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Heme oxygenase up-regulation under ultraviolet-B radiation is not epigenetically restricted and involves specific stress-related transcriptions factors

机译:紫外线-B辐射下血红素加氧酶的上调不受表观遗传的限制并且涉及特定的应激相关转录因子

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摘要

Heme oxygenase-1 (HO-1) plays a protective role against oxidative stress in plants. The mechanisms regulating its expression, however, remain unclear. Here we studied the methylation state of a GC rich HO-1 promoter region and the expression of several stress-related transcription factors (TFs) in soybean plants subjected to ultraviolet-B (UV-B) radiation. Genomic DNA and total RNA were isolated from leaves of plants irradiated with 7.5 and 15 kJ m-2 UV-B. A 304 bp HO-1 promoter region was amplified by PCR from sodium bisulfite-treated DNA, cloned into pGEMT plasmid vector and evaluated by DNA sequencing. Bisulfite sequencing analysis showed similar HO-1 promoter methylation levels in control and UV-B-treated plants (C: 3.4±1.3%; 7.5: 2.6±0.5%; 15: 3.1±1.1%). Interestingly, HO-1 promoter was strongly unmethylated in control plants. Quantitative RT-PCR analysis of TFs showed that GmMYB177, GmMYBJ6, GmWRKY21, GmNAC11, GmNAC20 and GmGT2A but not GmWRK13 and GmDREB were induced by UV-B radiation. The expression of several TFs was also enhanced by hemin, a potent and specific HO inducer, inferring that they may mediate HO-1 up-regulation. These results suggest that soybean HO-1 gene expression is not epigenetically regulated. Moreover, the low level of HO-1 promoter methylation suggests that this antioxidant enzyme can rapidly respond to environmental stress. Finally, this study has identified some stress-related TFs involved in HO-1 up-regulation under UV-B radiation.
机译:血红素加氧酶-1(HO-1)对植物的氧化应激起保护作用。然而,调节其表达的机制仍不清楚。在这里,我们研究了富含GC的HO-1启动子区域的甲基化状态,以及在遭受紫外线B(UV-B)辐射的大豆植物中几种胁迫相关转录因子(TFs)的表达。从7.5和15 kJ m-2 UV-B照射的植物叶片中分离基因组DNA和总RNA。通过PCR从亚硫酸氢钠处理的DNA中扩增出一个304 bp的HO-1启动子区域,并将其克隆到pGEMT质粒载体中,并通过DNA测序进行评估。亚硫酸氢盐测序分析显示,对照和UV-B处理植物的HO-1启动子甲基化水平相似(C:3.4±1.3%; 7.5:2.6±0.5%; 15:3.1±1.1%)。有趣的是,HO-1启动子在对照植物中被强烈地未甲基化。 TF的定量RT-PCR分析表明,UV-B辐射诱导了GmMYB177,GmMYBJ6,GmWRKY21,GmNAC11,GmNAC20和GmGT2A,但未诱导GmWRK13和GmDREB。血红素(一种有效的特异性HO诱导剂)还增强了几种TF的表达,推测它们可能介导HO-1的上调。这些结果表明,大豆HO-1基因的表达不受表观遗传调控。此外,低水平的HO-1启动子甲基化表明该抗氧化剂可以快速响应环境压力。最后,这项研究已经确定了一些与压力相关的TF,它们参与了UV-B辐射下HO-1的上调。

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