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Detection of plum pox virus infection in selection plum trees using spectral imaging

机译:利用光谱成像技术检测选定李树中的李痘病毒感染

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Plum pox virus (PPV) is among the most studied viral diseases in the world in plants. It is considered to be one of the most devastating diseases of stone fruits in terms of agronomic impact and economic importance. Noninvasive, fast and reliable techniques are required for evaluation of the pathology in selection trees with economic impact. Such advanced tools for PPV detection could be optical techniques as light-induced fluorescence and diffuse reflectance spectroscopies. Specific regions in the electromagnetic spectra have been found to provide information about the physiological stress in plants, and consequently, diseased plants usually exhibit different spectral signature than non-stressed healthy plants in those specific ranges. In this study spectral reflectance and chlorophyll fluorescence were used for the identification of biotic stress caused by the pox virus on plum trees. The spectral responses of healthy and infected leaves from cultivars, which are widespread in Bulgaria were investigated. The two applied techniques revealed statistically significant differences between the spectral data of healthy plum leaves and those infected by PPV in the visible and near-infrared spectral ranges. Their application for biotic stress detection helps in monitoring diseases in plants using the different plant spectral properties in these spectral ranges. The strong relationship between the results indicates the applicability of diffuse reflectance and fluorescence techniques for conducting health condition assessments of vegetation and their importance for plant protection practices.
机译:梅花痘病毒(PPV)是植物中世界上研究最多的病毒性疾病之一。就农艺学影响和经济重要性而言,它被认为是核果危害最严重的疾病之一。需要非侵入性,快速和可靠的技术来评估具有经济影响的选择树中的病理。这种用于PPV检测的高级工具可能是光学技术,例如光诱导荧光和漫反射光谱。已经发现电磁光谱中的特定区域可提供有关植物生理胁迫的信息,因此,在那些特定范围内,患病植物通常表现出与非胁迫健康植物不同的光谱特征。在这项研究中,光谱反射率和叶绿素荧光用于鉴定由李树上的痘病毒引起的生物胁迫。研究了在保加利亚广泛分布的健康和感染品种叶片的光谱响应。两种应用技术揭示了健康李子的光谱数据与在可见和近红外光谱范围内被PPV感染的光谱数据之间的统计学差异。它们在生物胁迫检测中的应用有助于在这些光谱范围内使用不同的植物光谱特性来监视植物中的疾病。结果之间的密切关系表明,漫反射和荧光技术在进行植被健康状况评估方面的适用性及其对植物保护实践的重要性。

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