Jithesh M N, Prashanth S R, Sivaprakash K R, Parida Ajay
M. S. Swaminathan Research Foundation, III Cross Street, Taramani Institutional Area, Taramani, Chennai, 600113, India.
Plant Cell Rep. 2006 Aug;25(8):865-76. doi: 10.1007/s00299-006-0127-4. Epub 2006 Mar 14.
Plant photosynthesis results in the production of molecular oxygen. An inevitable consequence of this normal process is the production of reactive oxygen species (ROS) by the transfer of electrons to molecular oxygen. Plants are adequately protected by the presence of multiple antioxidative enzymes in different organelles of the plant such as chloroplasts, cytosol, mitochondria and peroxisomes. Under high light and CO(2) limiting conditions caused by environmental stress like salinity, these antioxidative enzymes play an important role in scavenging toxic radicals. To investigate the functions of antioxidative enzymes in a mangrove plant, we isolated three cDNAs encoding cytosolic Cu-Zn SOD (Sod1), catalase (Cat1) and ferritin (Fer1) from Avicennia marina cDNA library. Sod1, Cat1 and Fer1 cDNA encoded full-length proteins with 152, 492 and 261 amino acids respectively. We studied the expression of these antioxidant genes in response to salt, iron, hydrogen peroxide, mannitol and light stress by mRNA expression analysis. Cat1, Fer1 showed short-term induction while Sod1 transcript was found to be unaltered in response to NaCl stress. A decrease in mRNA levels was observed for Sod1, Cat1 while Fer1 mRNA levels remained unaltered with osmotic stress treatment. Sod1, Cat1 and Fer1 mRNA levels were induced by iron, light stress and by direct H(2)O(2) stress treatment, thus confirming their role in oxidative stress response.
植物光合作用产生分子氧。这一正常过程不可避免的结果是,电子转移到分子氧会产生活性氧(ROS)。植物通过在叶绿体、细胞质、线粒体和过氧化物酶体等不同细胞器中存在多种抗氧化酶而得到充分保护。在盐度等环境胁迫导致的高光和二氧化碳限制条件下,这些抗氧化酶在清除有毒自由基方面发挥着重要作用。为了研究抗氧化酶在红树林植物中的功能,我们从白骨壤cDNA文库中分离出三个编码细胞质铜锌超氧化物歧化酶(Sod1)、过氧化氢酶(Cat1)和铁蛋白(Fer1)的cDNA。Sod1、Cat1和Fer1 cDNA分别编码具有152、492和261个氨基酸的全长蛋白。我们通过mRNA表达分析研究了这些抗氧化基因在盐、铁、过氧化氢、甘露醇和光胁迫下的表达情况。Cat1、Fer1表现出短期诱导,而Sod1转录本在NaCl胁迫下未发生变化。在渗透胁迫处理下,Sod1、Cat1的mRNA水平下降,而Fer1的mRNA水平保持不变。Sod1、Cat1和Fer1的mRNA水平受到铁、光胁迫和直接过氧化氢胁迫处理的诱导,从而证实了它们在氧化应激反应中的作用。