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The effects of enhanced UV-B radiation on growth, stomata, flavonoid and ABA content in cucumber leaves

机译:增强UV-B辐射对黄瓜叶片生长,气孔,黄酮和ABA含量的影响

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Cucumber plants (Cucumis sativus L. cv. Jinchun No 3) grown in a greenhouse were treated with three different biologically effective ultraviolet-B (UV-B) radiation levels: 1.28 kJ. m~(-2) (CK), 8.82kJ.m~(-2) (T1) and 12.6 kJ. m~(-2) (T2). Irradiances corresponded to 8% and 21% reduction in stratospheric ozone in Lanzhou. Plants at three-leaf stage were irradiated 7 h daily for 25 days. The growth, stomata, flavonoid and ABA content in cucumber leaves exposed to 3 levels of UV-B radiation were determined in this paper. The results indicated that, compared with the control after 25 days UV-B radiation, RI of cucumber under Tl treatment is -18.0% and RI under T2 treatment is -48% mostly because of the reduce of leave area and dry weight accompanying with the increase of SLW; the rate of stomata closure under the treatments of T1 and T2 on the 6th day was up to respectively 70% and 89%, and amounted to 90% and 100% on the 18th day, and the guard cells in some stomata apparatus became permanent pores and lost their function at the same time; with the duration of UV-B radiation, the rise of the absorbance to ultraviolet light (305nm) showed the content increase of flavonoid; Abscisic acid( ABA) was determined by means of ELISA which showed that under the T1 treatment, the content of ABA was up to maximum to 510% higher than that of the control on the 21st day, meanwhile, under the treatment of T2, it was the highest on the 18th day to 680% of the control, and then had a decrease tendency on 21st day. The result still indicated that ABA accumulation could be induced by enhanced UV-B the radiation. The bigger was the dose of radiation, the higher was the accumulation of ABA. When intensity of UV-B radiation went beyond the degree of endurance of cucumber plants, ABA content descended then. Cucumber plants resist enhanced UV-B radiation by means of improving the contents of ABA and flavonoid. The increase of ABA content in cucumber leaves could lead to the stomata closure. Therefore, the changes of ABA content and absorbance, the rate of stoma closure in cucumber leaves were the adaptive mechanism to enhanced UV-B radiation.
机译:1.28千焦:黄瓜植物(黄瓜品种锦春NO 3)在温室中生长,用三种不同的生物有效的紫外线B(UV-B)的辐射水平进行处理。米〜(-2)(CK),8.82kJ.m〜(-2)(T1)和12.6千焦。米〜(-2)(T2)。辐照度对应于8%,并且在兰州平流层臭氧减少21%。在三叶期植物每日7小时照射25天。生长,气孔,类黄酮和ABA在黄瓜叶片内容暴露于3个级别的UV-B辐射的是在本文中确定的。结果表明,与后25天UV-B辐射的对照组相比,下铊治疗黄瓜的RI为-18.0%,并在T2处理RI是-48%,主要是因为的减少叶面积和干重与所述伴随提高SLW的; T1和T2的第6天处理下,气孔关闭的率达分别为70%和89%,以及达90%,并且在第18天100%,并且在一些气孔装置中的保卫细胞成为永久的孔而失去,同时其功能;用UV-B辐射的持续时间,吸光度于紫外光(305nm)的上升表明的类黄酮的含量的增加;脱落酸(ABA),通过ELISA的装置,它表明,T1处理下测定,ABA的含量高达最大到510%比第21天对照组提高,同时,T2的处理条件下,它最高的第18天,以控制680%,然后再对21天的下降趋势。结果仍表明,ABA积累可通过增强的UV-B辐射来诱导。大是放射线的剂量,较高的是ABA的积累。当UV-B辐射的强度超出了黄瓜植物的耐力的程度,ABA含量然后下降。黄瓜植物抗蚀剂通过改善ABA和类黄酮的内容的手段增强UV-B辐射。在黄瓜叶片ABA含量的增加可能导致气孔关闭。因此,ABA含量和吸收率的变化,造口闭合的黄瓜叶片率分别为自适应机制来增强UV-B辐射。

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