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Overexpression of the Arabidopsis glutathione peroxidase-like 5 gene (AtGPXL5) resulted in altered plant development and redox status

机译:拟南芥谷胱甘肽过氧化物酶样5基因(ATGPXL5)的过度表达导致植物发育改变和氧化还原状态

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摘要

Plant's glutathione peroxidase-like (GPXL) enzymes are thiol-based peroxidases catalysing the reduction of H2O2 or hydroperoxides to water or alcohols using reduced glutathione (GSH) or thioredoxin as an electron donor. Arabidopsis thaliana possess eight isoenzymes having different roles in redox-dependent processes. AtGPXL5 is a poorly known plasma membrane associated enzyme. We have investigated the role of AtGPXL5 in development and responses to salt using AtGPXL5-overexpressing lines (OX-AtGPXL5) and Atgpxl5 mutants. Constitutive overexpression of AtGPXL5 increased the transcription of the gene by 17-24 times in 6-week-old plants. In OX-AtGPXL5 plants, the activity of glutathione peroxidase, thioredoxin peroxidase and most of the main antioxidant enzymes were like in the wild type Col-0, but the amount of GSH was increased, thus the redox potential became more negative compared to the wild type. The well-preserved germination rate, seedling growth and chlorophyll content of the OX-AtGPXL5 seedlings in the presence of 100 mM NaCl indicated the increased salt tolerance of AtGPXL5-overexpressing plants. In agreement, the Atgpxl5 knockdown mutants had enhanced salt stress sensitivity in comparison to the wild type. Our results indicate that AtGPXL5 may have function in the fine-tuning of ROS levels and redox status during salt stress.
机译:植物的谷胱甘肽过氧化物酶样(GPX1)酶是基于硫醇的过氧化物酶,其使用还原的谷胱甘肽(GSH)或硫酮作为电子供体,将H 2 O 2或氢过氧化物的还原到水或醇催化。 Arabidopsis Thaliana拥有八种同工酶,在依赖于氧化还原过程中具有不同的作用。 ATGPXL5是一种令人着名的血浆膜相关酶。我们研究了ATGPXL5在使用ATGPXL5过表达线(OX-ATGPXL5)和ATGPXL5突变体对盐的发育和反应的作用。 ATGPXL5的组成型过表达将基因的转录增加17-24次在6周龄植物中。在牛顿ATGPXL5植物中,谷胱甘肽过氧化物酶的活性,硫酸辛过氧化物酶和大多数主要抗氧化酶在野生型COL-0中,但GSH的量增加,因此与野生的氧化还原电位变得更加负类型。在100mM NaCl存在下,在存在100mM NaCl存在下的优质萌发速率,幼苗生长和叶绿素含量表明ATGPXL5过表达植物的耐盐性增加。同意,与野生型相比,ATGPXL5敲低突变体具有增强的盐胁迫敏感性。我们的结果表明,ATGPXL5在盐应力期间的ROS水平和氧化还原状态的微调中可能具有功能。

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