论文标题

如何建模蜜蜂种群动态:阶段结构和季节性

How to model honeybee population dynamics: stage structure and seasonality

论文作者

Chen, Jun, Messan, Komi, Messan, Marisabel Rodriguez, DeGrandi-Hoffman, Gloria, Bai, Dingyong, Kang, Yun

论文摘要

西部蜜蜂(Apis Mellifera)在我们的生态系统和经济学中发挥了极为重要的作用,因为他们每年在全球范围内授粉2150亿美元。不幸的是,蜜蜂的人口及其殖民地急剧下降。本文的目的是探索如何将蜜蜂种群与年龄结构建模,并使用经验数据验证模型,以便我们可以确定导致蜜蜂菌落的生存和健康的不同因素。我们的理论研究与模拟和数据验证结合在一起表明,模型中纳入的适当年龄结构对于对蜜蜂种群进行建模很重要。具体而言,我们的工作意味着(假设(1)成年蜜蜂是从{鸡蛋种群}而不是育雏种群中幸存下来的模型; (2)皇后蛋式上的季节性,比其他蜜蜂模型更合身。对最合适模型的相关理论和数值分析表明,(a)蜜蜂菌落的存活还需要大皇后鸡蛋延长速率和其他生命历史参数值的较小值,除了适当的初始条件; (b)随着{鸡蛋降低率的增加}和其他参数值的下降,育雏和成年蜜蜂种群都在增加; (c)季节性可能会促进/抑制蜜蜂殖民地的生存。

Western honeybees (Apis Mellifera) serve extremely important roles in our ecosystem and economics as they are responsible for pollinating $ 215 billion dollars annually over the world. Unfortunately, honeybee population and their colonies have been declined dramatically. The purpose of this article is to explore how we should model honeybee population with age structure and validate the model using empirical data so that we can identify different factors that lead to the survival and healthy of the honeybee colony. Our theoretical study combined with simulations and data validation suggests that the proper age structure incorporated in the model and seasonality are important for modeling honeybee population. Specifically, our work implies that the model assuming that (1) the adult bees are survived from the {egg population} rather than the brood population; and (2) seasonality in the queen egg laying rate, give the better fit than other honeybee models. The related theoretical and numerical analysis of the most fit model indicate that (a) the survival of honeybee colonies requires a large queen egg-laying rate and smaller values of the other life history parameter values in addition to proper initial condition; (b) both brood and adult bee populations are increasing with respect to the increase in the {egg-laying rate} and the decreasing in other parameter values; and (c) seasonality may promote/suppress the survival of the honeybee colony.

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