首页> 外文期刊>Plant Physiology and Biochemistry >Oxidative stress provokes distinct transcriptional responses in the stress-tolerant atr7 and stress-sensitive loh2 Arabidopsis thaliana mutants as revealed by multi-parallel quantitative real-time PCR analysis of ROS marker and antioxidant genes
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Oxidative stress provokes distinct transcriptional responses in the stress-tolerant atr7 and stress-sensitive loh2 Arabidopsis thaliana mutants as revealed by multi-parallel quantitative real-time PCR analysis of ROS marker and antioxidant genes

机译:通过对ROS标记和抗氧化剂基因进行的多平行定量实时PCR分析揭示,氧化胁迫在胁迫耐受性atr7和胁迫敏感loh2拟南芥突变体中引起了不同的转录反应。

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摘要

The Arabidopsis thaliana atr7 mutant is tolerant to oxidative stress induced by paraquat (PQ) or the catalase inhibitor aminotriazole (AT), while its original background loh2 and wild-type plants are sensitive. Both, AT and PQ, which stimulate the intracellular formation of H _2O _2 or superoxide anions, respectively, trigger cell death in loh2 but do not lead to visible damage in atr7. To study gene expression during oxidative stress and ROS-induced programmed cell death, two platforms for multi-parallel quantitative real-time PCR (qRT-PCR) analysis of 217 antioxidant and 180 ROS marker genes were employed. The qRT-PCR analyses revealed AT- and PQ-induced expression of many ROS-responsive genes mainly in loh2, confirming that an oxidative burst plays a role in the activation of the cell death in this mutant. Some of the genes were specifically regulated by either AT or PQ, serving as markers for particular types of ROS. Genes significantly induced by both AT and PQ in loh2 included transcription factors (ANAC042/JUB1, ANAC102, DREB19, HSFA2, RRTF1, ZAT10, ZAT12, ethylene-responsive factors), signaling compounds, ferritins, alternative oxidases, and antioxidant enzymes. Many of these genes were upregulated in atr7 compared to loh2 under non-stress conditions at the first time point, indicating that higher basal levels of ROS and higher antioxidant capacity in atr7 are responsible for the enhanced tolerance to oxidative stress and suggesting a possible tolerance against multiple stresses of this mutant.
机译:拟南芥atr7突变体可耐受百草枯(PQ)或过氧化氢酶抑制剂氨基三唑(AT)诱导的氧化胁迫,而其原始背景loh2和野生型植物却敏感。 AT和PQ分别刺激H _2O _2或超氧阴离子的细胞内形成,均会触发loh2的细胞死亡,但不会导致atr7的可见损伤。为了研究氧化应激和ROS诱导的程序性细胞死亡过程中的基因表达,采用了两个平台对217种抗氧化剂和180种ROS标记基因进行多平行定量实时PCR(qRT-PCR)分析。 qRT-PCR分析揭示了主要在loh2中AT和PQ诱导的许多ROS响应基因的表达,证实了氧化爆发在该突变体的细胞死亡激活中起作用。一些基因受AT或PQ的特异性调控,可作为特定类型ROS的标记。 loh2中由AT和PQ共同诱导的基因包括转录因子(ANAC042 / JUB1,ANAC102,DREB19,HSFA2,RRTF1,ZAT10,ZAT12,乙烯反应因子),信号传导化合物,铁蛋白,替代氧化酶和抗氧化酶。在第一个时间点,在非胁迫条件下,与loh2相比,许多这些基因在atr7中上调,这表明较高的ROS基本水平和atr7中较高的抗氧化能力是增强的对氧化应激耐受性的原因,并表明可能对该突变体的多重压力。

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