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真菌-弹尾目昆虫系统中的斑块状分布与补偿性生长

Patchiness and compensatory growth in a fungus-Collembola system.

作者信息

Bengtsson Göran, Hedlund Katarina, Rundgren Sten

机构信息

Department of Ecology, University of Lund, Helgonavägen 5, S-223 62, Lund, Sweden.

出版信息

Oecologia. 1993 Mar;93(2):296-302. doi: 10.1007/BF00317684.

Abstract

The compensatory growth potential of a grazed fungal biomass was mathematically expressed as a function of patchiness in its distribution and demonstrated in an experiment using the fungivorous collembolan Onychiurus armatus and the soil fungi Verticillium bulbillosum and Penicillium spinulosum. The model addresses the regrowth potential in relation to patch fragmentation, travelling time and consumption rate of the collembolan and the mean relative growth rate of the fungus. It suggests that the mean relative growth rate required for regrowth decreases with patch fragmentation and increases with the mean growth rate of the fungus. The experiments were performed with a system of soil-filled vials provided with fungi and collembolans. The size of the vials and the length of the tubes connecting them were varied to give different patch sizes and travelling times. The respiratory activity of fungi after grazing increased as a unit of mycelium was distributed into smaller connected vials. The slow growing species V. bulbillosum showed a greater but delayed response to grazing in comparison with the fast growing P. spinulosum. An increased travelling time delayed the growth response in both species.

摘要

放牧真菌生物量的补偿生长潜力通过数学方法表示为其分布斑块性的函数,并在一项实验中得到证明,该实验使用了食真菌的弹尾虫武装奥氏棘跳虫以及土壤真菌大孢轮枝菌和细梗青霉。该模型探讨了与斑块破碎化、弹尾虫的移动时间和消耗率以及真菌平均相对生长率相关的再生长潜力。结果表明,再生长所需的平均相对生长率随斑块破碎化而降低,随真菌平均生长率而增加。实验采用装有土壤、真菌和弹尾虫的小瓶系统进行。改变小瓶的大小以及连接它们的管子的长度,以得到不同的斑块大小和移动时间。放牧后真菌的呼吸活性随着单位菌丝体分布到更小的相连小瓶中而增加。与生长迅速的细梗青霉相比,生长缓慢的大孢轮枝菌对放牧的反应更大,但延迟出现。移动时间增加会延迟这两个物种的生长反应。

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