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Genotypic variation in the uptake partitioning and remobilisation of nitrogen during grain-filling in wheat

机译:小麦灌浆过程中氮素吸收分配和迁移的基因型变化

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摘要

Twenty elite varieties of wheat (Triticum aestivum L.), primarily winter wheat, were grown with low and high supplies of nitrogen (N) in a field experiment at Rothamsted, southern England, in the season 2004–05. The aim was to quantify genetic variation in the uptake, partitioning and remobilisation of N in individual plant organs at extreme rates of N supply. The biggest contibutor to variation in plant and crop performance was ‘N-rate’ followed by ‘growth stage’ and then ‘genotype’. At both N-rates, there was significant genetic variation in crop performance (grain yield, grain %N, total N-uptake and post-anthesis N-uptake), and in N contents of individual organs at anthesis and maturity, and in N remobilised from individual vegetative organs to the grain during grain-fill. Nitrogen was remobilised from all vegetative organs with very high levels of efficiency by all varieties (80–85%). Stem-N was a major N pool at anthesis probably due to the amounts of soluble N compounds in transit in the vascular system at this time. Despite the genetic variation in N-related plant parameters including stem-N, there were no strong correlations with grain yield and grain %N at a given N-rate. This was probably due to the narrow gene pool employed in this single-season study.
机译:在2004-05年度,在英格兰南部罗塔姆斯特德进行的田间试验中,种植了20种优良的小麦品种(Triticum aestivum L.),主要是冬小麦,其氮素供应量处于高位和低位。目的是量化在极端的氮供应速率下植物个体器官中氮的吸收,分配和迁移的遗传变异。影响植物和农作物生长性能的最大因素是“ N-速率”,其次是“生长阶段”,然后是“基因型”。在两种氮素含量下,作物性能(籽粒产量,籽粒%N,总氮素吸收量和花后氮素吸收量),花期和成熟期各个器官的氮含量以及氮素均存在显着的遗传差异。在灌浆过程中从各个营养器官转移到谷物上。所有品种都以很高的效率从所有营养器官中吸收了氮(80-85%)。干N是花期的主要N库,这可能是由于此时血管系统中运输的可溶性N化合物的数量所致。尽管在与氮有关的植物参数(包括茎氮)中存在遗传变异,但在给定的氮素比例下,其与籽粒产量和籽粒%N均无强相关性。这可能是由于该单季研究中使用的基因库狭窄。

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