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小龙虾对源头溪流中树叶分解及树叶上无脊椎动物定殖的影响:营养级联的解耦

Effects of crayfish on leaf processing and invertebrate colonisation of leaves in a headwater stream: decoupling of a trophic cascade.

作者信息

Usio N

机构信息

Department of Zoology, University of Otago, P.O. Box 56, Dunedin, New Zealand e-mail:

出版信息

Oecologia. 2000 Sep;124(4):608-614. doi: 10.1007/s004420000422.

Abstract

I performed a field experiment to test the hypotheses that omnivorous crayfish both promote breakdown of leaves (basal resources) and decouple any potential trophic cascade by simultaneously affecting intermediate consumers as well as their basal resource. Leaf packs were placed inside in situ artificial channels, which excluded or allowed access to crayfish. During a 4-week period, crayfish greatly promoted leaf processing, with decomposition rates among the fastest ever recorded from temperate streams. Crayfish also affected invertebrate abundance in the leaf packs. As a result of resource consumption, predation and bioturbation, crayfish treatments contained significantly lower densities of invertebrates. In contrast, exclusion of crayfish did not promote leaf decay via increased colonisation by detritivores, primarily because of the conspicuous lack of shredder insects in New Zealand streams. The results support the hypothesis that omnivorous top consumers decouple cascading chains through simultaneous direct and indirect effects on intermediate consumers and basal resources. Decapod consumers, which have been largely ignored in leaf decomposition studies, can be key leaf processors in temperate streams where shredder insects are poorly represented.

摘要

我进行了一项野外实验,以检验以下假设:杂食性小龙虾既促进树叶(基础资源)的分解,又通过同时影响中间消费者及其基础资源来解耦任何潜在的营养级联。将叶包放置在原位人工渠道内,这些渠道要么排除小龙虾,要么允许小龙虾进入。在为期4周的时间里,小龙虾极大地促进了树叶的处理,其分解速率是温带溪流中记录到的最快速率之一。小龙虾还影响了叶包中无脊椎动物的数量。由于资源消耗、捕食和生物扰动,小龙虾处理组中的无脊椎动物密度显著降低。相比之下,排除小龙虾并没有通过碎屑食性动物增加定殖来促进树叶腐烂,主要是因为新西兰溪流中明显缺乏碎食性昆虫。结果支持了以下假设:杂食性顶级消费者通过对中间消费者和基础资源同时产生直接和间接影响来解耦级联链。十足目消费者在树叶分解研究中基本被忽视,但在碎食性昆虫数量较少的温带溪流中,它们可能是关键的树叶处理者。

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