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首页> 外文期刊>Chilean Journal of Agricultural Research >Interrelationships between Grain Nitrogen Content and other Indicators of Nitrogen Accumulation and Utilization Efficiency in Wheat Plants
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Interrelationships between Grain Nitrogen Content and other Indicators of Nitrogen Accumulation and Utilization Efficiency in Wheat Plants

机译:小麦植物籽粒氮含量与其他氮气积累指标的相互关系

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The topic of N wheat nutrition was prevalent during the last decades of the 20th century for many reasons such as energy crises, profitability of small grain production, and ecosystem protection and preservation. The objective of this study was to determine the interrelationships between wheat (Triticum aestivum L.) grain N content and other indicators of N nutrition efficiency to better understand the N nutrition process in wheat plants. The experiment included 30 wheat cultivars and experimental lines from Serbia. Plant samples of each genotype were taken at anthesis and maturity. The following parameters related to N accumulation and translocation within the wheat plant were calculated: N content (at anthesis, grain, straw, and total at maturity), N harvest index (NHI), N reutilization (N reU), and N lost (-) or gained (N post-anthesis). Our results showed that N content in the aboveground part of the plant expressed very strong direct positive effects on N yield (phenotypic coefficient 3.78** to 9.34** and genotypic coefficient 1.43** to 2.32**), while its indirect effects varied. The influence of independent variables on grain N content has been changing from year to year in a negative way. Total N accumulation (N total) had the highest negative direct effect in the first year of the study (phenotypic coefficient -2.11**), N total in the second (phenotypic coefficient -2.78**), and N reutilization in the third (phenotypic coefficient -8.49**). Genotypic coefficients indicate that the most frequent strong direct negative effect was N reutilization (-0.47** and -0.99** in the first 2 yr of research, respectively). Nitrogen reutilization and its current assimilation are very important and related to grain N supply processes. Their interaction leads to the conclusion that forming N yield is a very complex mechanism and, as a result, grain yield and quality. The abovementioned parameters could be considered as important criteria in wheat breeding to improve production efficiency and reduce adverse impacts of N fertilizers on the ecosystem.
机译:由于能源危机,小粮食生产的盈利能力等许多原因,N小麦营养的主题普遍存在20世纪。本研究的目的是确定小麦(Triticum Aestivum L.)谷物N含量和N营养效率的其他指标之间的相互关系,以更好地了解小麦植物中的N营养过程。实验包括塞尔维亚的30个小麦品种和实验排。在原始型的植物样品在花序和成熟时拍摄。计算与小麦植物中的N累积和易位相关的以下参数:N含量(在成熟度的开花,谷物,稻草和总量),n个收获指数(NHI),N Refilization(N Reu),丢失( - )或获得(第n个后的)。我们的研究结果表明,该植物的上述部分中的N含量对N产量(表型系数3.78 **至9.34 **和基因型系数1.43 **至2.32 **)表示非常强烈的直接阳性作用。独立变量对谷物N内容的影响从一年中的往年之间变化。在研究的第一年(表型系数-2.11 **)中,N总量直接效应最高(总量-2.11 **),N总量(表型系数-2.78 **),第三个(表型系数-8.49 **)。基因型系数表明,最常见的强烈直接负效应是N Refilization(分别在研究的前2年的第一个重复化(-0.47 **和-0.99 **)。氮素再利用及其目前的同化非常重要,与谷物N供应过程有关。它们的相互作用导致形成n产量的结论是一种非常复杂的机制,结果,籽粒产量和质量。上述参数可以被视为小麦育种的重要标准,以提高生产效率,降低N肥对生态系统的不良影响。

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