首页> 外文期刊>Journal of plant nutrition and soil science >Contrasting yield responses to phosphorus applications on mineral and organic soils from extensively managed grasslands: Implications for P management in high ecological status catchments
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Contrasting yield responses to phosphorus applications on mineral and organic soils from extensively managed grasslands: Implications for P management in high ecological status catchments

机译:广泛管理草原对矿物质和有机土壤磷应用的对比产生对比:高生态地位集水区P管理的影响

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Phosphorus (P) loss from grassland production is one of the main causes affecting high status water bodies in Europe. Soils with a high content in organic matter (OM), even if extensively managed, are particularly vulnerable to P losses due to their poor P sorption capacities, and can affect the water quality of high status catchments if the dynamics of applied P in these soils is not well understood. The aim of this study was to assess dry matter yield, herbage P content, and P use efficiency in six soils deficient in P and ranging in OM content from 8.7% to 76.4% in a pot experiment under increasing P applications using the Mitscherlich equation. Of the six soils investigated, there was a better response in dry matter yield and greater P use efficiency in the soils with greater OM content than the mineral soils. The Mitscherlich model described grass response precisely in organic soils due to the higher plant availability of applied P as a consequence of the poor P sorption capacities of these soils. Despite the higher availability of applied P for plants in organic soils, the P requirements to meet the threshold herbage P content for dietary P supply to ruminants were still very high, which may pose a risk of P loss to the environment if P fertiliser is applied based on recommendations obtained from plant analysis. These results indicate that P fertilisation of organic soils in sensitive catchments poses a potentially high risk of P transfer to water bodies.
机译:草地生产的磷(P)损失是影响欧洲高地位水体的主要原因之一。在有机物质(OM)中具有高含量的土壤,即使广泛管理,也特别容易受到POS PIRPETION能力的损失,并且如果在这些土壤中应用P的动态,则可以影响高地位集水区的水质不太了解。本研究的目的是评估干物质产率,牧草P含量和P使用六种土壤中的效率,并在使用Mitscherlich方程的增加的P应用中,在POT实验中的8.7%至76.4%中的OM含量为8.7%至76.4%。在调查的六个土壤中,在干燥物质产量和更高的P使用效率方面具有比矿物土壤更高的土壤在土壤中更好的反应。由于这些土壤的P的P吸收能力差,所载型在有机土壤中精确地描述了草响应。尽管有机土壤中植物的应用P较高,但是对反刍动物的膳食P供应阈值牧草P含量的P要求仍然非常高,这可能会对环境施加P肥料,这可能会造成P损失的风险根据从植物分析获得的建议。这些结果表明,敏感流域的有机土壤的P施肥构成了对水体的P转移的可能性高风险。

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