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首页> 外文期刊>Natural Resource Modeling >EVOLUTIONARILY INDUCED ALTERNATIVE STATES AND COEXISTENCE IN SYSTEMS WITH APPARENT COMPETITION
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EVOLUTIONARILY INDUCED ALTERNATIVE STATES AND COEXISTENCE IN SYSTEMS WITH APPARENT COMPETITION

机译:具有明显竞争性的系统中的进化诱导的交替状态和共存

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Predators often consume multiple prey and by mutually subsidizing a shared predator, the prey may reciprocally harm each other. When predation levels are high, this apparent competition can culminate in a prey species being displaced. Coupling quantitative genetics and Lotka-Volterra models, we study how predator evolution alters this and other ecological outcomes. These models account for a trade-off between the predator's attack rates on two prey species. We provide a mathematical characterization of a strong form of persistence-permanencefor which there is a global attractor bounded away from extinction. When the evolutionary dynamics occur at a sufficiently slower time scale than the ecological dynamics, we also characterize attractors and their basins of attraction using singular perturbation theory and a graphical approach to the eco-evolutionary dynamics. Our results show that eco-evolutionary feedbacks can mediate permanence at intermediate trade-offs in the attack rates. However, at strong trade-offs, permanence is lost. Despite this loss of permanence, there can be attractors supporting coexistence. These attractors, however, may coincide with attractors at which the predator is excluded. Our results highlight that eco-evolutionary feedbacks can alter community structure by mediating coexistence or leading to trait-dependent alternative stable states.
机译:捕食者经常消耗多个猎物,并且通过相互补贴一个共享的捕食者,猎物可能相互伤害。当捕食水平很高时,这种明显的竞争最终会导致猎物物种流离失所。结合定量遗传学和Lotka-Volterra模型,我们研究了捕食者的进化如何改变这种和其他生态结果。这些模型说明了捕食者对两种猎物的攻击率之间的权衡。我们提供了一种强大的持久性形式的数学特征,为此,存在一个全球性的吸引者,其范围已不复存在。当进化动力学发生的时间比生态动力学慢得多时,我们还使用奇异摄动理论和生态进化动力学的图形方法来表征吸引子及其吸引盆地。我们的结果表明,生态进化反馈可以在攻击率的中间折衷中调节持久性。但是,在权衡取舍时,永久性会丢失。尽管丧失了永久性,但仍有吸引者支持共存。但是,这些吸引子可能与排除捕食者的吸引子重合。我们的研究结果表明,生态进化反馈可以通过介导共存或导致依赖特征的替代稳定状态来改变社区结构。

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