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首页> 外文期刊>Journal of plant nutrition and soil science >Effect of nitrogen fertilization on nitrogen dynamics in oilseed rape using 15N-labeling field experiment
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Effect of nitrogen fertilization on nitrogen dynamics in oilseed rape using 15N-labeling field experiment

机译:15N标记田间试验研究氮肥对油菜氮素动态的影响

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In order to optimize nitrogen (N) fertilization and to reduce the environmental impact of oilseed rape without decreasing yield, a clearer understanding of N dynamics inside the plant is crucial. The present investigation therefore aimed to study the effects of different N-application rates on the dynamics of N uptake, partitioning, and remobilization. The experiment was conducted on winter oilseed rape (Brassica napus L. cv. Capitol) under three levels of N input (0, 100, and 200 kg N ha~(-1)) from stem elongation to maturity using ~(15)N-labeling technique to distinguish between N uptake and N retranslocation in the plant. Nitrogen fertilization affected the time-course of N uptake and also the allocation of N taken up from flowering to maturity. Most pod N came from N remobilization, and leaves accounted for the largest source of remobilized N regardless the N-application rate. However, the contribution of leaves to the remobilized N pool increased with the N dose whereas the one of taproot decreased. Stems were the main sink for remobilized N from stem elongation to flowering. Leaves remained longer on N200 than on N0 and N100 plants, and N concentration in fallen leaves increased with the N treatment and in N100 plants along an axial gradient from the basal to the upper leaves. Overall, these results show that the timing of N supply is more crucial than the N amount to attain a high N efficiency.
机译:为了在不降低产量的情况下优化氮肥施用并减少油菜对环境的影响,对植物内部氮素动态的更清晰了解至关重要。因此,本研究旨在研究不同氮肥施用量对氮素吸收,分配和迁移动态的影响。该实验是在冬季油料油菜(Brassica napus L. cv。Capitol)上使用〜(15)N在从茎伸长到成熟的三个水平的氮输入下(0、100和200 kg N ha〜(-1))进行的。标记技术,用于区分植物中的氮吸收和氮转运。氮肥的施用影响了氮素吸收的时间过程,也影响了从开花到成熟期吸收的氮素分配。大部分荚果N来自氮素的转运,而无论氮素施用量如何,叶片都是氮素最多的来源。然而,叶片对重新分配的氮库的贡献随着氮素剂量的增加而增加,而主根之一减少。茎是氮从茎伸长到开花的主要贮库。 N200上的叶片比N0和N100上的叶片保留的时间更长,并且经过N处理和N100上的叶片中N的浓度沿从基部到上部叶片的轴向梯度增加。总体而言,这些结果表明,氮供应的时机比氮的供应量更为关键,以实现高氮效率。

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