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Nitrogen deficiency impacts on leaf cell and tissue structure with consequences for senescence associated processes in Brassica napus

机译:氮缺乏对甘蓝型油菜叶片细胞和组织结构的影响以及衰老相关过程的后果

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摘要

Improvement of nutrient use efficiency is a major goal for several crop plants, especially Brassica napus. Indeed, the low nitrogen use efficiency (NUE) in this crop results in negative economic and ecological consequences. The low NUE of oilseed rape is mainly due to low remobilization of nitrogen from vegetative parts to growing organs. Remobilization of leaf nitrogen takes place during senescence, a process known to strongly modify cell and tissue structure. This study focused on the impact of moderate N depletion, expected to induce 30 % reduction of seed yield, on these structural modifications. Two genotypes (Aviso and Express) were studied, with different tolerance of nitrogen depletion, evaluated through seed yield and dry mass production. Structural modifications of leaf cells and tissues were investigated through NMR relaxometry and light microscopy. Lower tolerance of N depletion was associated with higher impact on senescence associated structural modification pattern. The link between leaf structure modifications and nutrient remobilization is discussed. It is proposed that leaf structure monitoring during senescence through NMR device could be developed to select genotypes with high NUE.Electronic supplementary materialThe online version of this article (doi:10.1186/s40529-016-0125-y) contains supplementary material, which is available to authorized users.
机译:提高养分利用效率是几种农作物特别是甘蓝型油菜的主要目标。实际上,该作物的低氮利用效率(NUE)导致负面的经济和生态后果。油菜的NUE较低主要是由于氮从营养部位向生长器官的迁移率较低。叶氮的迁移发生在衰老过程中,该过程已知会强烈改变细胞和组织的结构。这项研究的重点是中度氮耗竭对这些结构修饰的影响,预期会导致种子产量降低30%。研究了两种基因型(Aviso和Express),它们对氮耗竭的耐受性不同,通过种子产量和干重产量评估。通过核磁共振弛豫和光学显微镜研究了叶细胞和组织的结构修饰。氮耗竭的较低耐受性对衰老相关的结构修饰模式具有更高的影响。讨论了叶片结构修饰与养分迁移之间的联系。建议通过NMR装置开发衰老过程中的叶片结构监测方法,以选择具有较高NUE的基因型。给授权用户。

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