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首页> 外文期刊>Theoretical Ecology >Remembering the good and the bad: memory-based mediation of the food-safety trade-off in dynamic landscapes
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Remembering the good and the bad: memory-based mediation of the food-safety trade-off in dynamic landscapes

机译:记住好的和坏的:基于记忆的食物安全权在动态景观中的调解

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Predator-prey interactions are central to fitness as animals simultaneously avoid death and consume resources to ensure growth and reproduction. Along with direct effects, predators can also exert strong non-consumptive effects. For example, prey shift habitat use in the presence of predators, a potentially learned behavior. The impact of cognition on movement and predator interactions is largely unexplored despite evidence of learned responses to predation threat. We explore how learning and spatial memory influence predator-prey dynamics by introducing predators into a memory-driven movement modeling framework. To model various aspects of risk, we vary predator behavior: their persistence and spatial correlation with the prey's resources. Memory outperforms simpler movement processes most in patchy environments with more predictable predators that are more easily avoided once learned. In these cases, memory aids foragers in managing the food- safety trade-off. For example, particular parameterizations of the predation memory reduce encounters while maintaining consumption. We found that non-consumptive effects are highest in landscapes of concentrated, patchy resources. These effects are intensified when predators are highly correlated with the forager's resources. Smooth landscapes provide more opportunities for foragers to simultaneously consume resources and avoid predators. Predators are able to effectively guard all resources in very patchy landscapes. These non-consumptive effects are also seen with the shift away from the best quality habitat compared to foraging in a predator-free environment.
机译:捕食者 - 猎物互动是健身的核心,因为动物同时避免死亡并消耗资源以确保生长和繁殖。随着直接影响,捕食者也可以发挥强有力的非消耗效果。例如,猎物班居在捕食者存在下使用,潜在的学习行为。尽管对捕食威胁的答复证据证明,但认知对运动和捕食者相互作用的影响很大程度上是未开发的。我们探讨学习和空间记忆如何通过将捕食者引入存储器驱动的运动建模框架来影响捕食者 - 猎物动态。为了模拟风险的各个方面,我们可以改变掠夺者行为:他们与猎物资源的持久性和空间相关性。内存优于更简单的移动流程,这些过程大多数在斑驳的环境中,曾更容易避免曾经学习过更多可预测的捕食者。在这些情况下,记忆力辅助削减者管理食品安全权衡。例如,捕食存储器的特定参数化在保持消耗的同时减少遭遇。我们发现浓缩,拼凑资源的景观中的非消耗效果最高。当捕食者与Forager的资源高度相关时,这些效果会加强。平滑的景观为伪造者提供更多机会,同时消耗资源并避免掠夺者。掠夺者能够有效地保护非常糙巧的景观中的所有资源。与捕食者环境中的觅食相比,这些非消耗效果也被远离最佳质量栖息地看到。

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