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首页> 外文期刊>European Journal of Agronomy >Dependence of seed nitrogen concentration on plant nitrogen availability during the seed filling in pea.
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Dependence of seed nitrogen concentration on plant nitrogen availability during the seed filling in pea.

机译:豌豆种子充实过程中种子氮素浓度对植物氮素利用率的依赖性。

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摘要

The pattern of seed N concentration during pea seed filling was analysed at a given node as the ratio of seed N accumulation rate and seed dry matter accumulation rate. Three experiments were conducted in the field and glasshouse. Pea genotypes Solara, Frisson and its non-nodulating mutant P2 were grown and different treatments were applied to manipulate N availability during seed filling. Treatments included N supply (addition of N fertilizer), depodding (removal of pods) and defoliation (removalof leaves). Changing the N availability during the seed filling affected the seed N concentration in all experiments. Seed N concentration increased or decreased when plant N availability was enhanced or reduced respectively. The response of seed N concentration to N availability was not caused by variations in the seed dry matter accumulation rate, as this rate is fixed at the beginning of the seed filling. Changes in seed N concentrations were mainly caused by variations in the seed N accumulation rates according to N availability in the plant. The results demonstrate that seed N and dry matter accumulations are not similarly controlled during seed filling. Unlike the seed dry matter accumulation rate, the seed N accumulation rate at a given node canvary with time and depends mainly on N availability in the plant regardless of genotype. However, seeds seem to have minimal N requirements (approximately 2.6 mg g-1 of N) whatever the genotype.
机译:以给定的结点分析豌豆种子灌浆过程中种子氮浓度的变化规律,作为种子氮积累速率与种子干物质积累速率之比。在野外和温室进行了三个实验。豌豆基因型Solara,Frisson及其非结瘤突变体P2均已生长,并在种子灌装过程中采用了不同的处理方法来控制氮素的有效性。处理包括氮供应(添加氮肥),去荚(去除豆荚)和脱叶(去除叶子)。在所有实验中,改变种子填充过程中氮的有效性都会影响种子氮的浓度。当植物氮素的利用率增加或降低时,种子氮素的含量增加或减少。种子氮素浓度对氮素有效性的响应不是由种子干物质积累速率的变化引起的,因为该速率在种子灌装开始时是固定的。种子中氮素浓度的变化主要是由种子中氮素累积率的变化所引起的,这取决于植物中氮素的利用率。结果表明,种子氮和干物质积累在种子填充过程中没有得到类似的控制。与种子干物质积累速率不同,给定节点上的种子N积累速率会随时间变化,并且主要取决于植物中的N利用率,而与基因型无关。但是,无论基因型如何,种子似乎对氮的需求极低(约2.6 mg g-1的N)。

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