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首页> 外文期刊>European Journal of Soil Biology >Relationships among fine roots, fungal hyphae and soil microarthropods among different soil microhabitats in a temperate coniferous forest of Chamaecyparis obtusa
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Relationships among fine roots, fungal hyphae and soil microarthropods among different soil microhabitats in a temperate coniferous forest of Chamaecyparis obtusa

机译:温带针叶林针叶林细根,真菌菌丝与土壤微节肢动物之间的关系

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The relationships between roots and soil communities are not well understood. We used the ingrowth-core method with L-, FH-, and M-layer substrates to investigate the relationships among soil organic carbon, fine root biomass, hyphal length and the numbers of soil microarthropods. The study was carried out in a temperate forest of the arbuscular mycorrhizal conifer, Chamaecyparis obtusa. The relationships among fine roots, fungi and soil microarthropods were different among soil substrates and faunal taxa. Soil carbon contents, fine root biomass, hyphal length and soil-microarthropod numbers were the highest in the FH-substrate, and the lowest in the M-substrate. For each substrate, the total numbers of soil microarthropods did not positively correlated with soil organic carbon. A positive correlation between fine root biomass and the soil microarthropod numbers was significant only in the M-substrate, but not in the L- and FH-substrates. In M-substrates, strong positive correlations were found between fine root biomass or hyphal length and Mesostigmata or Oribatida numbers, but Collembola numbers were not corelated. Further studies of the regulation mechanism of soil food web structures should note that the soil microarthropods have different responses to C sources according to soil conditions and trophic interactions.
机译:根与土壤群落之间的关系尚未得到很好的理解。我们使用具有L,FH和M层基质的向内生长核心方法研究土壤有机碳,细根生物量,菌丝长度和土壤节肢动物数量之间的关系。这项研究是在丛枝菌根针叶树 Chamaecyparis obtusa 的温带森林中进行的。土壤基质和动物类群之间的细根,真菌和土壤节肢动物之间的关系是不同的。土壤碳含量,细根生物量,菌丝长度和土壤节肢动物数量在FH基质中最高,在M基质中最低。对于每种基质,土壤节肢动物的总数与土壤有机碳均不呈正相关。细根生物量与土壤节肢动物数量之间的正相关仅在M-基质中显着,而在L-和FH基质中则不显着。在M-基质中,在细根生物量或菌丝长度与食根或Oribatida数之间发现强正相关,而Collembola数却不相关。对土壤食物网结构调控机制的进一步研究应注意,根据土壤条件和营养相互作用,土壤微节肢动物对碳源的反应不同。

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