Pham Nhi-Thi, Kim Jin-Gil, Jung Sunyo
School of Life Sciences and Biotechnology, BK21 Plus KNU Creative Bioresearch Group, Kyungpook National University, Daegu 702-701, Korea.
Int J Mol Sci. 2015 Jul 21;16(7):16529-44. doi: 10.3390/ijms160716529.
We compared antioxidant responses and regulation of porphyrin metabolism in rice plants treated with oxyfluorfen (OF) or methyl viologen (MV). Plants treated with MV exhibited not only greater increases in conductivity and malondialdehyde but also a greater decline in Fv/Fm, compared to plants treated with OF. MV-treated plants had greater increases in activities of superoxide dismutase (SOD) and catalase (CAT) as well as transcript levels of SODA and CATA than OF-treated plants after 28 h of the treatments, whereas increases in ascorbate peroxidase (APX) activity and transcript levels of APXA and APXB were greater in OF-treated plants. Both OF- and MV-treated plants resulted in not only down-regulation of most genes involved in porphyrin biosynthesis but also disappearance of Mg-porphyrins during the late stage of photooxidative stress. By contrast, up-regulation of heme oxygenase 2 (HO2) is possibly part of an efficient antioxidant response to compensate photooxidative damage in both treatments. Our data show that down-regulated biosynthesis and degradation dynamics of porphyrin intermediates have important roles in photoprotection of plants from perturbed porphyrin biosynthesis and photosynthetic electron transport. This study suggests that porphyrin scavenging as well as strong antioxidative activities are required for mitigating reactive oxygen species (ROS) production under photooxidative stress caused by OF and MV.
我们比较了用乙氧氟草醚(OF)或甲基紫精(MV)处理的水稻植株的抗氧化反应及卟啉代谢调控。与用OF处理的植株相比,用MV处理的植株不仅电导率和丙二醛增加得更多,而且Fv/Fm下降得也更多。处理28小时后,与用OF处理的植株相比,用MV处理的植株超氧化物歧化酶(SOD)和过氧化氢酶(CAT)的活性以及SODA和CATA的转录水平增加得更多,而用OF处理的植株抗坏血酸过氧化物酶(APX)活性以及APXA和APXB的转录水平增加得更多。在光氧化应激后期,用OF和MV处理的植株均导致参与卟啉生物合成的大多数基因下调,同时镁卟啉消失。相比之下,在两种处理中,血红素加氧酶2(HO2)的上调可能是补偿光氧化损伤的有效抗氧化反应的一部分。我们的数据表明,卟啉中间体生物合成和降解动力学的下调在保护植物免受卟啉生物合成和光合电子传递紊乱方面具有重要作用。这项研究表明,在由OF和MV引起的光氧化应激下,清除卟啉以及强大的抗氧化活性对于减轻活性氧(ROS)的产生是必需的。