Fairy circles and temporal periodic patterns in the delayed plant-sulfide feedback model.

IF 2.6 4区 工程技术 Q1 Mathematics Mathematical Biosciences and Engineering Pub Date : 2024-08-07 DOI:10.3934/mbe.2024297
Xin Wei, Jianjun Paul Tian, Jiantao Zhao
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Abstract

Incorporating the self-regulatory mechanism with time delay to a plant-sulfide feedback system for intertidal salt marshes, we proposed and studied a functional reaction-diffusion model. We analyzed the stability of the positive steady state of the system, and derived the sufficient conditions for the occurrence of Hopf bifurcations. By deriving the normal form on the center manifold, we obtained the formulas determining the properties of the Hopf bifurcations. Our analysis showed that there is a critical value of time delay. When the time delay is greater than the critical value, the system will show asymptotical temporal periodic patterns while the system will display asymptotical spatial homogeneous patterns when the time delay is smaller than the critical value. Our numerical study showed that there are transient fairy circles for any time delay while there are different types of fairy circles and rings in the system. Our results enhance the concept that transient fairy circle patterns in intertidal salt marshes can infer the underlying ecological mechanisms and provide a measure of ecological resilience when the self-regulatory mechanism with time delay is considered.

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延迟植物-硫化物反馈模型中的仙女圈和时间周期模式。
我们在潮间带盐沼植物-硫化物反馈系统中加入了具有时间延迟的自我调节机制,提出并研究了一个功能反应-扩散模型。我们分析了系统正稳态的稳定性,并推导出发生霍普夫分岔的充分条件。通过推导中心流形上的法线形式,我们得到了决定霍普夫分岔性质的公式。我们的分析表明,时间延迟存在一个临界值。当时间延迟大于临界值时,系统将表现出渐近的时间周期模式,而当时间延迟小于临界值时,系统将表现出渐近的空间均匀模式。我们的数值研究表明,任何时间延迟都存在瞬态仙女圈,而系统中存在不同类型的仙女圈和仙女环。我们的研究结果强化了潮间带盐沼中的瞬态仙女圈模式可以推断潜在生态机制的概念,并在考虑时间延迟的自我调节机制时提供了生态恢复力的衡量标准。
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来源期刊
Mathematical Biosciences and Engineering
Mathematical Biosciences and Engineering 工程技术-数学跨学科应用
CiteScore
3.90
自引率
7.70%
发文量
586
审稿时长
>12 weeks
期刊介绍: Mathematical Biosciences and Engineering (MBE) is an interdisciplinary Open Access journal promoting cutting-edge research, technology transfer and knowledge translation about complex data and information processing. MBE publishes Research articles (long and original research); Communications (short and novel research); Expository papers; Technology Transfer and Knowledge Translation reports (description of new technologies and products); Announcements and Industrial Progress and News (announcements and even advertisement, including major conferences).
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