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Trophic cascades across ecosystems

机译:整个生态系统的营养级联

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Predation can be intense, creating strong direct and indirect effects throughout food webs(1-4). In addition, ecologists increasingly recognize that fluxes of organisms across ecosystem boundaries can have major consequences for community dynamics(5,6). Species with complex life histories often shift habitats during their life cycles(7) and provide potent conduits coupling ecosystems(5,6). Thus, local interactions that affect predator abundance in one ecosystem ( for example a larval habitat) may have reverberating effects in another ( for example an adult habitat). Here we show that fish indirectly facilitate terrestrial plant reproduction through cascading trophic interactions across ecosystem boundaries. Fish reduce larval dragonfly abundances in ponds, leading to fewer adult dragonflies nearby. Adult dragonflies consume insect pollinators and alter their foraging behaviour. As a result, plants near ponds with fish receive more pollinator visits and are less pollen limited than plants near fish-free ponds. Our results confirm that strong species interactions can reverberate across ecosystems, and emphasize the importance of landscape-level processes in driving local species interactions.
机译:捕食活动可能会很激烈,在整个食物网中都产生强烈的直接和间接影响(1-4)。此外,生态学家越来越认识到,越过生态系统边界的生物通量可能会对社区动态产生重大影响(5,6)。具有复杂生活史的物种通常会在其生命周期内改变栖息地(7),并提供与生态系统耦合的有效管道(5,6)。因此,影响一个生态系统(例如幼虫栖息地)中捕食者数量的局部相互作用可能在另一个生态系统(例如成年栖息地)中产生回响作用。在这里,我们表明,鱼类通过跨越生态系统边界的级联营养相互作用,间接促进了陆生植物的繁殖。鱼减少了池塘中幼虫蜻蜓的数量,导致附近的成年蜻蜓减少。成年蜻蜓消耗昆虫的传粉媒介并改变其觅食行为。结果,与没有鱼的池塘附近的植物相比,有鱼的池塘附近的植物受到更多的传粉媒介探访,并且花粉的受限制程度较小。我们的结果证实,强大的物种相互作用可以在整个生态系统中回荡,并强调了景观水平过程在推动本地物种相互作用中的重要性。

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