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红外热成像技术在马铃薯叶片冷冻方面的新见解

New Insights in Potato Leaf Freezing by Infrared Thermography.

作者信息

Stegner Matthias, Schäfernolte Tanja, Neuner Gilbert

机构信息

Department of Botany, University of Innsbruck, Innsbruck 6020, Austria.

出版信息

Appl Sci (Basel). 2019 Mar;9(5):819. doi: 10.3390/app9050819. Epub 2019 Feb 26.

Abstract

Infrared thermography has been widely used to study freezing processes in freezing resistant plants but hardly in freezing susceptible species. leaves get frost killed at -3 °C and are unable to frost harden. The basic nature of frost injury to potato leaves is not clear. By employment of infrared differential thermal analysis (IDTA) in combination with viability assessment, we aimed to clarify the mechanistic relationship between ice formation and frost injury. During controlled freezing of potato leaves two distinct freezing events were detected by IDTA. During the first freezing event, the ice wave propagated via the xylem and spread out within 60 s throughout the whole leaf. When leaves were rewarmed after this freezing event, they did not show any frost injury symptoms. We suggest that this non-lethal first ice wave is restricted to the extracellular space. When leaves remained exposed after this exotherm, a second freezing event with a diffuse freezing pattern without a distinct starting point was recorded. When thawed after this second freezing event, leaves always showed frost damage suggesting intracellular freezing. The freezing behavior of potato leaves and its relation to frost damage corroborates that control of ice nucleation is a key for frost protection.

摘要

红外热成像技术已被广泛用于研究抗冻植物的冷冻过程,但在易受冻害的物种中应用较少。马铃薯叶片在-3℃时会被冻死,且无法进行抗冻锻炼。马铃薯叶片冻害的基本性质尚不清楚。通过结合红外差示热分析(IDTA)和活力评估,我们旨在阐明结冰与冻害之间的机制关系。在对马铃薯叶片进行控制冷冻的过程中,IDTA检测到了两个不同的冷冻事件。在第一次冷冻事件中,冰波通过木质部传播,并在60秒内扩散到整个叶片。当叶片在这次冷冻事件后复温时,它们没有表现出任何冻害症状。我们认为,这种非致命的第一次冰波仅限于细胞外空间。当叶片在这次放热后仍保持暴露状态时,记录到了第二次冷冻事件,其冷冻模式呈弥漫状,没有明显的起始点。在这次第二次冷冻事件后解冻时,叶片总是表现出冻害,表明发生了细胞内结冰。马铃薯叶片的冷冻行为及其与冻害的关系证实,控制冰核形成是抗冻保护的关键。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e96/6914373/0d2e9843bdef/EMS85118-f001.jpg

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