首页> 外文期刊>Planta: An International Journal of Plant Biology >Transgenic expression of fern Pteris vittata glutaredoxin PvGrx5 in Arabidopsis thaliana increases plant tolerance to high temperature stress and reduces oxidative damage to proteins
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Transgenic expression of fern Pteris vittata glutaredoxin PvGrx5 in Arabidopsis thaliana increases plant tolerance to high temperature stress and reduces oxidative damage to proteins

机译:在拟南芥中转基因蕨蕨谷胱甘肽PvGrx5的转基因表达提高了植物对高温胁迫的耐受性并减少了对蛋白质的氧化损伤

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摘要

A glutaredoxin of the fern Pteris vittata PvGRX5 was previously implicated in arsenic tolerance. Because of possible involvements of glutaredoxins in metabolic adaptations to high temperature stress, transgenic Arabidopsis lines constitutively expressing PvGRX5 were evaluated for thermotolerance. Homozygous lines expressing PvGRX5 exhibited significantly greater tolerance to high temperature stress than the vector control and wild-type, based upon growth during stress and during recovery from stress, and this was related to leaf glutaredoxin specific activities. Measurements of tissue ion leakage, thiobarbituric acid reactive substances and protein carbonyl content showed that PvGRX5-expressors were significantly (P < 0.05) less affected by the high temperature treatment compared to wild-type and vector control lines for damage to membranes and proteins. Immunoblots indicated that specific protein bands, carbonylated during the stress treatment in the control lines, were protected in PvGRX5-expressors, thus implicating PvGRX5 in heat tolerance, likely mediated through cellular protection against oxidative stress.
机译:蕨类蕨类植物PvGRX5的戊二醛毒素以前被认为具有砷耐受性。由于戊二醛毒素可能参与高温胁迫的代谢适应性,因此评估了组成型表达PvGRX5的转基因拟南芥品系的耐热性。基于胁迫期间和胁迫恢复期间的生长,表达PvGRX5的纯合品系对高温胁迫的耐受性比载体对照和野生型显着更高,这与叶片戊二醛毒素的特异性活性有关。对组织离子渗漏,硫代巴比妥酸反应性物质和蛋白质羰基含量的测量结果表明,与野生型和载体对照系相比,PvGRX5表达子受高温处理的影响显着(P <0.05),对膜和蛋白质的损害较小。免疫印迹表明,在对照品系的应激处理过程中,羰基化的特定蛋白条带在PvGRX5表达子中受到保护,因此暗示PvGRX5具有耐热性,可能是通过针对氧化应激的细胞保护作用介导的。

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