集体决策中社会互动规则的进化稳定性。

IF 2 4区 生物学 Q4 BIOCHEMISTRY & MOLECULAR BIOLOGY Physical biology Pub Date : 2023-05-30 DOI:10.1088/1478-3975/acd297
Anna Sigalou, Richard P Mann
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引用次数: 0

摘要

群居动物可以把群体中其他成员的选择作为决策的线索。个人必须平衡从自己的感官线索中获得的私人信息和通过观察他人的选择而获得的社会信息。这两个线索可以使用决策规则进行整合,决策规则根据社会和非社会信息的质量和数量指定选择一个或另一个选项的概率。先前的实证研究研究了哪些决策规则可以复制集体决策的可观察特征,而其他理论研究则基于理性主体如何响应可用信息的规范性假设推导出决策规则的形式。在这里,我们探讨了一个常用的决策规则的性能方面的预期决策准确性的个人使用它。我们表明,该模型的参数在经验模型拟合研究中通常被视为独立变量,在动物进化优化其环境的假设下服从必要的关系。我们进一步研究了这种决策模型是否适用于所有动物群体,通过测试其进化稳定性,通过使用不同的社会信息替代策略入侵,并表明这些策略可能的进化平衡敏感地取决于它所嵌入的更广泛的动物群体中群体身份的精确性质。
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Evolutionary stability of social interaction rules in collective decision-making.

Social animals can use the choices made by other members of their groups as cues in decision making. Individuals must balance the private information they receive from their own sensory cues with the social information provided by observing what others have chosen. These two cues can be integrated using decision making rules, which specify the probability to select one or other options based on the quality and quantity of social and non-social information. Previous empirical work has investigated which decision making rules can replicate the observable features of collective decision making, while other theoretical research has derived forms for decision making rules based on normative assumptions about how rational agents should respond to the available information. Here we explore the performance of one commonly used decision making rule in terms of the expected decision accuracy of individuals employing it. We show that parameters of this model which have typically been treated as independent variables in empirical model-fitting studies obey necessary relationships under the assumption that animals are evolutionarily optimised to their environment. We further investigate whether this decision making model is appropriate to all animal groups by testing its evolutionary stability to invasion by alternative strategies that use social information differently, and show that the likely evolutionary equilibrium of these strategies depends sensitively on the precise nature of group identity among the wider population of animals it is embedded within.

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来源期刊
Physical biology
Physical biology 生物-生物物理
CiteScore
4.20
自引率
0.00%
发文量
50
审稿时长
3 months
期刊介绍: Physical Biology publishes articles in the broad interdisciplinary field bridging biology with the physical sciences and engineering. This journal focuses on research in which quantitative approaches – experimental, theoretical and modeling – lead to new insights into biological systems at all scales of space and time, and all levels of organizational complexity. Physical Biology accepts contributions from a wide range of biological sub-fields, including topics such as: molecular biophysics, including single molecule studies, protein-protein and protein-DNA interactions subcellular structures, organelle dynamics, membranes, protein assemblies, chromosome structure intracellular processes, e.g. cytoskeleton dynamics, cellular transport, cell division systems biology, e.g. signaling, gene regulation and metabolic networks cells and their microenvironment, e.g. cell mechanics and motility, chemotaxis, extracellular matrix, biofilms cell-material interactions, e.g. biointerfaces, electrical stimulation and sensing, endocytosis cell-cell interactions, cell aggregates, organoids, tissues and organs developmental dynamics, including pattern formation and morphogenesis physical and evolutionary aspects of disease, e.g. cancer progression, amyloid formation neuronal systems, including information processing by networks, memory and learning population dynamics, ecology, and evolution collective action and emergence of collective phenomena.
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