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Senescence-specific change in ROS scavenging enzyme activities and regulation of various SOD isozymes to ROS levels in psf mutant rice leaves

机译:psf突变水稻叶片中ROS清除酶活性的衰老特异性变化和多种SOD同工酶对ROS水平的调节

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摘要

To clarify the interaction between different antioxidant enzymes for monitoring oxidative stress and ROS burst in rice senescent leaves, we investigated the genotype-dependent alteration in temporal patterns of the O-2(center dot-) production rate, H2O2 content, and ROS-scavenging enzyme activities during leaf senescence in two rice genotypes, namely, the premature senescence of flag leaf (psf) mutant and its wild type. Results showed that the psf mutant differed obviously from its wild type in leaf O-2(center dot-) generation rate and H2O2 content accumulation, and the decreased activities of SOD, CAT, and APX in the psf leaves were strongly responsible for the increased ROS level and the accelerated leaf senescence. By contrast, the increase in POD activity was positively correlated with the senescence-related enhancement in O-2(center dot-) generation in rice leaves. Among various SOD isoforms, Mn SOD responded sensitively to the increasing O-2(center dot-) generation rate, whereas Cu/Zn SOD remained stable with the progression of leaf senescence. These findings suggest that the senescence-related decline in total SOD activity was mostly attributable to the downregulation of both the translation and transcription of Mn SOD isoform. This occurrence finally resulted in the collapse of SOD defense system and accelerated leaf senescence for the psf mutant. Furthermore, we presented the possible contribution of several Cu/Zn SOD expression patterns to the senescence-related O-2(center dot-) detoxification in different cell compartments. (C) 2016 Elsevier Masson SAS. All rights reserved.
机译:为了阐明不同的抗氧化酶之间的相互作用,以监测水稻衰老叶片中的氧化胁迫和ROS爆发,我们研究了O-2(中心点)生产率,H2O2含量和清除ROS的时间模式中基因型相关的变化。两种基因型水稻叶片衰老过程中的酶活性,即旗叶突变体(psf)及其野生型。结果表明,psf突变体的叶片O-2(中心点)生成速率和H2O2含量积累与野生型明显不同,并且psf叶片中SOD,CAT和APX活性的下降是其增加的主要原因。 ROS水平和加速叶片衰老。相比之下,POD活性的增加与水稻叶片中O-2(中心点)生成的衰老相关增强呈正相关。在各种SOD亚型中,Mn SOD对增加的O-2(中心点)生成速率敏感,而Cu / Zn SOD随着叶片衰老的进展保持稳定。这些发现表明,与衰老相关的总SOD活性下降主要归因于Mn SOD亚型翻译和转录的下调。该事件最终导致psf突变体的SOD防御系统崩溃并加速了叶片衰老。此外,我们提出了几种铜/锌超氧化物歧化酶表达模式对衰老相关的O-2(中心点-)排毒在不同细胞室中的可能贡献。 (C)2016 Elsevier Masson SAS。版权所有。

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