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Invertebrate grazing affects nitrogen partitioning in the saprotrophic fungus Phanerochaete velutina

机译:无脊椎动物放牧影响腐生真菌Phanerochaete velutina中的氮分配

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The heterogeneity of nutrients in forest soils is governed by many biotic and abiotic factors. The significance of nutrient patchiness in determining soil processes remains poorly understood. Some saprotrophic basidiomycete fungi influence nutrient heterogeneity by forming large mycelial networks that enable translocation of nutrients between colonized patches of dead organic matter. The effect of mycophagous soil fauna on these networks and subsequent nutrient redistribution has, however, been little studied. We used a soil microcosm system to investigate the potential effects of a mycophagous collembola, Protaphorura armata, on nutrient transfer within, and nutrient loss from, the mycelium of a saprotrophic basidiomycete fungus, Phanerochaete velutina. A N-15 label, added to central mycelium, was used to track nitrogen movement within the microcosms across 32 days. Although collembola grazing had little impact on delta N-15 values, it did alter the partitioning of N-15 between different regions of mycelia. Less N-15 was transferred to new mycelial growth in grazed systems than in ungrazed systems, presumably because collembola reduced fungal growth rate and altered mycelial morphology. Surprisingly, collembola grazing did not increase the mineralization of N from mycelium into the bulk soil. Overall, our results suggest that mycophagous soil fauna can alter nutrient flux and partitioning within fungal mycelium; this has the potential to affect the dynamics and spatial heterogeneity of forest floor nutrients
机译:森林土壤养分的异质性受许多生物和非生物因素控制。在确定土壤过程中养分斑块的重要性仍然知之甚少。一些腐生的担子菌真菌通过形成大型菌丝网络来影响营养物异质性,使菌丝能够在定植的死有机物质斑块之间转移。然而,对食真菌性土壤动物群对这些网络和随后的养分再分配的影响却鲜有研究。我们使用土壤微观系统研究了食虫性食虫性跳虫Protaphorura armata对腐生的担子菌真菌Phanerochaete velutina的菌丝体内的养分转移和养分损失的潜在影响。在中央菌丝体上添加了一个N-15标签,用于跟踪32天缩微中的氮运动。尽管Collembola放牧对ΔN-15值影响很小,但确实改变了N-15在菌丝体不同区域之间的分配。在放牧系统中,转移到新菌丝体上的N-15比未在未涂草系统中转移到新的菌丝体上的少,这可能是因为Collembola降低了真菌的生长速率并改变了菌丝体的形态。出人意料的是,Collembola放牧并没有增加氮从菌丝体到大块土壤的矿化作用。总的来说,我们的研究结果表明,食菌性土壤动物可以改变营养流和真菌菌丝体内的分配。这有可能影响林地养分的动态和空间异质性

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