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首页> 外文期刊>HortScience >Combining Legume Groundcovers and Low Nitrogen Fertilization in a Short-rotation Fraser Fir (Abies fraseri) Cropping System: Effect on Productivity, Soil Fertility, and Nutrient Leaching
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Combining Legume Groundcovers and Low Nitrogen Fertilization in a Short-rotation Fraser Fir (Abies fraseri) Cropping System: Effect on Productivity, Soil Fertility, and Nutrient Leaching

机译:在短周期的弗雷泽杉木(Abies fraseri)种植系统中结合豆科植物的地被植物和低氮肥:对生产力,土壤肥力和养分淋溶的影响

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摘要

High rates of inorganic fertilizers are used in conventional intensive production systems such as Abies fraseri (fraser fir) cropping systems for Christmas trees. Groundcovers can be used as green mulches, help reduce the use of farm chemicals, and provide several environmental benefits. We investigated the performance of a low-input cropping system by combining two legume cover crops [Dutch white clover (Trifolium repens) and alfalfa (Medicago sativa)] in combination with low rates of inorganic fertilizers as a step toward a more sustainable production system. The randomized block design comprised one cover crop and one of three applications of reduced rate inorganic fertilizer (75%, 50%, and 25% of the recommended rate). A conventional system using herbicides for weed control and the 100% rate of inorganic fertilizer was used as a control. Parameters measured included tree morphology, foliar nitrogen concentration, soil mineral nitrogen, and nitrate-N leaching below the root zone. A significant positive growth response (height and diameter) was obtained in all alfalfa-based cropping systems. This was accompanied by foliar nutrient concentrations similar to conventional plots and a reduction in nitrate-N leaching. However, in white clover-based cropping systems, the growth response was reduced (both height and diameter), suggesting competition for soil resources. In addition, the total nitrate-N leaching was higher in this system, suggesting an imbalance between mineral nitrogen availability and use in white clover-based cropping systems. We conclude that if the potential competition between cover crops and trees can be properly managed, legume cover crops can be effectively used to make intensive production tree-based systems more sustainable. Further studies related to mineralization and macronutrient flows are needed before any definite recommendation can be made about the use of these systems in large-scale production systems.
机译:在传统的集约化生产系统中,例如用于圣诞树的冷杉木(fraies fir)(fraser fir)种植系统中,使用了高含量的无机肥料。地被植物可用作绿地覆盖物,有助于减少农用化学品的使用,并具有多种环境效益。我们通过将两种豆科作物的农作物[荷兰白三叶草(Trifolium repens)和苜蓿(Medicago sativa)]与低无机肥料的用量相结合,研究了低投入种植系统的性能,以朝着更可持续的生产体系​​迈进。随机区组设计包括一种覆盖作物和三种减量无机肥(推荐量的75%,50%和25%)的施用之一。使用除草剂控制杂草和无机肥100%的常规系统作为对照。测量的参数包括树木形态,叶面氮浓度,土壤矿质氮和根区以下的硝态氮淋溶。在所有基于苜蓿的种植系统中均获得了显着的正增长响应(高度和直径)。与之相伴的是叶面养分浓度与常规田相似,硝酸盐氮的淋溶减少。然而,在以白三叶草为基础的种植系统中,生长反应(高度和直径)都降低了,这表明了对土壤资源的竞争。此外,该系统中的总硝态氮淋失量更高,表明矿物质氮的有效性与基于白三叶草的种植系统中氮素的利用率不平衡。我们得出的结论是,如果可以适当地管理覆盖作物和树木之间的潜在竞争,则可以有效地利用豆类覆盖作物来使集约化生产树本系统更具可持续性。在就在大规模生产系统中使用这些系统提出任何明确建议之前,需要进一步进行与矿化和大量营养素流有关的研究。

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