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Determining Freezing Injury from Changes in Chlorophyll Fluorescence in Potted Oleander Plants

机译:从盆栽夹竹桃叶绿素荧光变化确定冻害

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Physiological and biochemical indicators that reflect the responses of plants to chilling stress could be useful for identifying plant damage caused by freezing or other stresses. The objective of this study was to determine any relationship between changes in chlorophyll fluorescence and the appearance of visual symptoms resulting from freezing temperatures in two cultivars of oleander. In the least frost-sensitive cultivar (yellow oleander), freezing temperatures (-4 degrees C for 3 h) did not produce changes in the photochemical parameters. In the more frost-sensitive cultivar (pink oleander), non-photochemical quenching (NPQ) and the maximum photochemical efficiency of photosystem II(F-v/F-m) decreased after the same freezing treatment. The first of these potential indicators remained low, whereas the second steadily recovered during the 4 months after freezing simulation. The results suggest that measuring chlorophyll fluorescence may provide a rapid method for assessing freezing injury in oleander.
机译:反映植物对寒冷胁迫响应的生理和生化指标可能有助于识别由冰冻或其他胁迫引起的植物损害。这项研究的目的是确定两个夹竹桃品种的冷冻温度引起的叶绿素荧光变化与视觉症状外观之间的任何关系。在对霜冻最不敏感的品种(黄夹竹桃)中,冷冻温度(-4摄氏度,持续3小时)不会改变光化学参数。在对霜冻较敏感的品种(粉夹竹桃)中,相同的冷冻处理后,非光化学猝灭(NPQ)和光系统II的最大光化学效率(F-v / F-m)降低。这些潜在指标中的第一个保持较低水平,而第二个在冻结模拟后的4个月中稳定恢复。结果表明,测量叶绿素荧光可以提供一种快速的方法来评估夹竹桃的冻害。

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