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Arabidopsis plants exposed to gamma radiation in two successive generations show a different oxidative stress response

机译:连续两代暴露于伽马射线的拟南芥植物显示出不同的氧化应激反应

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When terrestrial environments get contaminated with long-lived gamma emitting radionuclides, plants that grow in these contaminated areas are exposed to gamma radiation during consecutive generations. Therefore it is important to evaluate the gamma induced stress response in plants in and between generations. The objective of this research is to reveal differences at the level of the antioxidative stress response between generations with a different radiation history. An experiment was conducted in which 7-days old Arabidopsis thaliana plants were exposed for 14 days to four different gamma dose rates: 22 mGy/h, 38 mGy/h, 86 mGy/h and 457 mGy/h. Two different plant groups were used: plants that were not exposed to gamma radiation before (P0) and plants that received the aforementioned gamma treatment during their previous generation (S1). Growth, the concentration of the antioxidants ascorbate and glutathione, a number of antioxidative enzyme activities and their gene transcript levels were analysed. A dose-rate dependent induction was seen for catalase (CAT) and guaiacol peroxidase (GPX) in the roots and for syringaldazine peroxidase (SPX) in the shoots. Differences between the two generations were observed for CAT and GPX in the roots, where a significantly higher activity of these reactive oxygen species (ROS) detoxifying enzymes was observed in the S1 generation. For SPX in the shoots, a dose dependent upregulation was observed in the PO generation. However, high SPX activities were present for all doses in the S1 generation. These differences in enzyme activity between generations for SPX and GPX and the involvement of these enzymes in cell wall biosynthesis, suggest an important role for cell wall strengthening in the response to gamma irradiation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:当陆地环境被长寿命的发射伽马射线的放射性核素污染时,在这些受污染区域生长的植物会连续几代暴露于伽玛射线。因此,重要的是评估代内和代之间植物中γ诱导的胁迫反应。这项研究的目的是揭示辐射历史不同的世代之间抗氧化应激反应水平的差异。进行了一项实验,其中将7天大的拟南芥植物暴露于四种不同的伽玛剂量率下14天:22 mGy / h,38 mGy / h,86 mGy / h和457 mGy / h。使用了两个不同的植物组:之前未暴露于伽马辐射的植物(P0)和在其前代中接受上述伽马处理的植物(S1)。分析生长,抗氧化剂抗坏血酸和谷胱甘肽的浓度,许多抗氧化酶活性及其基因转录水平。根部中过氧化氢酶(CAT)和愈创木酚过氧化物酶(GPX)以及芽中丁香醛香嗪过氧化物酶(SPX)的剂量率依赖性诱导。 CAT和GPX在根中观察到了两代之间的差异,其中在S1代中观察到这些活性氧(ROS)解毒酶的活性明显更高。对于芽中的SPX,在PO世代中观察到剂量依赖性上调。但是,S1代中的所有剂量均具有高SPX活性。这些SPX和GPX代之间酶活性的这些差异以及这些酶参与细胞壁生物合成的过程,提示了细胞壁增强在对γ辐射的响应中的重要作用。 (C)2016 Elsevier Ltd.保留所有权利。

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