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Using Nutritional Geometry to Explore How Social Insects Navigate Nutritional Landscapes

机译:使用营养几何学探索社会昆虫如何在营养景观中导航

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摘要

Insects face many cognitive challenges as they navigate nutritional landscapes that comprise their foraging environments with potential food items. The emerging field of nutritional geometry (NG) can help visualize these challenges, as well as the foraging solutions exhibited by insects. Social insect species must also make these decisions while integrating social information (e.g., provisioning kin) and/or offsetting nutrients provisioned to, or received from unrelated mutualists. In this review, we extend the logic of NG to make predictions about how cognitive challenges ramify across these social dimensions. Focusing on ants, we outline NG predictions in terms of fundamental and realized nutritional niches, considering when ants interact with related nestmates and unrelated bacterial, fungal, plant, and insect mutualists. The nutritional landscape framework we propose provides new avenues for hypothesis testing and for integrating cognition research with broader eco-evolutionary principles.
机译:昆虫在营养环境中导航时面临许多认知挑战,这些营养环境构成了具有潜在食物的觅食环境。营养几何学(NG)的新兴领域可以帮助可视化这些挑战以及昆虫展示的觅食解决方案。社交昆虫物种还必须在整合社交信息(例如,供应亲戚)和/或抵消提供给或从不相关的互惠主义者那里获得的营养时做出这些决定。在本文中,我们扩展了NG的逻辑,以预测认知挑战如何在这些社会维度上产生影响。着重于蚂蚁,我们考虑了蚂蚁何时与相关的巢伙伴以及无关的细菌,真菌,植物和昆虫互惠生互动,从而从基本和已实现的营养方面概述了NG预测。我们提出的营养景观框架为假设检验以及将认知研究与更广泛的生态进化原理相结合提供了新途径。

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