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Construction of a critical nitrogen dilution curve for maize in Southwest China

机译:西南玉米染色氮稀释曲线的构建

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There is an urgent need for suitable nitrogen nutrition models for Southwest China, which take into account nutritional differences at the cultivar level, to provide scientific guidance for cultivar-specific fertilizer applications during maize production. In this study, the nitrogen-efficient maize cultivar Zhenghong 311 and the nitrogen-inefficient maize cultivar Xianyu 508 were used in a three-year field experiment and a 2-year field pot experiment with nitrogen application rates ranging from 0 to 450?kg·hm?2 to construct a critical nitrogen dilution curve model for each maize cultivar. The usefulness of this model to diagnose nitrogen status and evaluate maize fertilization needs was subsequently analyzed. We found that the critical nitrogen concentration in maize aboveground tissues was a power function of the biomass, described by the equations Nc?=?26.126?W?0.292 and Nc?=?25.826?W?0.302 for ZH 311 and XY 508 cultivars, respectively. The fitting degree of these equations was significant or highly significant, demonstrating the suitability of these models to diagnose N deficiency and fertilization needs in maize plants grown in the hilly areas of central Sichuan. A very significant linear positive correlation between the nitrogen nutrient index (NNI) and nitrogen concentration in the aboveground tissues was detected. Based on this, we calculated the nitrogen concentration (Nt) for an NNI equal to 1 at different maize growth stages in both cultivars and observed that the Nt value can be used as a reference index for nitrogen nutrition diagnosis. Additionally, we found a highly significant quadratic convex function relationship between the NNI (y) and the nitrogen fertilizer level (x). The following regression equations were derived for these maize cultivars with the data obtained from each growth period along five consecutive years (2011–2015): yZH 311?=???0.000005x2?+?0.003074x?+?0.553206 (R2?=?0.5432**) and yXY 508?=???0.000004x2?+?0.002914x?+?0.512555 (R2?=?0.6279**). For an NNI value equal to 1, the nitrogen application level required was 224.07?kg·hm?2 for ZH 311 and 283.01?kg·hm?2 for XY 508, indicating that the suitable application rate for the nitrogen-efficient cultivar is lower than that for the nitrogen-inefficient cultivar. Our experimental data reinforce the concept that selecting nitrogen-efficient maize cultivars is an effective technical measure to reduce nitrogen input needs and increase nitrogen use efficiency during maize production.
机译:迫切需要西南地区合适的氮营养模型,以考虑品种水平的营养差异,为玉米生产中的品种特异性肥料应用提供科学指导。在这项研究中,培养型玉米品种振龙311和氮效玉米品种Xianyu 508用于三年的田间实验和2年的现场盆试验,氮施用率范围为0至450?kg· HM?2构建每种玉米品种的临界氮稀释曲线模型。随后分析了该模型诊断氮现状和评估玉米施肥需求的有用性。我们发现玉米地上组织中的临界氮浓度是生物质的功率函数,由等式Nc?=Δ= 26.126?w?0.292和nc?= 25.826?w?0.302为Zh 311和XY 508品种,分别。这些方程的拟合程度是显着的或非常重要的,展示了这些模型在四川丘陵地区种植的玉米植物中诊断N缺乏和施肥需求的适用性。检测到地上组织中的氮营养指数(NNI)和氮浓度之间的非常显着的线性正相关性。基于此,我们计算了在两种品种不同玉米生长阶段的NNI等于1的氮浓度(NT),并且观察到NT值可用作氮营养诊断的参考指标。另外,我们发现NNI(Y)和氮肥水平(X)之间的高度显着的二次凸起功能关系。对于这些玉米品种来源的下列回归方程具有从每个增长期间的数据连续五年(2011-2015):YZH 311?= ??? 0.000005x2?+ 0.003074x?0.553206(R2?= ?0.5432 **)和Yxy 508?= ??? 0.000004x2?+ 0.002914x?+ 0.512555(R2?= 0.6279 **)。对于等于1的NNI值,所需的氮施用水平为224.07Ω·kg·hm?2对于xy 508,表明氮效效率的合适施用率较低而不是氮效的品种。我们的实验数据强化了选择氮效率玉米品种的概念是一种有效的技术措施,以减少氮素输入需求并增加玉米生产过程中的氮气使用效率。

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