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集体系统中通信进化的生态原则。

Ecological principles for the evolution of communication in collective systems.

机构信息

Department of Ecology & Evolutionary Biology, Princeton University , Princeton, NJ 08544, USA.

Department of Biology, University of Pennsylvania , Philadelphia, PA 19104, USA.

出版信息

Proc Biol Sci. 2024 Oct;291(2032):20241562. doi: 10.1098/rspb.2024.1562. Epub 2024 Oct 9.

Abstract

Communication allows members of a collective to share information about their environment. Advanced collective systems, such as multicellular organisms and social insect colonies, vary in whether they use communication at all and, if they do, in what types of signals they use, but the origins of these differences are poorly understood. Here, we develop a theoretical framework to investigate the evolution and diversity of communication strategies under collective-level selection. We find that whether communication can evolve depends on a collective's external environment: communication only evolves in sufficiently stable environments, where the costs of sensing are high enough to disfavour independent sensing but not so high that the optimal strategy is to ignore the environment altogether. Moreover, we find that the evolution of diverse signalling strategies-including those relying on prolonged signalling (e.g. honeybee waggle dance), persistence of signals in the environment (e.g. ant trail pheromones) and brief but frequent communicative interactions (e.g. ant antennal contacts)-can be explained theoretically in terms of the interplay between the demands of the environment and internal constraints on the signal. Altogether, we provide a general framework for comparing communication strategies found in nature and uncover simple ecological principles that may contribute to their diversity.

摘要

沟通使集体成员能够共享有关其环境的信息。高级集体系统,如多细胞生物和社会性昆虫群体,在是否使用沟通以及使用何种类型的信号方面存在差异,但这些差异的起源尚不清楚。在这里,我们开发了一个理论框架,以研究集体选择下沟通策略的进化和多样性。我们发现,沟通是否能够进化取决于集体的外部环境:只有在环境足够稳定的情况下,沟通才会进化,在这种环境中,感应的成本高到足以不赞成独立感应,但又不会高到最优策略是完全忽略环境。此外,我们发现,各种信号策略的进化——包括依赖于延长信号(例如蜜蜂摇摆舞)、信号在环境中持续存在(例如蚂蚁踪迹信息素)以及短暂但频繁的交流互动(例如蚂蚁触角接触)——可以根据环境的需求和信号的内部约束之间的相互作用来从理论上解释。总的来说,我们提供了一个比较自然界中发现的沟通策略的通用框架,并揭示了可能有助于其多样性的简单生态原则。

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