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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >He-Ne laser treatment improves the photosynthetic efficiency of wheat exposed to enhanced UV-B radiation
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He-Ne laser treatment improves the photosynthetic efficiency of wheat exposed to enhanced UV-B radiation

机译:He-Ne激光处理提高了暴露于增强的UV-B辐射的小麦的光合作用效率

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The level of ultraviolet-B (UV-B) radiation on the Earth's surface has increased due to depletion of the ozone layer. Here, we explored the effects of continuous wave He-Ne laser irradiation (632 nm, 5 mW mm~(-2), 2 min d~(-1)) on the physiological indexes of wheat seedlings exposed to enhanced UV-B radiation (10 KJ m~(-2) d~(-1)) at the early growth stages. Wheat seedlings were irradiated with enhanced UV-B, He-Ne laser treatment or a combination of the two. Enhanced UV-B radiation had deleterious effects on wheat photosynthesis parameters including photosystem II (chlorophyll content, Hill reaction, chlorophyll fluorescence parameters, electron transport rate (ETR), and yield), the thylakoid (optical absorption ability, cyclic photophosphorylation, Mg~(2+)-ATPase, and Ca~(2+)-ATPase) and some enzymes in the dark reaction (phosphoenolpyruvate carboxylase (PEPC), carbonic anhydrase (CA), malic dehydrogenase (MDH), and chlorophyllase). These parameters were improved in UV-Bexposed wheat treated with He-Ne laser irradiation; the parameters were near control levels and the enzyme activities increased, suggesting that He-Ne laser treatment partially alleviates the injury caused by enhanced UV-B irradiation. Furthermore, the use of He-Ne laser alone had a favourable effect on seedling photosynthesis compared with the control. Therefore, He-Ne laser irradiation can enhance the adaptation capacity of crops.
机译:由于臭氧层的消耗,地球表面的紫外线B(UV-B)辐射水平有所提高。在这里,我们探索了连续波氦氖激光(632 nm,5 mW mm〜(-2),2 min d〜(-1))对暴露于增强UV-B辐射的小麦幼苗的生理指标的影响。 (10 KJ m〜(-2)d〜(-1))处于早期生长阶段。小麦幼苗用增强的UV-B,He-Ne激光处理或两者结合的方法进行辐照。增强的UV-B辐射对小麦的光合作用参数具有有害影响,包括光系统II(叶绿素含量,Hill反应,叶绿素荧光参数,电子传输速率(ETR)和产量),类囊体(光吸收能力,循环光磷酸化,Mg〜( 2 +)-ATPase和Ca〜(2 +)-ATPase)和黑暗反应中的某些酶(磷酸烯醇丙酮酸羧化酶(PEPC),碳酸酐酶(CA),苹果酸脱氢酶(MDH)和叶绿素酶)。这些参数在He-Ne激光辐照的UV暴露小麦中得到了改善。参数接近控制水平,酶活性增加,表明氦氖激光治疗可以部分减轻紫外线-B辐射增强引起的伤害。此外,与对照相比,单独使用氦氖激光对幼苗的光合作用具有有利的影响。因此,氦氖激光辐照可以增强农作物的适应能力。

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