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[土壤中的营养链]

[Trophic chains in soil].

作者信息

Goncharov A A, Tiunov A V

出版信息

Zh Obshch Biol. 2013 Nov-Dec;74(6):450-62.

Abstract

Trophic links of soil animals are extensively diverse but also flexible. Moreover, feeding activity of large soil saprotrophs often cascades into a range of ecosystem-level consequences via the ecological engineering. Better knowledge on the main sources of energy utilized by soil animals is needed for understanding functional structure of soil animal communities and their participation in the global carbon cycling. Using published and original data, we consider the relative importance of dead organic matter and saprotrophic microorganisms as a basal energy source in the detritus-based food chains, the feeding of endogeic macrofauna on the stabilized soil organic matter, and the role of recent photosynthate in the energy budget of soil communities. Soil food webs are spatially and functionally compartmentalized, though the separation of food chains into bacteria- and fungi-based channels seems to be an over-simplification. The regulation of the litter decomposition rates via top-down trophic interactions across more than one trophic level is only partly supported by experimental data, but mobile litter-dwelling predators play a crucial role in integrating local food webs within and across neighboring ecosystems.

摘要

土壤动物的营养联系广泛多样且具有灵活性。此外,大型土壤腐生生物的摄食活动常常通过生态工程引发一系列生态系统层面的后果。为了理解土壤动物群落的功能结构及其在全球碳循环中的参与情况,需要更深入了解土壤动物利用的主要能量来源。利用已发表的数据和原始数据,我们考虑了死有机物质和腐生微生物作为碎屑食物链中基础能量来源的相对重要性、内栖大型土壤动物对稳定化土壤有机质的摄食,以及近期光合产物在土壤群落能量收支中的作用。土壤食物网在空间和功能上是分区的,尽管将食物链分为以细菌和真菌为基础的通道似乎过于简单化。通过跨越多个营养级的自上而下的营养相互作用对凋落物分解速率的调节仅得到了部分实验数据的支持,但移动的凋落物栖息捕食者在整合相邻生态系统内部和之间的局部食物网方面起着关键作用。

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