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首页> 外文期刊>Plant Physiology and Biochemistry >Differential expression of 10 sweetpotato peroxidases in response to sulfur dioxide, ozone, and ultraviolet radiation
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Differential expression of 10 sweetpotato peroxidases in response to sulfur dioxide, ozone, and ultraviolet radiation

机译:10种甘薯过氧化物酶对二氧化硫,臭氧和紫外线辐射的差异表达

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Secretory class III plant peroxidase (POD, EC 1.11.1.7) is believed to function in diverse physiological processes, including responses to various environmental stresses. To understand the function of each POD in terms of air pollutants and UV radiation, changes in POD activity and expression of 10 POD genes isolated from cell cultures of sweetpotato (Ipomoea batatas) were investigated in the leaves of sweetpotato after treatment with sulfur dioxide (SO(2) 500ppb, 8h/day for 5 days), ozone (O(3) 200ppb, 8h/day for 6 days), and ultraviolet radiation (UV-B 0.6mWm(-2) for 24h, UV-C 0.16mWm(-2) for 24h). All treatments significantly reduced the PSII photosynthetic efficiency (F(v)/F(m)). POD-specific activities (units/mg protein) were increased in leaves treated with SO(2) and O(3) by 5.2- and 7.1-fold, respectively, compared to control leaves. UV-B and UV-C also increased POD activities by 3.0- and 2.4-fold, respectively. As determined by RT-PCR analysis, 10 POD genes showed differential expression patterns upon treatment with air pollutants and UV radiation. Among the POD genes, swpa1, swpa2, and swpa4 were strongly induced following each of the treatments. Interestingly, basic POD genes (swpb1, swpb2, and swpb3) were highly expressed following SO(2) treatment only, whereas neutral swpn1 was highly induced following O(3) treatment only. These results indicated that some specific POD isoenzymes might be specifically involved in the defense mechanism against oxidative stress induced by air pollutants and UV radiation in sweetpotato plants.
机译:分泌型III类植物过氧化物酶(POD,EC 1.11.1.7)被认为在多种生理过程中起作用,包括对各种环境胁迫的反应。为了了解每种POD在空气污染物和紫外线辐射方面的功能,在用二氧化硫(SO)处理后对甘薯叶片中的甘薯(Ipomoea batatas)细胞培养物中分离的10种POD基因的POD活性变化和表达进行了研究。 (2)500ppb,每天8h,每天5天),臭氧(O(3)200ppb,每天8h,每天6天)和紫外线(UV-B 0.6mWm(-2)24小时,UV-C 0.16mWm (-2)24小时)。所有处理均显着降低PSII光合效率(F(v)/ F(m))。与对照叶片相比,用SO(2)和O(3)处理的叶片中POD特异性活性(单位/ mg蛋白质)分别增加了5.2和7.1倍。 UV-B和UV-C也分别将POD活性提高了3.0倍和2.4倍。如通过RT-PCR分析所确定的,在用空气污染物和UV辐射处理后,有10个POD基因显示出差异表达模式。在POD基因中,每次处理后强烈诱导swpa1,swpa2和swpa4。有趣的是,仅在SO(2)处理后基本表达POD基因(swpb1,swpb2和swpb3),而仅在O(3)处理后高度诱导中性swpn1。这些结果表明,某些特殊的POD同工酶可能特别参与了甘薯植物中对抗由空气污染物和紫外线辐射引起的氧化胁迫的防御机制。

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