Jung S, Kernodle S P, Scandalios J G
Department of Genetics, North Carolina State University, Raleigh 27695-7614, USA.
Redox Rep. 2001;6(5):311-7. doi: 10.1179/135100001101536454.
This study examined the contribution of catalase (CAT) and superoxide dismutase (SOD) in the overall antioxidant response to norflurazon (NF)-induced oxidative stress in leaves, mesocotyls and scutella of maize (Zea mays). Maize catalase null mutants were used to provide insights into the role(s) of these isozymes. A substantial increase in Cat1 and Cat2 transcript levels occurred in NF-treated leaves in all maize lines examined. However, these two transcripts did not show a particular pattern of change in NF-treated scutella from 5-day postimbibition (dpi) and 18-day postpollination (dpp) maize. The NF-induced increase in Cat1 appeared to be dependent on excessive light energy caused by a lack of photoprotectant carotenoids. especially in leaves. In NF-treated leaves, the chloroplastic Cu/Zn-SOD-1 isozyme responded strongly compared to the cytosolic Cu/Zn-SOD and mitochondrial Mn-SOD-3 isozymes, suggesting the critical role of SOD-1 as a major component in chloroplastic antioxidant defenses. All SOD isozymes in the NF-treated scutella of various maize lines were consistent in their response to NF. The most significant increase was observed with Sod1 in NF-treated leaves; however, no significant Sod1 changes were observed in similarly treated scutella at 5 dpi and 18 dpp. These results suggest that the response of the Cat and Sod genes to NF is likely developmental and tissue-specific.
本研究检测了过氧化氢酶(CAT)和超氧化物歧化酶(SOD)在玉米(Zea mays)叶片、中胚轴和盾片中对去甲草净(NF)诱导的氧化应激的整体抗氧化反应中的作用。利用玉米过氧化氢酶缺失突变体来深入了解这些同工酶的作用。在所检测的所有玉米品系中,NF处理的叶片中Cat1和Cat2转录水平大幅增加。然而,在吸胀后5天(dpi)和授粉后18天(dpp)的玉米的NF处理的盾片中,这两种转录本并未表现出特定的变化模式。NF诱导的Cat1增加似乎依赖于缺乏光保护类胡萝卜素导致的过量光能,尤其是在叶片中。在NF处理的叶片中,与胞质Cu/Zn-SOD和线粒体Mn-SOD-3同工酶相比,叶绿体Cu/Zn-SOD-1同工酶反应强烈,表明SOD-1作为叶绿体抗氧化防御的主要成分发挥关键作用。不同玉米品系的NF处理的盾片中所有SOD同工酶对NF的反应一致。在NF处理的叶片中观察到Sod1增加最为显著;然而,在5 dpi和18 dpp时,类似处理的盾片中未观察到Sod1有显著变化。这些结果表明,Cat和Sod基因对NF的反应可能具有发育和组织特异性。