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Nitrogen Metabolism at Tillering Stage Differently Affects the Grain Yield and Grain Protein Content in Two Durum Wheat Cultivars

机译:分Dur期氮素代谢对两个硬粒小麦品种籽粒产量和籽粒蛋白质含量的影响不同

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Soil nitrogen abundance, as well as nitrogen use efficiency (NUE), significantly affect the crop yield and grain protein content (GPC). Depending on the genotype, a negative correlation between the yield and GPC can occur. The aim of the study was to assess the agronomic performance, and to explore physiological pathways for the efficient use of N fertilizer for two durum wheat cultivars, “Aureo” and “Vespucci”. After fertilization, the nitrogen content and values of some of the agronomic parameters and yield-related traits increased in both cultivars; nevertheless, a simultaneous rise in both the yield and GPC occurred only in Aureo. The biochemical parameters, analyzed at tillering, confirm the genotypic specificity of nitrogen use. In Vespucci’s roots, the nitrogen supply did not affect the nitrate reductase (NR), but greatly increased the amino acids and proteins, suggesting that ammonium is preferentially assimilated. In Aureo, nitrate is in part assimilated by the roots, as suggested by the ammonium increase and NR enhancement. In the leaves of both cultivars, organic nitrogen significantly increased after fertilization; however, the rise in amino acids, as well as in NR activity, was higher in Aureo than in Vespucci. These results indicate that the different nitrogen use, and in particular the diverse NR behavior, at tillering, are in part responsible of the cultivar differences in grain yield and GPC.
机译:土壤氮的丰度以及氮的利用效率(NUE)会显着影响作物的产量和籽粒蛋白质含量(GPC)。取决于基因型,产量和GPC之间可能出现负相关。该研究的目的是评估农艺性能,并探索有效利用氮肥的两个硬粒小麦品种“ Aureo”和“ Vespucci”的生理途径。施肥后,两个品种的氮含量和一些农学参数及产量相关性状的值均增加。但是,只有在Aureo中,产量和GPC才同时上升。分till时分析的生化参数确定了氮利用的基因型特异性。在维斯普奇的根中,氮的供应并未影响硝酸盐还原酶(NR),但大大增加了氨基酸和蛋白质的含量,表明铵被优先吸收。在Aureo中,硝酸盐被根部分吸收,这是铵增加和NR增强所暗示的。在两个品种的叶片中,施肥后有机氮均显着增加。然而,Aureo的氨基酸和NR活性的增加高于Vespucci。这些结果表明,分till时氮素的不同使用,尤其是不同的NR行为,部分原因是谷物产量和GPC的品种差异。

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