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食草动物个体发育过程中的气候变暖与捕食风险。

Climate warming and predation risk during herbivore ontogeny.

机构信息

School of Forestry and Environmental Studies, Yale University, 370 Prospect Street, New Haven, Connecticut 06511, USA.

出版信息

Ecology. 2010 Oct;91(10):2811-8. doi: 10.1890/09-2278.1.

Abstract

Phenological effects of climate change are expected to differ among species, altering interactions within ecological communities. However, the nature and strength of these effects can vary during ontogeny, so the net community-level effects will be the result of integration over an individual's lifetime. I resolved the mechanism driving the effects of warming and spider predation risk on a generalist grasshopper herbivore at each ontogenetic stage and quantified the treatment effects on a measure of reproductive fitness. Spiders caused nymphal grasshoppers to increase the proportion of herbs in their diet, thus having a positive indirect effect on grasses and a negative indirect effect on herbs. Warming strengthened the top-down effect by affecting spiders and grasshoppers differently. In cooler, ambient conditions, grasshoppers and spiders had a high degree of spatial overlap within the plant canopy. Grasshopper position was unaffected by temperature, but spiders moved lower in the canopy in response to warming. This decreased the spatial overlap between predator and prey, allowing nymphal grasshoppers to increase daily feeding time. While spiders decreased grasshopper growth and reproductive fitness in ambient conditions, spiders had no effect on grasshopper fitness in warmed treatments. The study demonstrates the importance of considering the ontogeny of behavior when examining the effects of climate change on trophic interactions.

摘要

气候变化的物候效应预计在不同物种之间存在差异,从而改变生态群落内部的相互作用。然而,这些效应的性质和强度在个体发育过程中可能会发生变化,因此净群落水平的效应将是个体一生中整合的结果。我在每个发育阶段解决了变暖和蜘蛛捕食风险对草食性广义蝗虫的影响的机制,并量化了对生殖适应性的一种衡量指标的处理效应。蜘蛛使若虫蝗虫增加了其饮食中草本植物的比例,从而对草本植物产生了积极的间接影响,对草本植物产生了消极的间接影响。变暖通过以不同的方式影响蜘蛛和蝗虫来增强自上而下的影响。在较凉爽的环境条件下,蝗虫和蜘蛛在植物冠层内具有高度的空间重叠。温度对蝗虫的位置没有影响,但蜘蛛在变暖的情况下会在冠层中向下移动。这减少了捕食者和猎物之间的空间重叠,使若虫蝗虫能够增加每日进食时间。虽然蜘蛛在环境条件下降低了蝗虫的生长和生殖适应性,但在变暖的处理中,蜘蛛对蝗虫的适应性没有影响。该研究表明,在研究气候变化对营养相互作用的影响时,考虑行为的个体发育过程非常重要。

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