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首页> 外文期刊>Oecologia >Spatial heterogeneity in the relative impacts of foliar quality and predation pressure on red oak, Quercus rubra, arthropod communities
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Spatial heterogeneity in the relative impacts of foliar quality and predation pressure on red oak, Quercus rubra, arthropod communities

机译:叶质和捕食压力对赤栎,栎,节肢动物群落的相对影响的空间异质性

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摘要

Predation pressure and resource availability often interact in structuring herbivore communities, with their relative influence varying in space and time. The operation of multiple ecological pressures and guild-specific herbivore responses may combine to override simple predictions of how the roles of plant quality and predation pressure vary in space. For 2 years at the Coweeta LTER in the Southern Appalachian Mountains, we conducted a bird exclosure experiment on red oak (Quercus rubra) saplings to investigate the effects of bird predation on red oak arthropod communities. We established bird exclosures at six sites along an elevational gradient and estimated variation in foliar nitrogen and bird predation pressure along this gradient. Foliar nitrogen concentrations increased with elevation while our index of bird predation pressure was variable across sites. Greater arthropod densities were detected inside exclosures; however, this result was mainly driven by the response of phloem feeders which were much more prevalent inside exclosures than on control trees. There was little evidence for an effect of bird predation on the other arthropod guilds. Consequently, there was no evidence of a trophic cascade either in terms of leaf damage or tree growth. Finally, we found more variation in arthropod density among trees within sites than variation in arthropod density among sites, indicating the importance of micro-site variation in structuring arthropod communities.
机译:捕食压力和资源可利用性经常在构造草食动物群落中相互作用,它们的相对影响在空间和时间上有所不同。多种生态压力和行会特有的草食动物反应的运行可能结合起来,以覆盖关于植物质量和捕食压力在空间中如何变化的简单预测。在南部阿巴拉契亚山脉的Coweeta LTER进行了2年的研究,我们对红橡树(Quercus rubra)幼树进行了鸟类暴露实验,以研究鸟类捕食对红橡节肢动物群落的影响。我们在海拔梯度的六个位置建立了鸟类禁忌物,并据此估计了叶氮和鸟类捕食压力的变化。叶氮浓度随海拔升高而增加,而我们的鸟类捕食压力指数在各个地点之间是可变的。在棚内发现节肢动物的密度更高;但是,这一结果主要是由韧皮部给料器的响应所驱动,韧皮部给料器的响应比对照树更普遍。几乎没有证据表明鸟类捕食对其他节肢动物行会有影响。因此,无论从叶片损伤还是树木生长方面都没有营养级联的迹象。最后,我们发现站点内树木间节肢动物密度的变化要大于站点间节肢动物密度的变化,这表明微站点变化对构建节肢动物群落的重要性。

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