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Early Detection of Powdery Mildew Disease in Wheat (Triticum aestivum L.) Using Thermal Imaging Technique

机译:利用热成像技术,早期检测小麦(Triticum Aestivum L.)的粉状霉菌疾病

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Powdery mildew caused by Erysiphe graminis f. sp. tritici is one of the most harmful disease causing great losses in wheat yield. Currently, thermal spectral sensing of plant disease under different environmental conditions in field is a cutting-edge research. Objectives of this study were to assess thermal imaging of normal and infected leaves for early detection of powdery mildew in wheat after the artificial infection with Erysiphe graminis fungus in a pot experiment under greenhouse conditions. Pot experiment lasting for 30 days was conducted. Additionally, wheat seedlings were artificially infected with pathogen at 10 days from sowing. This is the first study in Egypt to use thermal imaging technique for early detection of powdery mildew disease on leaf using thermal signatures of artificial infected leaves as a reference images. Particularly, the variations in temperature between infected and healthy leaves of wheat and the variation between air and leaf-surface temperatures under greenhouse conditions were sensed for early detection of disease. Results revealed that infection with powdery mildew pathogen induced changes in leaf temperature (from 0.37 ? C after one hour from the infection to 0.78 ? C at 21 days after infection with the pathogen) and metabolism, contributing to a distinct thermal signature characterizing the early and late phases of the infection.
机译:由森西麦克林尼斯F引起的粉状霉菌。 sp。 Tritici是最有害的疾病之一,导致小麦产量造成巨大损失。目前,在田间不同环境条件下植物疾病的热光谱传感是一个尖端的研究。本研究的目的是评估正常和感染的叶片的热成像,用于在温室条件下的盆栽实验中的人工感染后的小麦中的粉状霉菌早期检测粉末状霉菌。持续30天的锅实验。此外,小麦幼苗在播种后10天在10天内用病原体感染。这是埃及的第一次研究使用热成像技术,用于利用人工感染叶片作为参考图像的热签名在叶子上早期检测粉末状霉菌疾病。特别是,感染了小麦感染和健康叶片之间的温度变化以及温室条件下的空气和叶面温度之间的变化以早期检测疾病。结果表明,粉末状霉菌病原体诱导叶温的变化(在感染后1小时后从0.37℃左右感染到病原体)和代谢后21天,为早期和造成的明显的热签名贡献感染后期阶段。

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