Mylona Photini V, Polidoros Alexios N, Scandalios John G
Agricultural Recearch Center of Northern Greece, NAGREF, 570 01 Thermi, Greece.
J Exp Bot. 2007;58(6):1301-12. doi: 10.1093/jxb/erl292. Epub 2007 Feb 20.
There is circumstantial evidence implicating reactive oxygen species (ROS) in the highly ordered temporal and spatial regulation of expression of the Cat and Sod antioxidant genes during seed development and germination in maize. In order to understand and provide experimental data for the regulatory role of ROS, the expression patterns of the Cat1, Cat2, Cat3, GstI, Sod3, Sod4, and Sod4A genes, as well as catalase (CAT) and superoxide dismutase (SOD) activity responses, were examined after treatments with ROS-generating xenobiotics in developing and germinated maize scutella. CAT and SOD activities increased at both stages in response to each xenobiotic examined in a dose-dependent and stage-specific manner. Individual Cat gene expression patterns were co-ordinated with isozyme patterns of enzymatic activity in scutella of developing seeds. This was not observed in germinated seeds where, although Cat1 expression was highly induced by ROS, there was not a similar increase of enzymatic CAT1 activity, suggesting the involvement of post-transcriptional regulation. Enhanced enzyme activities were synchronous with increases in steady-state transcript levels of specific Sod genes. The steady-state transcript level of GstI was elevated in all samples examined. Gene expression responses derived from this study along with similar results documented in previous reports were subjected to cluster analysis, revealing that ROS-generating compounds provoke similar effects in the expression patterns of the tested antioxidant genes. This could be attributable to common stress-related motifs present in the promoters of these genes.
有间接证据表明,在玉米种子发育和萌发过程中,活性氧(ROS)参与了Cat和Sod抗氧化基因表达的高度有序的时空调控。为了理解ROS的调控作用并提供实验数据,在用产生活性氧的异生物质处理发育中和萌发的玉米盾片后,检测了Cat1、Cat2、Cat3、GstI、Sod3、Sod4和Sod4A基因的表达模式,以及过氧化氢酶(CAT)和超氧化物歧化酶(SOD)的活性反应。在两个阶段,CAT和SOD活性均随着所检测的每种异生物质而增加,呈剂量依赖性和阶段特异性。在发育种子的盾片中,各个Cat基因的表达模式与酶活性的同工酶模式相协调。在萌发种子中未观察到这种情况,尽管Cat1表达受到ROS的高度诱导,但酶促CAT1活性并未出现类似增加,这表明存在转录后调控。酶活性增强与特定Sod基因的稳态转录水平增加同步。在所检测的所有样品中,GstI的稳态转录水平均升高。将本研究得出的基因表达反应以及先前报告中记录的类似结果进行聚类分析,结果显示,产生活性氧的化合物在测试的抗氧化基因的表达模式中引发了类似的效应。这可能归因于这些基因启动子中存在的与应激相关的共同基序。