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Influence of co-application of nitrogen with phosphorus, potassium and sulphur on the apparent efficiency of nitrogen fertiliser use, grain yield and protein content of wheat: Review

机译:氮磷与磷,钾和硫的共同施用对小麦氮肥使用,籽粒产量和蛋白质含量的表观效率:综述

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The efficient capture and utilisation of fertiliser nitrogen (N) by cereals has implications for crop growth, grain yield, farm profits, the environment and human nutrition. Extensive research has evaluated many innovative ways to improve the efficiency of fertiliser N recovery (N use efficiency; NUE) by wheat (Triticum aestivum). This review paper, prepared as an outcome of a workshop by the Nutrient Use Efficiency in Wheat Expert Working Group of the Wheat Initiative held in Harpenden, UK in May 2017, is specifically focused on the effects of the co-application of fertiliser N with fertiliser phosphorus (P), potassium (K) and/or sulphur (S) on the efficiencies of capture and utilisation of fertiliser N and its accumulation in wheat grain, as this specific aspect of wheat nutrition was identified by the meeting as a major gap in knowledge. The contribution of P, K and S individually to grain yield has been reasonably well studied, and it is generally assumed that interactions between N and P, K and S will improve crop performance. However, a total of 32 field studies only have been published since 1963 that examine the effects of multiple nutrients on wheat yield and NUE, or changes in the apparent recovery of fertiliser N (% applied) in grain and its impact on grain protein content. The published data showed that NxP, NxK and NxS interactions led to improvements in NUE and the apparent grain recovery of fertiliser N, with the strongest effects generally coming from co-applications of N + P, followed by N + K then N + S treatments. Only five studies explored the combined or interactive effects of NxPxK, and just one considered either NxPxS or NxPxKxS. Grain yields were usually improved by applications of three (N + P + K) or four (N + P + K + S) nutrients in combination, but it was difficult to draw conclusions about effects on fertiliser N recovery and NUE because of the small number of studies, the variability in responses, and the lack of a N fertiliser alone comparative treatment. Grain protein content did not appear to be strongly increased by nutrient interactions, but it did not decrease with higher yields under N, P, K, S fertilisation suggesting that balanced nutrition may provide some protection against protein dilution as yields increase. The available literature suggested that ensuring balanced availability of P, K and S has the potential to reduce the rates of fertiliser N required by wheat because N appears to be accumulated in grain with greater efficiency. This would have both positive agronomic and environmental benefits.
机译:谷物的有效捕获和利用粒子(N)对作物生长,粮食产量,农业利润,环境和人类营养有影响。广泛的研究已经评估了许多创新方法来提高肥料N恢复的效率(N使用效率; NUE)(Triticum aestivum)。本文在2017年5月,英国港议员举行的小麦专家营养效率的营养利用效率的营养利用效率的营养利用效率的成果,专门针对肥料N与肥料的共同施用的影响磷(P),钾(K)和/或硫(S)对肥料N的捕获和利用效率及其在小麦籽粒中的积累,作为小麦营养的特定方面被会议确定为主要缺口知识。 P,K和S单独饲养的贡献是合理的研究,并且通常认为N和P,K和S之间的相互作用将改善作物性能。然而,自1963年以来,共有32项实地研究似乎探讨了多种营养素对小麦产量和NUE的影响,或谷物中肥料N(%)的表观恢复的变化及其对谷物蛋白质含量的影响。已发表的数据显示,NXP,NXK和NXS相互作用导致NUE的改善和肥料N的表观谷物回收,具有通常来自N + P的共同应用的最强效果,其次是N + K.然后是N + S治疗。只有五项研究探讨了否定的否定或互动的效果,只有一个被认为是NXPXS或NXPXKX。通常通过三种(n + p + k)或四种(n + p + k + k + s)营养成分的应用来改善谷物产量,但由于小研究数量,反应的可变性,以及单独对比较治疗的缺乏氮肥。谷物蛋白质含量没有营养相互作用强烈增加,但在N,P,K,S施肥下没有较高的产量减少,表明平衡营养可能会为产量增加提供一些防止蛋白质稀释的保护。可用文献表明,确保P,K和S的平衡可用性有可能降低小麦所需的肥料N的速率,因为N似乎以更高的效率累积在晶粒中。这将具有积极的农艺和环境效益。

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