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传粉者的运动模式是如何从认知与环境的相互作用中产生的。

How pollinator movement patterns emerge from the interaction between cognition and the environment.

作者信息

Mailly Juliane, Riotte-Lambert Louise, Lihoreau Mathieu

机构信息

Research Center on Animal Cognition (CRCA), Center for Integrative Biology (CBI); CNRS, Toulouse University, Toulouse, France.

CEFE, CNRS, Univ Montpellier, EPHE, IRD, Montpellier, France.

出版信息

Proc Biol Sci. 2025 Apr;292(2044):20242271. doi: 10.1098/rspb.2024.2271. Epub 2025 Apr 9.

Abstract

Nectar-feeding insects, birds and mammals develop complex foraging patterns, such as repetitive multi-destination routes known as 'traplines'. While this behaviour likely influences animals' foraging success and plant mating patterns, its drivers and prevalence across species and environments remain poorly understood. Through a systematic literature review, we show that pollinators display varying degrees of movement repetitiveness. Then, using a cognitively realistic agent-based model that we parametrized with data from bee foraging studies, we demonstrate how the interplay between cognition, competition, resource distribution and nectar renewal rate can generate various foraging patterns. Our model predicts greater movement repetitiveness when floral resources are scarce and spread in space, nectar renews quickly and competition is low. These findings challenge assumptions about the prevalence of strict traplining in behavioural studies and random pollinator movements in pollination models. We discuss how a deeper understanding of the diversity of pollinator movements can improve predictions of plant mating patterns to inform precision agriculture and conservation efforts.

摘要

以花蜜为食的昆虫、鸟类和哺乳动物会形成复杂的觅食模式,比如被称为“陷阱线”的重复性多目的地路线。虽然这种行为可能会影响动物的觅食成功率和植物的交配模式,但其驱动因素以及在不同物种和环境中的普遍程度仍知之甚少。通过系统的文献综述,我们发现传粉者表现出不同程度的运动重复性。然后,我们使用一个基于认知现实的、用蜜蜂觅食研究数据进行参数化的主体模型,展示了认知、竞争、资源分布和花蜜更新率之间的相互作用如何产生各种觅食模式。我们的模型预测,当花卉资源稀缺且分布在空间中、花蜜更新迅速且竞争较小时,运动重复性会更高。这些发现挑战了行为研究中关于严格陷阱线普遍存在以及授粉模型中传粉者随机运动的假设。我们讨论了如何更深入地理解传粉者运动的多样性,以改进对植物交配模式的预测,为精准农业和保护工作提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b13e/11978460/6f1a5ecfabb4/rspb.2024.2271.f001.jpg

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