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Mum, why do you keep on growing? Impacts of environmental variability on optimal growth and reproduction allocation strategies of annual plants

机译:妈妈,你为什么继续增长?环境变化对一年生植物最佳生长和繁殖分配策略的影响

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摘要

In their 1990 paper Optimal reproductive efforts and the timing of reproduction of annual plants in randomly varying environments, Amir and Cohen considered stochastic environments consisting of i.i.d. sequences in an optimal allocation discrete-time model. We suppose here that the sequence of environmental factors is more generally described by a Markov chain. Moreover, we discuss the connection between the time interval of the discrete-time dynamic model and the ability of the plant to rebuild completely its vegetative body (from reserves). We formulate a stochastic optimization problem covering the so-called linear and logarithmic fitness (corresponding to variation within and between years), which yields optimal strategies. For ``linear maximizers'', we analyse how optimal strategies depend upon the environmental variability type: constant, random stationary, random i.i.d., random monotonous. We provide general patterns in terms of targets and thresholds, including both determinate and indeterminate growth. We also provide a partial result on the comparison between ``linear maximizers'' and ``log maximizers''. Numerical simulations are provided, allowing to give a hint at the effect of different mathematical assumptions.
机译:阿米尔(Amir)和科恩(Cohen)在其1990年的论文《最佳生殖努力和一年生植物在随机变化的环境中的繁殖时机》中,考虑了由i.i.d.最优分配离散时间模型中的序列。我们在此假设,环境因素的顺序通常由马尔可夫链来描述。此外,我们讨论了离散时间动态模型的时间间隔与植物完全重建其营养体(从储备中)的能力之间的联系。我们制定了一个随机优化问题,涵盖了所谓的线性和对数适应度(对应于几年内和之间的变化),从而产生了最佳策略。对于``线性最大化器'',我们分析了最佳策略如何取决于环境可变性类型:恒定,随机平稳,随机i.d.,随机单调。我们提供有关目标和阈值的一般模式,包括确定性增长和不确定性增长。我们还提供了``线性最大化器''和``对数最大化器''之间比较的部分结果。提供了数值模拟,可以提示不同数学假设的影响。

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