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Simple Assessment of Nitrogen Nutrition Index in Summer Maize by Using Chlorophyll Meter Readings

机译:利用叶绿素仪读数简单评估夏玉米氮营养指数

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摘要

Rapid and non-destructive diagnostic tools to accurately assess crop nitrogen nutrition index (NNI) are imperative for improving crop nitrogen (N) diagnosis and sustaining crop production. This study was aimed to develop the relationships among NNI, leaf N gradient, chlorophyll meter (CM) readings gradient, and positional differences chlorophyll meter index [PDCMI, the ratio of CM readings between different leaf layers (LLs) of crop canopy] and to validate the accuracy and stability of these relationships across the different LLs, years, sites, and cultivars. Six multi-N rates (0–320 kg ha−1) field experiments were conducted with four summer maize cultivars (Zhengdan958, Denghai605, Xundan20, and Denghai661) at two different sites located in China. Six summer maize plants per plot were harvested at each sampling stage to assess NNI, leaf N concentration and CM readings of different LLs during the vegetative growth period. The results showed that the leaf N gradient, CM readings gradient and PDCMI of different LLs decreased, while the NNI values increased with increasing N supply. The leaf N gradient and CM readings gradient increased gradually from top to bottom of the canopy and CM readings of the bottom LL were more sensitive to changes in plant N concentration. The significantly positive relationship between NNI and CM readings of different LLs (LL1 to LL3) was observed, yet these relationships varied across the years. In contrast, the relationships between NNI and PDCMI of different LLs (LL1 to LL3) were significantly negative. The strongest relationship between PDCMI and NNI which was stable across the cultivars and years was observed for PDCMI1−3 (NNI = −5.74 × PDCMI1−3+1.5, R2 = 0.76**). Additionally, the models developed in this study were validated with the data acquired from two independent experiments to assess their accuracy of prediction. The root mean square error value of 0.1 indicated that the most accurate and robust relationship was observed between PDCMI1–3 and NNI. The projected results would help to develop a simple, non-destructive and reliable approach to accurately assess the crop N status for precisely managing N application during the growth period of summer maize crop.
机译:快速准确地评估作物氮素营养指数(NNI)的诊断工具对于改善作物氮素(N)诊断和维持作物产量至关重要。这项研究旨在开发NNI,叶N梯度,叶绿素仪(CM)读数梯度和位置差异叶绿素仪指数[PDCMI,作物冠层不同叶层(LLs)之间的CM读数比率]之间的关系。验证跨不同的LL,年,地点和品种的这些关系的准确性和稳定性。在中国的两个不同地点,对四个夏玉米品种(郑单958,登海605,旬旦20和登海661)进行了六个多氮水平(0-320 kg ha -1 )田间试验。在每个采样阶段,每块地收获六株夏玉米植株,以评估营养生长期中不同LL的NNI,叶氮浓度和CM读数。结果表明,不同LLs的叶片氮梯度,CM读数梯度和PDCMI降低,而NNI值随氮供应的增加而增加。从冠层的顶部到底部,叶片N梯度和CM读数梯度逐渐增加,而底部LL的CM读数对植物N浓度的变化更敏感。观察到不同的LL(LL1至LL3)的NNI和CM读数之间存在显着的正相关关系,但这些关系多年来一直在变化。相反,不同LL(LL1至LL3)的NNI与PDCMI之间的关系显着为负。在PDCMI1-3中,观察到PDCMI和NNI之间的最强关系在不同品种和年份之间均稳定(NNI = -5.74×PDCMI1-3 + 1.5,R 2 = 0.76 ** < / sup>)。此外,本研究开发的模型已通过两次独立实验获得的数据进行了验证,以评估其预测准确性。均方根误差值为0.1,表明在PDCMI1-3和NNI之间观察到最准确和最可靠的关系。预计的结果将有助于开发一种简单,无损且可靠的方法,以准确评估作物的氮素状况,从而在夏季玉米作物生长期间精确管理氮素的施用。

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