除草剂作用下豌豆叶片反射率变化的早期检测

D. Krezhova, T. Yanev, V. Alexieva, S. Ivanov
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引用次数: 15

摘要

基于高分辨率叶片光谱反射率数据,提出了一种检测农业植物在低强度胁迫因子(除草剂)作用下的危害的新方法,该方法在极低浓度下无法通过标准生化和生物识别技术确定。通过对三种低浓度(阿特拉津为2.15、21.5和215 /spl mu/g/l, 2.4-苯氧乙酸为2.59、25.9和259 /spl mu/g/l)施用阿特拉津和2.4-苯氧乙酸为2.4- phenoxyacetic acid,分别为0.01 /spl mu/M、0.1 /spl mu/M和1 /spl mu/g/l)的豌豆植株叶片光谱反射率的遥感研究,比较了田间常用除草剂阿特拉津和2.4-苯氧乙酸对豌豆叶片光谱反射率的影响。利用植物的长度、鲜重、干重和电解质泄漏等生物特征和生化参数来评估植株的生理状态。利用多通道光谱仪在128个通道的电磁波谱可见和近红外范围内获得了高分辨率的光谱数据,光谱分辨率(半宽)为2.6 nm。利用判别分析和其他统计方法,我们确定了对照和处理植株在绿色(520+580 nm)、红色和近红外(690+800 nm)光谱范围内叶片光谱反射率特性的变化存在统计学显著差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Early detection of changes in leaf reflectance of pea plants (Pisum sativum L.) under herbicide action
Based on high resolution leaf spectral reflectance data a new technique was developed and applied to detect damages of agricultural plants under the action of low intensity stress factors (herbicides) which at very low concentrations could not be established by the standard biochemical and biometric techniques. Results are presented from a remote sensing study of the peculiarities of the leaf spectral reflectance of pea plants (Pisum salivum L.) treated with atrazine and 2.4-D (2.4 - phenoxyacetic acid) at three low concentrations (0.01 /spl mu/M, 0.1 /spl mu/M and 1 /spl mu/M, respectively 2.15, 21.5, and 215 /spl mu/g/l for atrazine and 2.59, 25.9, and 259 /spl mu/g/l for 2.4-D) as compared to the field dose of these herbicides commonly used in the agricultural practice. The physiological status of the plants was assessed using biometric and biochemical parameters such as length, fresh weight, dry weight and electrolyte leakage. The high-resolution spectral data were obtained using a multichannel spectrometer in the visible and near infrared ranges of the electromagnetic spectrum in 128 channels at a spectral resolution (halfwidth) of 2.6 nm. Using the technique which employs discriminant analysis and other statistical methods we established the presence of statistically significant differences in the arising variations of the leaf spectral reflectance characteristics between control and treated plants in the green (520+580 nm), red and near infrared (690+800 nm) ranges of the spectrum.
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