Digital Infrared Thermal Imaging of Crape Myrtle Leaves Infested with Sooty Mold

Jiyeon Kim, Si-gyun Kweon, Junhyung Park, Harim Lee, Ki Woo Kim
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引用次数: 6

Abstract

The spatial patterns for temperature distribution on crape myrtle leaves infested with sooty mold were investigated using a digital infrared thermal imaging camera. The mean temperatures of the control and sooty regions were 26.98°C and 28.44°C, respectively. In the thermal images, the sooty regions appeared as distinct spots, indicating that the temperatures in these areas were higher than those in the control regions on the same leaves. This suggests that the sooty regions became warmer than their control regions on the adaxial leaf surface. Neither epidermal penetration nor cell wall dissolution by the fungus was observed on the adaxial leaf surface. It is likely that the high temperature of black leaves have an increased cooling load. To our knowledge, this is the first report on elevated temperatures in sooty regions, and the results show spatial heterogeneity in temperature distribution across the leaf surface.
黑霉侵染紫薇叶片的数字红外热成像研究
利用数字红外热像仪研究了紫薇黑霉侵染后叶片温度的空间分布规律。对照区和黑烟区平均温度分别为26.98°C和28.44°C。在热像图上,黑烟区呈明显的斑点状,表明这些区域的温度高于同一叶片上的对照区域。这表明在叶片正面,黑烟区比对照区变暖。在叶片正面未观察到真菌对表皮的渗透和细胞壁的溶解。这很可能是黑叶的高温增加了冷负荷。据我们所知,这是第一个关于烟灰地区温度升高的报告,结果显示了叶片表面温度分布的空间异质性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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