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Indirect food web interactions mediated by predator–rodent dynamics: relative roles of lemmings and voles

机译:捕食者-啮齿动物动力学介导的间接食物网相互作用:旅鼠和田鼠的相对作用

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摘要

Production cycles in birds are proposed as prime cases of indirect interactions in food webs. They are thought to be driven by predators switching from rodents to bird nests in the crash phase of rodent population cycles. Although rodent cycles are geographically widespread and found in different rodent taxa, bird production cycles appear to be most profound in the high Arctic where lemmings dominate. We hypothesized that this may be due to arctic lemmings inducing stronger predator responses than boreal voles. We tested this hypothesis by estimating predation rates in dummy bird nests during a rodent cycle in low-Arctic tundra. Here, the rodent community consists of a spatially variable mix of one lemming (Lemmus lemmus) and two vole species (Myodes rufocanus and Microtus oeconomus) with similar abundances. In consistence with our hypothesis, lemming peak abundances predicted well crash-phase nest predation rates, whereas the vole abundances had no predictive ability. Corvids were found to be the most important nest predators. Lemmings appear to be accessible to the whole predator community which makes them particularly powerful drivers of food web dynamics.
机译:鸟类的生产周期被提议为食物网间接相互作用的主要案例。它们被认为是由于在啮齿动物种群周期的崩溃阶段,捕食者从啮齿动物转变为鸟巢所驱动。尽管啮齿动物在地理上分布广泛,并在不同的啮齿动物类群中发现,但鸟类的繁殖周期似乎在高羚羊的北极地区最为深刻。我们假设这可能是由于北极旅鼠引起的捕食者反应比北方田鼠要强。我们通过估计低北极苔原的啮齿动物周期内假鸟巢中的捕食率来检验该假设。在这里,啮齿类动物群落由一种旅鼠(Lemmus lemmus)和两种田鼠(鼠鼠Myodes rufocanus和Microtus oeconomus)的空间变化混合组成,它们的丰度相似。与我们的假设一致,旅鼠峰丰度预测了撞相巢的捕食率,而田鼠丰度则没有预测能力。发现Corvids是最重要的巢穴掠食者。整个掠食者社区似乎都可以使用它们,这使它们成为食物网动态的特别强大的驱动力。

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