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觅食选择与种群增长动态之间的相互作用。

The interplay between foraging choices and population growth dynamics.

作者信息

Calvo-Monge Jimmy, Espinoza Baltazar, Sanchez Fabio, Arroyo-Esquivel Jorge

机构信息

Centro de Investigación en Matemática Pura y Aplicada, Universidad de Costa Rica, Ciudad Universitaria Rodrigo Facio, San José, Costa Rica.

Biocomplexity Institute, University of Virginia, Virginia, United States of America.

出版信息

PLoS One. 2025 Jun 26;20(6):e0325942. doi: 10.1371/journal.pone.0325942. eCollection 2025.

Abstract

Population growth models typically incorporate attributes observable at the population scale, often overlooking the trade-off between individual-level reproductive and behavioral traits and their influence on population size. Individuals' survival and reproductive abilities are expected to dynamically evolve depending on the population size, which is affected by the aggregation of individual decisions. Reconciling individual-level incentives with population-level dynamics requires an integrative framework that explicitly addresses the intertwined relationships between population growth and individual decision-making processes. We formulate a multiscale modeling framework that integrates the logistic population growth model with an optimal foraging model to study the interplay between individual-level behavioral incentives and population growth dynamics. Specifically, we explicitly model individuals' decision-making process, which shapes their reproductive fitness and, ultimately, influences population growth. Moreover, we incorporate the concept of resource limitations from the logistic growth model to account for dynamic incentives that depend on population size. Our results yield insights into the multiscale processes, such as the selection pressure of behavioral choices and the cost-benefit of social activities that influence population robustness beyond mere size and aggregated reproductive traits. We found that populations exhibiting similar limiting sizes may undergo significantly different transient dynamics. This variation may be induced by environments imposing distinct behavioral cost-benefit trade-offs that require individuals to exert different levels of foraging effort to maintain reproductive viability.

摘要

种群增长模型通常纳入在种群尺度上可观测的属性,常常忽略个体层面的繁殖和行为特征之间的权衡及其对种群规模的影响。个体的生存和繁殖能力预计会根据种群规模动态演变,而种群规模受个体决策汇总的影响。协调个体层面的激励与种群层面的动态变化需要一个综合框架,该框架明确处理种群增长与个体决策过程之间的相互交织关系。我们构建了一个多尺度建模框架,将逻辑斯谛种群增长模型与最优觅食模型相结合,以研究个体层面行为激励与种群增长动态之间的相互作用。具体而言,我们明确模拟个体的决策过程,该过程塑造了它们的繁殖适应性,并最终影响种群增长。此外,我们纳入逻辑斯谛增长模型中的资源限制概念,以考虑依赖于种群规模的动态激励。我们的结果为多尺度过程提供了见解,例如行为选择的选择压力以及影响种群稳健性(不仅仅是规模和汇总繁殖特征)的社会活动的成本效益。我们发现,表现出相似极限规模的种群可能经历显著不同的瞬态动态。这种变化可能由环境施加不同的行为成本效益权衡所诱发,这要求个体付出不同程度的觅食努力以维持繁殖活力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/85fe/12200681/4f01273b5462/pone.0325942.g001.jpg

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