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Observation of plant-pathogen interaction by simultaneous hyperspectral imaging reflection and transmission measurements

机译:通过同时高光谱成像反射和透射测量观察植物病原体相互作用

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Hyperspectral imaging sensors are valuable tools for plant disease detection and plant phenotyping. Reflectance properties are influenced by plant pathogens and resistance responses, but changes of transmission characteristics of plants are less described. In this study we used simultaneously recorded reflectance and transmittance imaging data of resistant and susceptible barley genotypes that were inoculated with Blumeria graminis f. sp. hordei to evaluate the added value of imaging transmission, reflection and absorption for characterisation of disease development. These datasets were statistically analysed using principal component analysis, and compared with visual and molecular disease estimation. Reflection measurement performed significantly better for early detection of powdery mildew infection, colonies could be detected 2 days before symptoms became visible in RGB images. Transmission data could be used to detect powdery mildew 2 days after symptoms becoming visible in reflection based RGB images. Additionally distinct transmission changes occurred at 580-650nm for pixels containing disease symptoms. It could be shown that the additional information of the transmission data allows for a clearer spatial differentiation and localisation between powdery mildew symptoms and necrotic tissue on the leaf then purely reflectance based data. Thus the information of both measurement approaches are complementary: reflectance based measurements facilitate an early detection, and transmission measurements provide additional information to better understand and quantify the complex spatio-temporal dynamics of plant-pathogen interactions.
机译:高光谱成像传感器是植物疾病检测和植物表型的有价值的工具。反射特性受植物病原体和电阻反应的影响,但植物的传动特性的变化较少。在该研究中,我们使用与Blumeria Graminis F接种的抗性和易感敏感基因型的反射和透射率成像数据。 SP。 Hordei评估成像传输,反射和吸收的附加值,以表征疾病发展。这些数据集使用主成分分析进行统计分析,并与视觉和分子疾病估算进行比较。对早期检测粉末状霉菌感染的反射测量显着更好,可以在RGB图像中可见前2天进行菌落。传输数据可用于检测症状在基于反射的RGB图像中可见的症状后2天的粉末状霉菌。另外发生明显的传动变化发生在580-650nm,用于含有疾病症状的像素。可以示出传输数据的附加信息允许在叶片上的粉末状霉菌症状和坏死组织之间的更清晰的空间分化和定位,然后纯粹反射基于数据。因此,两种测量方法的信息是互补的:基于反射的测量有助于早期检测,传输测量提供额外的信息,以更好地理解和量化植物 - 病原体相互作用的复杂时空动态。

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