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首页> 外文期刊>Journal of Mathematical Biology >Integrodifference equations in the presence of climate change: persistence criterion, travelling waves and inside dynamics
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Integrodifference equations in the presence of climate change: persistence criterion, travelling waves and inside dynamics

机译:在气候变化存在下积分积分方程:持久性标准,旅行波和内部动态

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To understand the effects that the climate change has on the evolution of species as well as the genetic consequences, we analyze an integrodifference equation (IDE) models for a reproducing and dispersing population in a spatio-temporal heterogeneous environment described by a shifting climate envelope. Our analysis on the IDE focuses on the persistence criterion, travelling wave solutions, and the inside dynamics. First, the persistence criterion, characterizing the global dynamics of the IDE, is established in terms of the basic reproduction number. In the case of persistence, a unique travelling wave is found to govern the global dynamics. The effects of the size and the shifting speed of the climate envelope on the basic reproduction number, and hence, on the persistence criterion, are also investigated. In particular, the critical domain size and the critical shifting speed are found in certain cases. Numerical simulations are performed to complement the theoretical results. In the case of persistence, we separate the travelling wave and general solutions into spatially distinct neutral fractions to study the inside dynamics. It is shown that each neutral genetic fraction rearranges itself spatially so as to asymptotically achieve the profile of the travelling wave. To measure the genetic diversity of the population density we calculate the Shannon diversity index and related indices, and use these to illustrate how diversity changes with underlying parameters.
机译:为了了解气候变化对物种的演变以及遗传后果的影响,我们分析了一种积极的转化方程(IDE)模型,用于在换档气候包络中描述的时空异构环境中的再现和分散群体。我们对IDE的分析专注于持久性标准,旅行波解决方案和内部动态。首先,在基本再现号方面建立了表征IDE的全局动态的持久性标准。在持久性的情况下,发现一个独特的旅行波来管理全局动态。还研究了尺寸和气候包络的速度和变速速度对基本再现数的影响,并因此研究了持久性标准。特别地,在某些情况下发现临界域大小和临界换档速度。进行数值模拟以补充理论结果。在持久性的情况下,我们将行驶波和一般溶液分离成空间不同的中性分数,以研究内部动态。结果表明,每个中性遗传分数在空间上重新排列,以便渐近地实现行驶波的轮廓。为了测量人口密度的遗传多样性,我们计算香农分离指数和相关指数,并使用这些指数来说明与底层参数有何变化。

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