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首页> 外文期刊>Environmental and experimental botany >A protein repairing enzyme, PROTEIN L- ISOASPARTYL METHYLTRANSFERASE is involved in salinity stress tolerance by increasing efficiency of ROS-scavenging enzymes
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A protein repairing enzyme, PROTEIN L- ISOASPARTYL METHYLTRANSFERASE is involved in salinity stress tolerance by increasing efficiency of ROS-scavenging enzymes

机译:通过增加ROS扫描酶的效率,蛋白质修复酶,蛋白质L- isoaspartyl甲基转移酶参与盐度应力耐受性

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摘要

Saline conditions can significantly affect plant growth and development, leading to massive reduction in crop yield. Herein, we show that a protein repairing enzyme PROTEIN L-ISOASPARTYL METHYLTRANSFERASE imparts salinity stress tolerance in Arabidopsis thaliana by repairing deleterious isoAsp accumulation during salinity stress. We demonstrate that salinity stress accelerates isoAsp accumulation in proteins and also induces PIMT activity in Arabidopsis. Transcript analysis indicates that both PIMT1 and PIMT2 are upregulated in response to salinity stress. Subsequent functional analysis reveals that PIMT1 and PIMT2 overexpression lines are tolerant, while RNAi lines are hyper sensitive to salinity stress in comparison to wild type (WT). Biochemical analyses of thesePIMT transgenic lines also reveals that compromised salinity tolerance of RNAi lines are linked to increased isoAsp accumulation, while improved tolerance of overexpression lines is associated with reduced isoAsp accumulation in proteins. Histochemical and biochemical studies further confirm lower accumulation of ROS and reduced lipid peroxidation in PIMT overexpression lines, while increased ROS accumulation and increased lipid peroxidation in RNAi lines as compared to WT under salinity stress. Interestingly, PIMToverexpression lines exhibit improved antioxidant enzyme efficiency, while RNAi lines display compromised antioxidant enzyme efficacy as compared to WT type plants. Our study suggests that PIMT improves salinity stress tolerance by restricting salt induced-excess ROS accumulation possibly by repairing isoAsp mediated protein damage of antioxidant enzymes. Our study can be utilized for enhancing salinity stress tolerance of economically important crops.
机译:盐水条件可显着影响植物生长和发育,导致作物产量大幅降低。在此,我们表明,通过修复盐度应力期间修复有害的ISOASP积累,蛋白质修复酶蛋白L- isoaspartyl甲基转移酶赋予拟南芥盐分耐受性。我们证明盐度应力在蛋白质中加速Isoasp积累,并在拟南芥中引起筛网活性。转录分析表明PIMT1和PIMT2响应于盐度应力而上调。随后的功能分析表明,PIMT1和PIMT2过表达线是耐受性,而RNAi线与野生型(WT)相比,RNAi线对盐度应力具有高敏感性。 TheSepimt转基因系的生化分析还揭示了RNAi线的损伤性耐受性与增加的IsoAsP积累有关,同时改善过表达线的耐受性与蛋白质中的Isoasp积累降低相关。组织化学和生化研究进一步证实了ROS的较低积累,并在PIMT过度表达系中降低了脂质过氧化,而在盐度应力下的WT相比,RNAi线中的ROS积累和增加的脂质过氧化增加。有趣的是,与WT型植物相比,PIMToverxpression系具有改善的抗氧化酶效率,而RNAi线显示出损伤的抗氧化酶疗效。我们的研究表明,通过修复抗氧化酶的ISOASP介导的蛋白质损伤,通过限制盐诱导过量的ROS积累,PIM将通过限制盐诱导过量的ROS积累来提高盐度胁迫耐受性。我们的研究可用于提高经济上重要作物的盐度应力耐受性。

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