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Analysing the effect of paddy rice variety on fluorescence characteristics for nitrogen application monitoring

机译:分析水稻品种对荧光特性的影响以供氮监测

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摘要

Paddy rice is one of the most important cereal crops worldwide, so it is very important to accurately monitor its growth status and photosynthetic efficiency. The nitrogen (N) level is a key factor closely related to crop growth. In this study, laser-induced fluorescence (LIF) technology combined with multi-variate analysis was applied to investigate the effect of paddy rice variety on N fertilizer level monitoring. Principal components analysis was conducted to extract the variables of the main fluorescence characteristics to identify N levels. Experimental results demonstrated that no nitrogen fertilizer can be completely identified for each paddy rice variety. In addition, other N levels can also be well classified based on the fluorescence characteristics. The relationship between the fluorescence ratio (F735/F685 : F735, and F685 denote the fluorescence intensity at 735 nm, and 685 nm, respectively) and leaf N content of different paddy rice varieties is also discussed. Experimental results revealed that LIF technology is an effective method of monitoring the N fertilizer and leaf biochemical components of paddy rice.
机译:水稻是世界上最重要的谷物作物之一,因此准确监测其生长状况和光合效率非常重要。氮含量是与作物生长密切相关的关键因素。在这项研究中,激光诱导荧光(LIF)技术与多变量分析相结合,用于研究水稻品种对氮肥水平监测的影响。进行主成分分析以提取主要荧光特征的变量以鉴定N水平。实验结果表明,每种水稻品种都不能完全鉴定出氮肥。另外,还可以基于荧光特性很好地分类其他N水平。还讨论了不同水稻品种的荧光比(F735 / F685:F735和F685分别表示735 nm和685 nm的荧光强度)与叶片氮含量之间的关系。实验结果表明,LIF技术是监测水稻氮肥和叶片生化成分的有效方法。

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