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首页> 外文期刊>Journal of Mathematical Biology >Periodic matrix models for seasonal dynamics of structured populations with application to a seabird population
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Periodic matrix models for seasonal dynamics of structured populations with application to a seabird population

机译:用于海鸟群体的结构群体季节性动态的定期矩阵模型

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For structured populations with an annual breeding season, life-stage interactions and behavioral tactics may occur on a faster time scale than that of population dynamics. Motivated by recent field studies of the effect of rising sea surface temperature (SST) on within-breeding-season behaviors in colonial seabirds, we formulate and analyze a general class of discrete-time matrix models designed to account for changes in behavioral tactics within the breeding season and their dynamic consequences at the population level across breeding seasons. As a specific example, we focus on egg cannibalism and the daily reproductive synchrony observed in seabirds. Using the model, we investigate circumstances under which these life history tactics can be beneficial or non-beneficial at the population level in light of the expected continued rise in SST. Using bifurcation theoretic techniques, we study the nature of non-extinction, seasonal cycles as a function of environmental resource availability as they are created upon destabilization of the extinction state. Of particular interest are backward bifurcations in that they typically create strong Allee effects in population models which, in turn, lead to the benefit of possible (initial condition dependent) survival in adverse environments. We find that positive density effects (component Allee effects) due to increased adult survival from cannibalism and the propensity of females to synchronize daily egg laying can produce a strong Allee effect due to a backward bifurcation.
机译:对于具有年育种季节的结构化群体,寿命相互作用和行为策略可能比人口动态更快地发生。最近的近期实地研究对殖民地海鸟的繁殖季节行为上升的效果,我们制定并分析了一般的离散时间矩阵模型,旨在考虑行为策略内的变化育种季节及其在繁殖季节人口水平的动态后果。作为一个具体的例子,我们专注于鸡蛋摄食和海鸟观察到的日常生活同步。使用该模型,我们调查这些生活历史策略在人口水平中可能有益或非有益的情况,鉴于SST的预期持续上升。使用分叉理论技术,我们研究了非灭绝,季节性周期的性质,作为环境资源可用性的函数,因为它们是在灭绝状态的破坏化时创造的。特别感兴趣的是向后分叉,因为它们通常在人口模型中创造强大的含量效果,反过来又导致可能(初始条件依赖性)生存在不利环境中的益处。我们发现由于成年人生存率增加的积极密度效应(组分含量效应)和每日卵铺设的女性同步的女性倾向,可能会产生强烈的含量效果。

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