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镁磷协同作用和小麦农业中谷物产量的共同限制的证据。

Evidence for magnesium-phosphorus synergism and co-limitation of grain yield in wheat agriculture.

机构信息

Department of Crop Production Ecology, Swedish University of Agricultural Sciences, PO Box 7043, 750 07, Uppsala, Sweden.

Department of Soil and Environment, Swedish University of Agricultural Sciences, 750 07, Uppsala, Sweden.

出版信息

Sci Rep. 2021 Apr 27;11(1):9012. doi: 10.1038/s41598-021-88588-8.

Abstract

Modern crop production is characterized by high nitrogen (N) application rates, which can influence the co-limitation of harvested yield by other nutrients. Using a multidimensional niche volume concept and scaling exponents frequently applied in plant ecological research, we report that increased N and phosphorus (P) uptake in a growing wheat crop along with enhanced grain biomass is associated with more than proportional increase of other nutrients. Furthermore, N conversion efficiency and grain yield are strongly affected by the magnesium (Mg) to P ratio in the growing crop. We analyzed a field trial in Central Sweden including nine wheat varieties grown during two years with contrasting weather, and found evidence for Mg co-limitation at lower grain yields and P co-limitation at higher yields. We argue that critical concentrations of single nutrients, which are often applied in agronomy, should be replaced by nutrient ratios. In addition, links between plant P and Mg contents and root traits were found; high root number enhanced the P:N ratio, whilst steep root angle, indicating deep roots, increased the Mg:N ratio. The results have significant implications on the management and breeding targets of agriculturally grown wheat, which is one of the most important food crops worldwide.

摘要

现代作物生产的特点是高氮(N)施用量,这会影响其他养分对收获产量的共同限制。我们使用多维生态位体积概念和经常应用于植物生态学研究的标度指数,报告说,随着生长小麦作物中 N 和磷(P)吸收的增加以及谷物生物量的增强,其他养分的增加超过了比例。此外,N 转化率和谷物产量受到生长作物中镁(Mg)与 P 比例的强烈影响。我们分析了瑞典中部的一项田间试验,该试验包括在两年间具有不同天气条件的 9 个小麦品种,结果表明在较低的谷物产量下存在 Mg 共同限制,在较高的产量下存在 P 共同限制。我们认为,农业中经常应用的单一养分临界浓度应该被养分比例所取代。此外,还发现了植物 P 和 Mg 含量与根系特性之间的联系;高根数量增加了 P:N 比,而陡峭的根角(表示深根)增加了 Mg:N 比。这些结果对农业种植小麦的管理和培育目标具有重要意义,小麦是全球最重要的粮食作物之一。

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