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Terrestrial vertebrate predators drive the structure and functioning of aquatic food webs

机译:陆地脊椎动物捕食者驱动水生食物网的结构和功能

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Predators that forage at boundaries between ecosystems can affect prey from adjacent ecosystems, thereby triggering consumptive and non-consumptive cascading effects, which may affect diversity and food web structure across ecosystems. In the present study, we manipulated the access of insectivorous birds, lizards, and anurans to tank bromeliads in scrub vegetation in southern Brazil. We measured cascading effects on the community structure of aquatic invertebrates inhabiting bromeliad leaves and on the ecosystem processes of decomposition rate and bromeliad growth. The exclusion of terrestrial vertebrate predators increased the biomass of Odonate and Tabanid apex predators, which shifted the body size structure of the assemblage and generated inverted biomass pyramids that were top-heavy. Within bromeliads with larger aquatic predators, the species composition and abundance of other aquatic invertebrates also changed, resulting in higher abundance of mesopredators and scrapers, and lower abundance of shredders. Under those conditions, the detritus decomposition rate decreased, and bromeliads produced more leaves, perhaps because of the higher deposition of nitrogenous waste by mesopredators. Our results highlight that the effects of terrestrial vertebrate predators can propagate across aquatic ecosystems, altering species composition, body size structure, food web organization, and ecosystem function.
机译:生态系统之间边界的捕食者可以影响来自邻近生态系统的猎物,从而触发消耗性和非消耗性级联效果,这可能影响生态系统的多样性和食物网结构。在本研究中,我们操纵食虫鸟类,蜥蜴和抗核苷酸的进入,在巴西南部的磨砂植被中坦克溴洲。我们测量了对植物植物的水生无脊椎动物群落结构的级联效果,对分解率和溴胞生态系统的生态系统过程。排除陆地脊椎动物捕食者增加了偶氮酸盐和塔巴尼肽顶点捕食者的生物量,其转移了成功的体尺寸结构,并产生了顶重的倒置生物质金字塔。在具有较大水生捕食者的Bromeliads中,物种组成和其他水生无脊椎动物的丰富也发生了变化,导致更高丰富的中型器和刮刀,以及降低丰富的碎纸机。在那些条件下,Detritus分解率下降,并且溴脲产生更多的叶片,可能是由于中间封装器沉积含氮废物较高。我们的结果突出了陆地脊椎动物捕食者的影响可以在水生生态系统中传播,改变物种组成,体型结构,食物网络组织和生态系统功能。

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