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Period-3 dominant phase synchronisation of Zelkova serrata: border-collision bifurcation observed in a plant population

机译:Zelkova锯缘的3期显性相位同步:在植物种群中观察到边界碰撞分叉

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摘要

The population synchrony of tree seed production has attracted widespread attention in agriculture, forestry and ecosystem management. Oaks usually show synchronisation of irregular or intermittent sequences of acorn production, which is termed ‘masting’. Tree crops such as citrus and pistachio show a clear two-year cycle (period-2) termed ‘alternate bearing’. We identified period-3 dominant phase synchronisation in a population of Zelkova serrata. As ‘period-3’ is known to provide evidence to imply chaos in nonlinear science, the observed period-3 phase synchronisation of Zelkova serrata is an attractive real-world phenomenon that warrants investigation in terms of nonlinear dynamics. Using the Hilbert transform, we proposed a procedure to determine the fractions of periods underlying the survey data and distinguished the on-year (high yield year) and the off-year (low yield year) of the masting. We quantified the effects of pollen coupling, common environmental noise and individual variability on the phase synchronisation and demonstrated how the period-3 synchronisation emerges through a border-collision bifurcation process. In this paper, we propose a model that can describe diverse behaviours of seed production observed in many different tree species by changing its parameters.
机译:林木种子生产的人口同步在农业,林业和生态系统管理中引起了广泛关注。橡树通常表现出不规则或间歇性的橡子生成序列的同步,这被称为“马斯特”。柑桔和开心果等树木农作物显示出清晰的两年周期(第二期),称为“交替生育”。我们确定了Zelkova s​​errata种群的3期显性相位同步。由于已知“周期3”可以暗示非线性科学中的混乱,因此观察到的Zelkova s​​errata的周期3相位同步是一种引人入胜的真实世界现象,需要对非线性动力学进行研究。使用希尔伯特变换,我们提出了一种确定调查数据所占期间的比例的程序,并区分了桅杆的年内(高产年)和非年内(低产年)。我们量化了花粉耦合,常见环境噪声和个体变异性对相位同步的影响,并演示了第3期同步如何通过边界碰撞分叉过程出现。在本文中,我们提出了一个模型,该模型可以通过更改参数来描述在许多不同树种中观察到的种子生产的多种行为。

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