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养分匮乏增强了土壤动物对热带雨林凋落叶分解的控制作用。

Nutrient scarcity strengthens soil fauna control over leaf litter decomposition in tropical rainforests.

机构信息

Centre of Excellence PLECO (Plants and Ecosystems), Department of Biology, University of Antwerp, 2610 Wilrijk, Belgium.

CSIC, Global Ecology Unit CREAF-CSIC-UAB, 08913 Bellaterra, Spain.

出版信息

Proc Biol Sci. 2019 Sep 11;286(1910):20191300. doi: 10.1098/rspb.2019.1300. Epub 2019 Sep 4.

Abstract

Soil fauna is a key control of the decomposition rate of leaf litter, yet its interactions with litter quality and the soil environment remain elusive. We conducted a litter decomposition experiment across different topographic levels within the landscape replicated in two rainforest sites providing natural gradients in soil fertility to test the hypothesis that low nutrient availability in litter and soil increases the strength of fauna control over litter decomposition. We crossed these data with a large dataset of 44 variables characterizing the biotic and abiotic microenvironment of each sampling point and found that microbe-driven carbon (C) and nitrogen (N) losses from leaf litter were 10.1 and 17.9% lower, respectively, in the nutrient-poorest site, but this among-site difference was equalized when meso- and macrofauna had access to the litterbags. Further, on average, soil fauna enhanced the rate of litter decomposition by 22.6%, and this contribution consistently increased as nutrient availability in the microenvironment declined. Our results indicate that nutrient scarcity increases the importance of soil fauna on C and N cycling in tropical rainforests. Further, soil fauna is able to equalize differences in microbial decomposition potential, thus buffering to a remarkable extent nutrient shortages at an ecosystem level.

摘要

土壤动物是控制凋落物分解速率的关键因素,但它们与凋落物质量和土壤环境的相互作用仍不清楚。我们在两个雨林地点进行了一项凋落物分解实验,这些地点在景观中具有不同的地形水平,提供了土壤肥力的自然梯度,以检验以下假设:凋落物和土壤中低养分可用性会增加动物对凋落物分解的控制强度。我们将这些数据与一个包含 44 个变量的大型数据集交叉分析,这些变量描述了每个采样点的生物和非生物微环境,结果发现,在养分最贫瘠的地点,微生物驱动的碳(C)和氮(N)从凋落物中的损失分别降低了 10.1%和 17.9%,但当中型和大型动物可以进入凋落物袋时,这种地点间的差异就会得到平衡。此外,土壤动物平均提高了凋落物分解的速率 22.6%,而且随着微环境中养分可用性的下降,这种贡献持续增加。我们的研究结果表明,养分匮乏增加了土壤动物在热带雨林碳和氮循环中的重要性。此外,土壤动物能够平衡微生物分解潜力的差异,从而在很大程度上缓冲生态系统层面的养分短缺。

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