首页> 外文期刊>Russian Journal of Plant Physiology >He-Ne Laser Illumination Ameliorates Photochemical Impairment in Ultraviolet-B Stressed-Wheat Seedlings Via Detoxifying ROS Cytotoxicity
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He-Ne Laser Illumination Ameliorates Photochemical Impairment in Ultraviolet-B Stressed-Wheat Seedlings Via Detoxifying ROS Cytotoxicity

机译:HE-NE激光照明通过解毒ROS细胞毒性来改善紫外-B强调小麦幼苗的光化学损伤

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摘要

The protective effect and physiochemical mechanism of He-Ne laser illumination on photochemical impairment were evaluated by investigating chlorophyll fluorescence characteristics, photochemical activities of two photosystems, reactive oxygen species (ROS) levels and antioxidant enzyme activities in UV-B stressed-wheat (Triticum aestivum L.) seedlings. The results showed that enhanced UV-B stress significantly inhibited plant growth, reduced photosynthetic pigment content and antioxidant enzyme activities, while increased intracellular ROS levels. Meanwhile, UV-B stress also altered chlorophyll fluorescence characteristics and photochemical activities of seedlings. However, He-Ne laser illumination markedly improved photochemical activities and photosynthetic efficiency of two photosystems through detoxifying excessive ROS productions. Illumination with white fluorescent lamps (W), red light (R), or red light, then far-red light (R + FR) had not alleviated the inhibitory effect of UV-B stress on plant growth, suggesting that He-Ne laser illumination might be responsible for UV-B-stressed seedlings due to its regulation for intracellular ROS levels and plant oxidant/antioxidant balance. Furthermore, the laser alone also showed a positive impact on photochemical activities of photosystem I and photosystem II in plants.
机译:通过研究叶绿素荧光特性,两光系统,反应性氧物种(ROS)水平和抗氧化酶活性的叶绿素荧光特性,光化学活性在UV-B胁迫 - 小麦(Triticum aestivum L.)幼苗。结果表明,增强的UV-B应力显着抑制了植物生长,降低光合色素含量和抗氧化酶活性,同时增加了细胞内ROS水平。同时,UV-B应激也改变了叶绿素荧光特性和幼苗的光化学活性。然而,HE-NE激光照明通过解毒过量的ROS制作显着改善了两种光系统的光化学活动和光合效率。用白色荧光灯(W),红灯(R)或红光照明,然后远红光(R + Fr)并未减轻UV-B应激对植物生长的抑制作用,表明HE-NE激光由于其对细胞内ROS水平和植物氧化剂/抗氧化剂平衡的调节,照明可能负责UV-B胁迫幼苗。此外,单独的激光还对植物中照相I和光系统II的光化学活性产生了积极影响。

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