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Impacts of long-term plant biomass management on soil phosphorus under temperate grassland

机译:长期植物生物质管理对温带草原土壤磷的影响

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摘要

Aims We assessed and quantified the cumulative impact of 20 years of biomass management on the nature and bioavailability of soil phosphorus (P) accumulated from antecedent fertiliser inputs. Methods Soil (0–2.5, 2.5–5, 5–10 cm) and plant samples were taken from replicate plots in a grassland field experiment maintained for 20 years under contrasting plant biomass regimen- biomass retained or removed after mowing. Analyses included dry matter production and P uptake, root biomass, total soil carbon (C), total nitrogen (N), total P, soil P fractionation, and_(31)P NMR spectroscopy. Results Contemporary plant production and P uptake were over 2-fold higher for the biomass retained compared with the biomass removed regimes. Soil C, total P, soluble and labile forms of inorganic and organic soil P were significantly higher under biomass retention than removal. Conclusions Reserves of soluble and labile inorganic P in soil were significantly depleted in response to continued long-term removal of P in plant biomass compared to retention. However, this was only sufficient to sustain plant production at half the level observed for the biomass retention after 20 years, which was partly attributed to limited mobilisation of organic P in response to P removal.
机译:目的是我们评估和量化了20年生物量管理的累积影响对由前一种肥料投入累积的土壤磷(P)的性质和生物利用度的累积影响。方法在草地田间实验中取出土壤(0-2.5,2.5-5,5-10厘米,5-10cm)和植物样品在对比植物生物质方案 - 生物量后保持20年的20年,割草后保留或除去。分析包括干物质生产和P吸收,根生物质,总土壤碳(C),总氮(N),总P,土壤P分馏,AND_(31)P NMR光谱。结果当代植物生产和P吸收量高于与生物质拆除的生物量保留的生物量高出2倍。在生物质保留下,无机和有机土壤P的土壤C,总P,可溶性和不稳定形式明显高于去除。结论与保留相比植物生物质中的P持续长期去除P溶于溶于和不稳定无机P的储备显着耗尽。然而,这仅足以在20年后观察到的生物质保留的一半水平的植物生产,这部分归因于响应于P除去的有机P的有限调动。

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