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首页> 外文期刊>European Journal of Soil Science >Detritusphere effects on P availability and C mineralization in soil
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Detritusphere effects on P availability and C mineralization in soil

机译:碎屑对土壤中磷有效性和碳矿化的影响

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This paper investigates two possible processes in the detritusphere: the effect of various fresh plant materials on extractable phosphorus in soil and the effect of decomposing litter on mineralization of soil microbial residues. The objective was to quantify these two poorly-studied processes. The work was done in a soil at two different fertility levels following 30 years of different fertilizer practice, as we have previously observed effects of fertilizer history on soil carbon dynamics. We incubated fresh leaf material from Lupinus, Raphanus and Rumex separated from the soil by a fine mesh. At 4, 7, 14 and 28 days after incubation, extractable phosphate was measured in 1-mm soil layers at increasing distance from the litter. In order to establish a labelled microbial residue pool, the soil had been labelled with C-14-glucose 3 weeks prior to incubation, and respiration was measured throughout the incubation. Extractable soil phosphorus (P) increased up to 3 mm from the litter layer, most in Rumex and least in Lupinus. Extractable soil P increased throughout the sampling period, corresponding to a maximum of 20% of the P lost from the plant litter layer. Measurement of residue-derived organic acids in the soil showed no specific pattern. The study did not indicate any solubilization of soil P as the increase in soluble P can be fully accounted for by leakage from the litter. Mineralization of soil C-14 in the form of microbial biomass and microbial residues was significantly accelerated by the addition of litter. The magnitude was correlated with decomposition of the plant litter, and corresponded to a maximum of 5% of the soil C-14. Because of the localized impact of litter on the detritusphere soil layer, the impact on soil C-14 in this soil fraction was potentially even greater. In conclusion, the decomposition of litter had significant effects on soil carbon mineralization, although we could not demonstrate an effect of plant-derived compounds on soil P availability, beyond the direct contribution of litter P.
机译:本文研究了赤潮中的两个可能过程:各种新鲜植物材料对土壤中可提取磷的影响以及分解垃圾对土壤微生物残留矿化的影响。目的是量化这两个研究不足的过程。经过30年的不同肥料实践,这项工作是在两种不同肥力水平的土壤上完成的,因为我们之前已经观察到肥料历史对土壤碳动态的影响。我们孵育了羽扇豆,Raphanus和Rumex的新鲜叶片材料,并通过细网将其与土壤分开。孵化后第4、7、14和28天,在距垫料距离增加的1毫米土壤层中测量了可提取的磷酸盐。为了建立标记的微生物残留库,在孵育前3周用C-14-葡萄糖标记土壤,并在整个孵育过程中测量呼吸。可提取的土壤磷(P)从垫料层增加到3 mm,最大的是Rumex,最少的是羽扇豆。在整个采样期间,可提取的土壤P均增加,最多相当于植物凋落物层中P最多损失20%。对土壤中残留物衍生的有机酸的测量没有特定的模式。这项研究没有表明土壤P的增溶作用,因为可溶P的增加可以由垫料的渗漏完全解决。通过添加垫料,以微生物生物量和微生物残留物形式的土壤C-14矿化作用显着加速。强度与植物凋落物的分解相关,并且对应于最大土壤C-14的5%。由于垃圾对碎屑土土壤层的局部影响,在该土壤部分中对土壤C-14的影响可能更大。总之,尽管我们无法证明植物来源的化合物对土壤磷的有效利用的影响,但凋落物的分解对土壤碳的矿化作用有显着影响,但不能直接归因于凋落物P的直接贡献。

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