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Modelling biotic interactions, dispersal effects and the stability of multi-species community compositions

机译:建模生物相互作用,分散效应和多种群落组合物的稳定性

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A key problem in ecology is to predict the distributions of species across a geographical location. Numerous experimental studies have suggested several ecological factors that can determine species distributions: biotic interactions competition, predation), abiotic components (e.g. climate, elevation) and dispersal process. While various ecological factors have been considered, less attention has been given to the problem of understanding the interaction between dispersal and distinct ecological factors in shaping multi-species ecosystems. By employing a mathematical model consisting of biotic interactions, environmental suitability and dispersal components, the combined influences between dispersal, biotic interactions and environmental factors on community assembly are examined. Our analysis shows the conditions under which species coexistence and priority effects occur as dispersal intensity changes. In particular, we employ numerical continuation methods and techniques from dynamical systems to demonstrate the existence of different dynamics in our model e.g. stable steady-state (or attractor) and alternative stable states. We also observe the occurrence of transcritical and saddle-node bifurcations, which can determine the overall dynamics and the stability of community compositions.
机译:生态学的一个关键问题是预测地理位置的物种的分布。许多实验研究提出了几种能够确定物种分布的生态因素:生物相互作用竞争,捕食),非生物组分(例如气候,海拔)和分散过程。虽然已经考虑了各种生态因素,但对理解塑造多种生态系统中的分散和不同生态因素之间的相互作用的问题较少。通过采用由生物相互作用,环境适用性和分散成分组成的数学模型,研究了分散,生物相互作用与环境因素之间的合并影响。我们的分析显示了物种共存和优先效应作为分散强度变化的条件。特别地,我们采用动态系统的数值延续方法和技术,以展示我们模型中不同动力学的存在。稳定的稳态(或吸引子)和替代稳定状态。我们还观察到横临界和鞍节点分岔的发生,可以确定社区组成的整体动态和稳定性。

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