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Antioxidant responses of transplastomic tobacco plants with chloroplast ω-3 desaturase gene under low temperature stress

机译:低温胁迫下叶绿体ω-3去饱和酶基因转膜体烟草植物的抗氧化反应

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We studied the reaction to the oxidative component of low temprature stress in tobacco lines, transformed with gene coding for chloroplast ω-3 desaturase with their wild type. The levels of oxidative stress markers malondialdehyde as well as the activity of antioxidative enzymes catalase and peroxidase have been followed at acclimation, 3 and 6 days at 5°C treatment. Low tempreture stress resulted in damage for the wild type and transplastomic plants. A corresponding increase of malondialdehyde contents in wild type plants, but the increase in transplastomic lines was significantly lower than that in wild type plants. A rise of peroxidase activity and catalase activity occurred in the wild type and transplastomic plants, but significantly higher trend of the same parameters has been found for the transplastomic lines. It could be suggested that transfer of chloroplast ω-3 desaturase gene is related to reduced intensity of low temprature-induced oxidative processes.
机译:我们研究了对烟草线中低温应力的氧化成分的反应,转化为用它们的野生型进行叶绿体ω-3去饱和酶的基因编码。在5℃处理的适应性下,3和6天遵循氧化应激标记物和抗氧化酶过氧化氢酶和过氧化物酶的活性的水平。低温胁迫导致野生型和移植剂植物损伤。野生型植物中丙二醛含量的相应增加,但移植体系的增加显着低于野生型植物。过氧化物酶活性和过氧化氢酶活性的升高发生在野生型和转膜体植物中,但已经发现了移植体系的显着更高的参数趋势。可以提出叶绿体ω-3去饱和酶基因的转移与低温诱导的氧化过程的强度降低有关。

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