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A Review of Methods for Sensing the Nitrogen Status in Plants: Advantages Disadvantages and Recent Advances

机译:植物氮素感测方法的综述:优点缺点和最新进展

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摘要

Nitrogen (N) plays a key role in the plant life cycle. It is the main plant mineral nutrient needed for chlorophyll production and other plant cell components (proteins, nucleic acids, amino acids). Crop yield is affected by plant N status. Thus, the optimization of nitrogen fertilization has become the object of intense research due to its environmental and economic impact. This article focuses on reviewing current methods and techniques used to determine plant N status. Kjeldahl digestion and Dumas combustion have been used as reference methods for N determination in plants, but they are destructive and time consuming. By using spectroradiometers, reflectometers, imagery from satellite sensors and digital cameras, optical properties have been measured to estimate N in plants, such as crop canopy reflectance, leaf transmittance, chlorophyll and polyphenol fluorescence. High correlation has been found between optical parameters and plant N status, and those techniques are not destructive. However, some drawbacks include chlorophyll saturation, atmospheric and soil interference, and the high cost of instruments. Electrical properties of plant tissue have been used to estimate quality in fruits, and water content in plants, as well as nutrient deficiency, which suggests that they have potential for use in plant N determination.
机译:氮在植物的生命周期中起着关键作用。它是叶绿素生产和其他植物细胞成分(蛋白质,核酸,氨基酸)所需的主要植物矿物质营养素。作物产量受植物氮素状况的影响。因此,由于其对环境和经济的影响,最优化氮肥的施肥已成为研究的对象。本文重点介绍用于确定植物N状况的当前方法和技术。凯氏消化和杜马斯燃烧已被用作植物中氮测定的参考方法,但它们具有破坏性且耗时。通过使用分光辐射计,反射计,卫星传感器和数码相机的图像,已测量了光学特性以估计植物中的氮,例如作物冠层反射率,叶片透射率,叶绿素和多酚荧光。已发现光学参数与植物氮素状态之间具有高度相关性,这些技术无损。但是,一些缺点包括叶绿素饱和度,大气和土壤干扰以及仪器的高成本。植物组织的电学特性已被用于估计水果的品质,植物中的水分以及营养缺乏,这表明它们具有用于植物氮测定的潜力。

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