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首页> 外文期刊>Plant Physiology and Biochemistry >Expression of rd29A: AtDREB1A/CBF3 in tomato alleviates drought-induced oxidative stress by regulating key enzymatic and non-enzymatic antioxidants
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Expression of rd29A: AtDREB1A/CBF3 in tomato alleviates drought-induced oxidative stress by regulating key enzymatic and non-enzymatic antioxidants

机译:番茄中rd29A:AtDREB1A / CBF3的表达通过调节关键的酶抗氧化剂和非酶抗氧化剂来缓解干旱引起的氧化胁迫

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摘要

Transgenic tomato lines (cv. Kashi Vishesh) over-expressing AtDREB1A/. CBF3 driven by stress-inducible rd29A promoter showed significantly higher activities of key antioxidant enzymes when exposed to water-deficit for 7, 14, and 21 days. Transgenic tomato plants exposed to water-deficit recorded lower levels of hydrogen peroxide and superoxide anion formation compared to the non-transgenic plants, suggesting alleviation of reactive oxygen species (ROS). A significant increase in activities of enzymes superoxide dismutase (SOD), catalase (CAT), ascorbate peroxidase (APX), glutathione reductase (GR), dehydroascorbate reductase (DHAR), and monodehydroascorbate reductase (MDHAR) was observed in response to the different durations of water-deficit conditions. In contrast, enzyme guaiacol peroxidase (POD) activity was lower in the transgenic lines and showed a negative correlation with ROS, ascorbic acid (AsA), and glutathione levels. The concentrations of AsA, glutathione and their reduced forms were higher in the transgenic plants and increased with ROS levels. These results indicate that AtDREB1A transgenic tomato lines are better adapted to water-deficit as they showed lower drought-induced oxidative stress due to activation of the antioxidant response.
机译:过表达AtDREB1A /的转基因番茄品系(cashi。Kashi Vishesh)。应力诱导的rd29A启动子驱动的CBF3在缺水7、14和21天时表现出明显较高的关键抗氧化剂酶活性。与非转基因植物相比,缺水的转基因番茄植物记录的过氧化氢和超氧阴离子形成水平较低,这表明活性氧(ROS)有所减轻。观察到不同的持续时间,超氧化物歧化酶(SOD),过氧化氢酶(CAT),抗坏血酸过氧化物酶(APX),谷胱甘肽还原酶(GR),脱氢抗坏血酸还原酶(DHAR)和单脱氢抗坏血酸还原酶(MDHAR)的活性显着增加。缺水状况。相反,转基因品系中的愈创木酚过氧化物酶(POD)活性较低,并且与ROS,抗坏血酸(AsA)和谷胱甘肽水平呈负相关。转基因植物中AsA,谷胱甘肽及其还原形式的浓度较高,并且随ROS水平的升高而升高。这些结果表明,AtDREB1A转基因番茄品系由于抗氧化反应的激活而表现出较低的干旱诱导的氧化胁迫,因此更适合缺水。

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