Department of Mathematical and Statistical Sciences, University of Alberta, Edmonton, AB, T6G 2G1, Canada.
Department of Mathematical and Statistical Sciences, University of Alberta, Edmonton, AB, T6G 2G1, Canada.
Math Biosci. 2018 Apr;298:29-45. doi: 10.1016/j.mbs.2017.12.007. Epub 2017 Dec 27.
Refuge can greatly influence predator-prey dynamics by movements between the interior and the exterior of a refuge. The presence of refuge for prey decreases predation risk and can have important impacts on the sustainability of a predator-prey system. The principal purpose of this paper is to formulate and analyze a refuge-mediated predator-prey model when the refuge is available to protect a portion of prey from predation. We study the effect of the refuge size on the biomass ratio and extend our refuge model to incorporate fishing and predator migration separately. Our study suggests that decreasing the refuge size, increasing the predator fishing, and increasing the predator emigration stabilizes the system. Here, we investigate the dependence of Hopf bifurcation on refuge size in the presence of fishing or predator migration. Moreover, we discuss their effects on the biomass pyramid and establish a condition for the emergence of an inverted biomass pyramid. We perform numerical test and sensitivity analysis to check the robustness of our results and the relative importance of all parameters. We find that high fishing pressure may destroy the inverted biomass pyramid and thus decrease the resilience of reef ecosystems. In addition, increasing the emigration rate or decreasing the immigration rate decreases the predator-prey biomass ratio. An inverted biomass pyramid can occur in the presence of a stable limit cycle.
避难所可以通过在避难所内部和外部之间的运动极大地影响捕食者-猎物动态。猎物避难所的存在降低了被捕食的风险,对捕食者-猎物系统的可持续性有重要影响。本文的主要目的是在避难所可用于保护一部分猎物免受捕食的情况下,制定和分析一个避难所介导的捕食者-猎物模型。我们研究了避难所大小对生物量比的影响,并将我们的避难所模型扩展到分别包含捕捞和捕食者迁移。我们的研究表明,减少避难所的大小、增加捕食者的捕捞和增加捕食者的迁出可以稳定系统。在这里,我们研究了在存在捕捞或捕食者迁移的情况下,Hopf 分岔对避难所大小的依赖性。此外,我们讨论了它们对生物量金字塔的影响,并建立了出现倒生物量金字塔的条件。我们进行了数值测试和敏感性分析,以检查我们结果的稳健性和所有参数的相对重要性。我们发现,高捕捞压力可能会破坏倒生物量金字塔,从而降低珊瑚礁生态系统的恢复力。此外,增加迁出率或减少迁入率会降低捕食者-猎物的生物量比。在稳定的极限环存在的情况下,可以出现倒生物量金字塔。