首页> 外文期刊>Journal of Tropical Ecology >The effects of the frog Eleutherodactylus coqui on invertebrates and ecosystem processes at two scales in the Luquillo Experimental Forest, Puerto Rico
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The effects of the frog Eleutherodactylus coqui on invertebrates and ecosystem processes at two scales in the Luquillo Experimental Forest, Puerto Rico

机译:波多黎各卢奎洛实验森林中青蛙蛙斑鸠对无脊椎动物和生态系统过程的两个尺度的影响

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摘要

Determining the ubiquity of top-down control effects of predators on their prey and ecosystem processes is important for understanding community and ecosystem-level consequences that may result from predator loss. We conducted experiments at two spatial scales to investigate the effects of terrestrial frogs (Eleutherodactylus coqui) on aerial and litter invertebrates, plant growth and herbivory, and litter decomposition. At both scales, frogs reduced aerial invertebrates and leaf herbivory, but had no effect on litter invertebrates. At the smaller scale, frogs increased foliage production rates, measured as the number of new leaves and new leaf area produced, by 80% and decomposition rates by 20%. The influence of E. coqui on increasing primary productivity and decomposition rates at the smaller scale appeared to be a result of elimination and excretion rather than of controlling prey. While the results provide evidence for frogs controlling herbivorous prey at both scales, species effects on ecosystem processes were only detectable at the smaller scale. The results highlight the difficulties in conducting experiments at large spatial scales. The findings from this study imply that the loss of amphibians and other species of higher trophic levels may affect nutrient cycling rates in tropical forests.
机译:确定捕食者对其捕食和生态系统过程自上而下的控制效果的普遍性对于理解由捕食者流失可能造成的社区和生态系统层面的后果非常重要。我们在两个空间尺度上进行了实验,以研究陆地蛙(Eleutherodactylus coqui)对气生和凋落无脊椎动物,植物生长和食草以及凋落物分解的影响。在这两个尺度上,青蛙都减少了空中无脊椎动物和草食性,但对凋落无脊椎动物没有影响。在较小的规模上,以增加的新叶数量和新的叶面积衡量,青蛙将叶子的生产率提高了80%,分解率提高了20%。大肠杆菌在较小规模上对提高初级生产力和分解速率的影响似乎是消除和排泄的结果,而不是控制猎物的结果。虽然结果为青蛙在两个尺度上控制草食性捕食提供了证据,但物种对生态系统过程的影响只有在较小尺度下才能检测到。结果强调了在大空间尺度上进行实验的困难。这项研究的结果表明,两栖动物和其他营养水平较高的物种的流失可能影响热带森林中养分的循环速率。

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