首页> 外文期刊>Biology and fertility of soils: Cooperating Journal of the International Society of Soil Science >Orchard floor management effects on nitrogen fertility and soil biological activity in a newly established organic apple orchard
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Orchard floor management effects on nitrogen fertility and soil biological activity in a newly established organic apple orchard

机译:果园地面管理对新建的有机苹果园氮肥和土壤生物活性的影响

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This study addresses the often-competing goals of organic fertility and weed control by evaluating alternative orchard floor management strategies for their impact on N cycling, tree performance, and soil biological activity in a newly established apple (Malus domestica Borkh.) orchard. The standard tillage weed control practice resulted in satisfactory tree growth with desirable levels of leaf N and most other nutrients; however, soil biological activity did not improve. Maintenance of a living cover understory increased soil N concentration and availability and improved soil biological activity; however, tree growth was less than in other treatments likely in response to competition with the living cover understory for space and water. Application of wood chip mulch resulted in exceptional tree growth which may have resulted from greater water availability, but available soil N was lower, and consequently, tree leaf N concentration was low; in addition, soil biological activity was not improved. Clove oil organic herbicide provided poor weed control resulting in lower leaf N and tree growth and did not improve soil biological activity. Brassicaceae seed meal applications enhanced N availability and soil nematode abundance, but leaf N and many other nutrients were below desirable levels, and additional research is needed to optimize this treatment. We conclude that meeting the multiple objectives of weed control, optimal tree health, and increased soil biological activity may require employment of different orchard floor management strategies at different times during the life of the orchard.
机译:这项研究通过评估替代果园地板管理策略对新建立的苹果园(Malus domestica Borkh。)果园氮循环,树木性能和土壤生物活性的影响,从而解决了有机肥力和杂草控制的竞争目标。标准的耕作杂草控制实践使树木生长令人满意,并具有理想水平的叶片氮和大多数其他养分。但是,土壤生物活性没有改善。维持活动林下层增加土壤氮的浓度和可用性,并改善土壤生物活性;但是,由于与活动覆盖层下层空间和水的竞争,树木的生长可能少于其他处理方法。施用木屑覆盖物可导致树木生长异常,这可能是由于可利用的水量较大,但可利用的土壤N含量较低,因此,叶片N含量较低;另外,土壤生物活性没有改善。丁香油有机除草剂对杂草的控制不佳,导致较低的叶片氮和树木生长,并且没有改善土壤生物活性。十字花科种子粉的施用提高了氮素的利用率和土壤线虫的丰度,但叶面氮和许多其他养分含量均低于理想水平,需要进一步研究以优化这种处理方法。我们得出的结论是,要达到杂草控制,最佳树木健康和增加土壤生物活性的多重目标,可能需要在果园寿命期间的不同时间采用不同的果园地面管理策略。

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