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Effects of density-dependent dispersal behaviours on the speed and spatial patterns of range expansion in predator-prey metapopulations

机译:依赖密度的扩散行为对捕食者-猎物种群中范围扩展的速度和空间格局的影响

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摘要

Dispersal can strongly affect the spatiotemporal dynamics of a species (its spread, spatial distribution and persistence). We investigated how two dispersal behaviours, namely prey evasion (PE) and predator pursuit (PP), affect the dynamics of a predator-prey system. PE portrays the tendency of prey avoiding predators by dispersing into adjacent patches with fewer predators, while PP describes the tendency of predators to pursue the prey by moving into patches with more prey. Based on the Beddington predation model, a spatially explicit metapopulation model was built to incorporate PE and PP. Numerical simulations were run to investigate the effects of PE and PP on the rate of spread, spatial synchrony and the persistence of populations. Results show that both PE and PP can alter spatial synchrony although PP has a weaker desynchronising effect than PE. The predator-prey system without PE and PP expanded in circular waves. The effect of PE can push the prey to distribute in a circular ring front, whereas the effect of PP can change the circular waves to anisotropic expansion. Furthermore, weak PE and PP can accelerate the spread of prey while strong and disproportionate intensities slow down the range expansion. The effects of PE and PP further enhance the population size, break down the spatial synchrony and promote the persistence of populations.
机译:分散会强烈影响物种的时空动态(其传播,空间分布和持久性)。我们研究了两种分散行为,即逃避猎物(PE)和捕食者追踪(PP)如何影响捕食者—猎物系统的动力学。 PE通过分散到具有更少捕食者的相邻斑块中描绘了避开捕食者的趋势,而PP描述了掠食者倾向于通过进入具有更多猎物的斑块来追捕猎物的趋势。基于Beddington捕食模型,建立了包含PE和PP的空间明确的种群模型。通过数值模拟研究了PE和PP对传播速率,空间同步性和种群持久性的影响。结果表明,尽管PP的去同步作用比PE弱,但PE和PP均可改变空间同步性。没有PE和PP的捕食者-被捕食者系统以圆形波扩展。 PE的作用可以推动猎物分布在圆环的前部,而PP的作用则可以将圆波改变为各向异性的膨胀。此外,较弱的PE和PP可以加速猎物的传播,而强度高且不相称的强度会减慢射程的扩展。 PE和PP的影响进一步扩大了种群规模,打破了空间同步性,并促进了种群的持久性。

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