首页> 外文期刊>Journal of Plant Nutrition >Relationships between carbon isotope discrimination and yield of spring wheat under different water and nitrogen levels.
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Relationships between carbon isotope discrimination and yield of spring wheat under different water and nitrogen levels.

机译:不同水氮水平下碳同位素判别与春小麦产量的关系。

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A greenhouse experiment was conducted to investigate the relationships between foliar carbon isotope discrimination ( Delta ) and above ground dry matter (ADM) at different stages during a plant's life cycle, and grain carbon isotope discrimination and grain yield (GY) at maturity of spring wheat (Triticum aestivum L.) under different nitrogen (N) and water levels. Results showed that ADM and GY both increased significantly with decreasing water stress, while the effects of nitrogen on ADM and GY varied with the water conditions. Foliar and grain carbon isotope discrimination decreased with increasing water stress and increasing nitrogen levels. For all water conditions, relationships between carbon isotope discrimination (foliar and grain) and yields (ADM and GY) were significantly positive (P<0.001) at various growth stages. However, at the same water level, the correlations were complex, and under well-watered conditions, ADM and GY were strongly and negatively correlated with foliar and grain carbon isotope discrimination at all growth stages (P<0.001). The correlations were inconsistent and not significant at moderate water level, but were positive under drought. Our results showed that water and nitrogen both significantly affected the relationships between yield and carbon isotope discrimination of spring wheat, that there are interactions between these two parameters, and that environmental conditions such as water and fertilizer must thus be considered in future research on the relationship between yield and carbon isotope discrimination of spring wheat..
机译:进行了温室试验,以研究植物生命周期中不同阶段的叶碳同位素歧视(Delta)与地上干物质(ADM)之间的关系,以及春小麦成熟期的谷物碳同位素歧视与谷物产量(GY)之间的关系。 (Triticum aestivum L.)在不同的氮(N)和水含量下。结果表明,ADM和GY均随着水分胁迫的减少而显着增加,而氮对ADM和GY的影响随水分条件的变化而变化。随着水分胁迫和氮含量的增加,叶片和谷物碳同位素的分辨力降低。在所有水分条件下,碳同位素判别(叶面和谷粒)与产量(ADM和GY)之间的关系在各个生长阶段均显着为正(P <0.001)。然而,在相同的水位下,相关性很复杂,并且在充足的水条件下,ADM和GY在各个生长期与叶面和谷物碳同位素的辨别力均呈负相关(P <0.001)。相关性不一致,在中等水位下不显着,但在干旱下呈正相关。我们的结果表明,水和氮都显着影响春小麦产量与碳同位素判别之间的关系,这两个参数之间存在相互作用,因此在未来的关系研究中必须考虑水和肥料等环境条件产量与碳同位素判别之间的关系

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