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首页> 外文期刊>Генетика: Ежемес. журн. >IDENTIFICATION AND CLONING OF THE Cu/Zn SUPEROXIDE DISMUTASE GENE FROM HALOPHYTE PLANT Aeluropus littoralis
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IDENTIFICATION AND CLONING OF THE Cu/Zn SUPEROXIDE DISMUTASE GENE FROM HALOPHYTE PLANT Aeluropus littoralis

机译:识别和铜/锌超氧化物的克隆Aeluropus歧化酶基因盐土植物工厂

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摘要

Reactive oxygen species (ROS) derived from molecular oxygen under biotic and abiotic stress such as salinity which have deleterious effects on cell metabolism. The toxic effect of ROS counteract by enzymatic as well as non-enzymatic antioxidant system. Superoxide dismutase (SOD) has a potential role for elimination of ROS. Halophytes respond to salt stress at different levels and can be a model for increasing salt tolerance in crop plants. Thus salt tolerance gene isolation and cloning of gene as well as subsequent transformation are first step for sensitive crop improvement. Aeluropus littoralis is a halophyte plant from poaceae family can beas a beneficial plant with high potential for creal breeding. There was no report on isolation of SOD gene from A. littoralis and little genomic study of this plant carried out. In this study a novel gene from A littoralis isolated. This gene amplified by reverse transcription-PCR and cloned in E. coli pTZ57R/T cloning vector. The AISOD gene sequence contained456 bp and the deduced transcripts encoding 152 amino acids shared a high homology with those putative CuZnSOD of higher plants like Zea mays and Oryza sativa.
机译:活性氧(ROS)来自氧气分子在生物和非生物压力盐度等产生不良的影响在细胞的新陈代谢。通过酶以及non-enzymatic抵消抗氧化系统。有消除活性氧的潜在作用。在不同的盐生植物应对盐胁迫水平,可以增加盐的典范宽容在农作物。基因的分离和克隆的基因以及后续转换的第一步敏感的作物改良。是禾本科的盐土植物植物家族比阿斯吗有益的植物来降低潜力高繁殖。基因a littoralis和小基因组研究这种植物的。基因从一个littoralis孤立。放大一和克隆在大肠杆菌pTZ57R / T克隆载体。基因序列contained456 bp和推导记录编码152个氨基酸共用一个和那些假定的CuZnSOD高的同源性高等植物玉蜀黍和栽培稻。

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