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Anti-predator defence and the complexity–stability relationship of food webs

机译:反捕食者防御与食物网的复杂性-稳定性关系

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摘要

The mechanism for maintaining complex food webs has been a central issue in ecology because theory often predicts that complexity (higher the species richness, more the interactions) destabilizes food webs. Although it has been proposed that prey anti-predator defence may affect the stability of prey–predator dynamics, such studies assumed a limited and relatively simpler variation in the food-web structure. Here, using mathematical models, I report that food-web flexibility arising from prey anti-predator defence enhances community-level stability (community persistence and robustness) in more complex systems and even changes the complexity–stability relationship. The model analysis shows that adaptive predator-specific defence enhances community-level stability under a wide range of food-web complexity levels and topologies, while generalized defence does not. Furthermore, while increasing food-web complexity has minor or negative effects on community-level stability in the absence of defence adaptation, or in the presence of generalized defence, in the presence of predator-specific defence, the connectance–stability relationship may become unimodal. Increasing species richness, in contrast, always lowers community-level stability. The emergence of a positive connectance–stability relationship however necessitates food-web compartmentalization, high defence efficiency and low defence cost, suggesting that it only occurs under a restricted condition.
机译:维护复杂食物网的机制一直是生态学中的中心问题,因为理论经常预测复杂性(物种丰富度越高,相互作用越多)会破坏食物网的稳定性。尽管有人提出,猎物的反捕食者防御可能会影响猎物-捕食者动力学的稳定性,但此类研究假设食物网结构的变化有限且相对简单。在这里,我使用数学模型报告说,猎物反捕食者防御产生的食物网灵活性在更复杂的系统中增强了社区级别的稳定性(社区持久性和鲁棒性),甚至改变了复杂性与稳定性之间的关系。模型分析表明,在各种食物网复杂性水平和拓扑结构下,针对捕食者的自适应防御可以增强社区一级的稳定性,而广义防御则不能。此外,在缺乏防御适应性或存在普遍防御的情况下,在存在捕食者特定防御的情况下,不断增加的食物网复杂性对社区一级的稳定性有较小或负面影响,但联系-稳定性关系可能变为单峰。相反,增加物种丰富度总是会降低社区一级的稳定性。但是,要建立积极的联系与稳定关系,就必须使食物网分隔,防御效率高和防御成本低,这表明它仅在有限的条件下发生。

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