首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Effect of Nitrogenous Fertilizer on Grain Yield and Grain Protein Concentration in Winter Wheat
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Effect of Nitrogenous Fertilizer on Grain Yield and Grain Protein Concentration in Winter Wheat

机译:氮肥对冬小麦籽粒产量和蛋白质含量的影响。

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Baking quality of wheat in commercial cultivars generally depends on the protein concentration of the grain.Grain yield and grain protein concentration (GPC) in wheat is influenced by genotype and nitrogeneous fertilizer.However,nitrogeneous fertilizer can increase residual soil nitrate after harvest.The purpose of this study was to evaluate the effect of nitrogeneous fertilizer on grain yield,GPC and the relation grain yield and GPC in winter wheat.The experiments were conducted during two growing seasons in Tokat conditions of Turkey.Four nitrogen treatments (50,100,150 and 200 kg N/ha) were applied on two cultivars (Bezostaja-I and Momtchill).GPC and grain yield varied depending mainly on the year,genotype and nitrogen rates.Nitrogeneous fertilizer increased grain yield and GPC.However,the increases in grain yields were not significant when increasing from 100 kg N/ha to higher nitrogen rates.GPC was significantly affected by nitrogen rate (except for MorntehiH in 2002) and GPC increased along with increasing nitrogeneous fertilizer rates,but the responses to added nitrogen were variable in genotypes and years.GPC in Bezostaja-I increased in a quadric manner as grain yield increased,whereas in Momtchill,the response was linear (in 2002).The results of this study show that high rates of nitrogeneous fertilizer may increase GPC and grain yield.On the other hand,the application of nitrogen at rates (more than 100-150 kg N/ha) exceeding plant utilization represents an unnecessary input cost to wheat producers and may contribute to the leaching of soil nitrate into the ground water.Therefore,the requirements for high GPC and grain yield must be accompanied by farm practices that make efficient use of the nitrogeneous fertilizer and minimize the risk of nitrate losses to water supplies.
机译:商业品种小麦的烘烤质量通常取决于籽粒的蛋白质浓度,小麦的籽粒产量和籽粒蛋白质浓度(GPC)受基因型和氮肥的影响,但氮肥可增加收获后土壤中的残留硝酸盐。本研究旨在评估氮肥对冬小麦籽粒产量,GPC的影响以及与籽粒产量和GPC的关系。在土耳其的托卡特条件下,在两个生长季节进行了该实验。四种氮处理(50,100,150和200 kg N / ha)施用于两个品种(Bezostaja-I和Momtchill).GPC和谷物产量主要取决于年份,基因型和氮含量变化。氮肥增加了谷物产量和GPC,但是谷物产量的增加并不显着从100 kg N / ha增加到更高的氮含量时,GPC受到氮含量的显着影响(2002年的MorntehiH除外)和GPC随着氮肥用量的增加,氮素的含量有所缓解,但是基因型和年限对氮素添加量的响应是可变的.Bezostaja-I的GPC随产量增加呈二次方增加,而Momtchill的GPC响应呈线性(2002年)。这项研究的结果表明,高氮肥水平可能会增加GPC和谷物产量。另一方面,氮肥的施用量(超过100-150 kg N / ha)超过了植物的利用率,这对小麦来说是不必要的投入成本。因此,对高GPC和谷物产量的要求必须伴随着有效利用氮肥并使硝酸盐损失给水的风险最小化的农场实践。

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