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Manipulating cover crop growth by adjusting sowing time and cereal inter-row spacing to enhance residual nitrogen effects

机译:通过调整播播时间和谷物行间距来操纵覆盖作物生长以增强残留的氮效应

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Legume-based cover crop (CC) mixtures can increase nitrogen (N) availability in arable systems, reducing the need for external N inputs, as they retain soil N and fix atmospheric N-2. However, they need sufficient biomass accumulation to influence soil N availability. Early establishment through undersowing can improve CC growth and plant N accumulation, but competition with the main crop should be minimized. This study aimed to investigate the effect of main crop inter-row spacing (12, 18, 24 cm), manure application (without, with) and CC undersowing (early, late, no cover crop) on N accumulation in a legume-based CC mixture and the residual N effect on the following crop. We conducted a field experiment in Denmark with spring wheat as main crop and spring oat as following crop during two pairs of consecutive seasons (2015-2016, 2016-2017). Spring wheat yield was unaffected by inter-row spacing, but it was increased by manure application. In manure treatments, larger inter-row spacing and early CC undersowing increased CC N accumulation by up to 260% (30 kg N ha(-1)), due to increased light availability. Treatments without manure and with early undersowing gave the highest CC N accumulation, resulting in N fertilizer replacement values of 13-50 kg N ha(-1). Thus, increasing main crop inter-row spacing and early undersowing can improve CC growth and N accumulation, and well established legume-based CC could help to stabilize crop yield over time, as suggested by the similar cumulative grain yields (spring wheat + oat) without and with manure.
机译:基于豆科的覆盖作物(CC)混合物可以增加可耕地系统中的氮气(N)可用性,降低对外部N个输入的需求,因为它们保持土壤N并固定大气N-2。然而,它们需要足够的生物质积累来影响土壤n可用性。早期建立通过推导可以改善CC生长和植物N积累,但应尽量减少与主要作物的竞争。本研究旨在探讨主要作物连排间距(12,18,24厘米),粪便应用(无,有)和CC发出(早期,晚期,无覆盖作物)在豆类基于豆类积累的效果CC混合物和残留N对以下作物的影响。我们在两对连续季节(2015-2016,2016-2017)中,在丹麦在丹麦进行了春小麦作为主要作物和弹簧燕麦的田间试验。春小麦产量不受行间距的影响,但通过粪便施用增加。在粪便治疗中,较大的行间距和早期CC发出高达260%的CC n累积(30 kg n ha(-1)),由于较低的光可用性。没有粪肥和早期过度的治疗给出了最高的CC N累积,导致N肥料替换值13-50 kg n(-1)。因此,增加主要作物间间距和早期过度的较早发光可以改善CC生长和N积累,并且成立的基于豆科的CC可以有助于稳定作物产量随着时间的推移,如类似的累积谷物产量(春小麦+燕麦)所提出的没有和粪便。

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