the behavioral basis for a "social vaccination" (i.e. increased grooming). This supports the importance of social interactions in resistance to disease in social insects, and perhaps social animals in general.
机译:无脊椎动物,尤其是昆虫,构成了研究免疫相关行为的进化根源的有价值且方便的模型。由于巢中条件稳定,人口密度高且相互作用频繁,蚂蚁等社交昆虫为检查病原体的传播提供了一个极好的系统。这些物种在进化上的成功提出了有关社交昆虫对被感染巢友的行为反应的疑问。在此实验中,我们测试了红木蚁Formica polyctena对免疫刺激的巢伙伴的行为变化。我们使用细菌内毒素(脂多糖,LPS)来激活单个工蚁的先天免疫系统,而不会因活病原体的暗示或宿主操纵而使我们的观察结果产生偏差。我们表明,LPS诱导的蚂蚁免疫激活触发巢伙伴的行为变化。与预期相反,我们没有找到去除策略(例如激动行为)或避免病原体,而是找到了病原体传播限制(即减少的原虫和LPS处理的蚂蚁的运动)之间的平衡,以及什么可以构成“社会疫苗接种”的行为基础(即增加梳理)。这支持了社交互动对于抵抗社交昆虫乃至整个社交动物疾病的重要性。

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