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Early pathogen detection under different water status and the assessment of spray application in vineyards through the use of thermal imagery

机译:通过使用热像仪,在不同水质条件下进行早期病原体检测,并评估葡萄园喷洒剂的使用情况

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Remote detection using thermal imagery has potential for use in the pre-symptomatic diagnosis of abiotic stress or of early disease detection. The latter is an issue of great importance since late detection of fungus attacks or poor spray coverage are major factors contributing to weak disease control affecting fruit quality or reducing yield in grapes. In greenhouse experiments the effects on spatial and temporal variability of leaf temperature of grapevine (Vitis vinifera L. cv. Riesling) leaves inoculated with a fungal pathogen (Plasmopara viticola (Berk. & Curt. Ex de Bary) were studied in either well-irrigated or non-irrigated potted plants. Due to the high sensitivity of leaf temperature to the amount of water transpired, infra-red thermography can be used to monitor irregularities in temperature at an early stage of pathogen development. Evidence for characteristic thermal responses in grapevines was apparent well before visible symptoms appeared. Contrasting thermal effects due to the pathogen attack were found between measurements on well-irrigated and water-stressed plants. Furthermore, from a technical point of view, thermal imagery has the potential to assess the evenness of spray coverage within a canopy, hence optimizing pesticide application efficiency.
机译:使用热成像仪进行远程检测具有潜力,可用于症状前的非生物应激诊断或早期疾病检测。后者是一个非常重要的问题,因为较晚发现真菌侵袭或喷雾覆盖率差是导致疾病控制能力弱,影响果实品质或降低葡萄产量的主要因素。在温室实验中,在任何灌溉良好的环境中研究了接种真菌病原体(Plasmopara viticola(Berk。&Curt。Ex de Bary))的葡萄(Vitis vinifera L. cv。Riesling)叶片温度对时空变异的影响。由于叶片温度对所蒸腾的水量具有很高的敏感性,因此红外热像仪可用于监测病原体发育早期温度的不均匀性。在良好灌溉和水分胁迫的植物之间进行测量时,发现了病原体侵袭引起的相反热效应;此外,从技术角度来看,热成像技术有可能评估喷雾覆盖的均匀性在树冠内,从而优化农药的施用效率。

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