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Cloning of a new LEA1 gene promoter from soybean and functional analysis in transgenic tobacco

机译:从转基因烟草中大豆和功能分析的新lea1基因启动子克隆

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LEA1 gene from Glycine max can be expressed in late-embryo stage of plants, and respond to salinity and dehydration stress. To elucidate the mechanism for stress tolerance and high expression in seeds, we isolated and characterized the promoter of LEA1 gene (EQ, 1997 bp) starting the 5'LEA1 coding region. A deletion mutant of EQ promoter (ED) and the full length promoter (EQ) were fused to GUS reporter gene and transformed into the tobacco leaf discs. The results indicated that expression of the reporter gene (GUS) could be regulated by EQ promoter, and was stronger than the mutant under the stress conditions. Also, the expression level of GUS gene driven by EQ promoter in transgenic tobacco seeds was significantly higher than that by the mutant promoter, which meant that it had a better tissue-specificity. Therefore, the active domain for the promoter was located between -1997 and -1000 bp. Additionally, the activity of EQ promoter was 2.1-, 3.3- and 0.4- times stronger than the activity of promoter CaMV35S under salt (24 h), drought (10 h) or ABA (24 h), respectively. Meanwhile, the GUS activity of EQ promoter in seeds was 1.8-fold stronger compared to the promoter CaMV35S. In summary, the new promoter (EQ) is bi-functional, stress-inducible and seed-specific. These findings provide a further understanding for the regulation of LEA1gene expression, and suggest a new way for improving seed quality under saline and alkaline land.
机译:来自甘氨酸Max的Lea1基因可在植物的后期胚胎阶段表达,并对盐度和脱水应力作出响应。为了阐明种子中的应力耐受性和高表达的机制,我们分离出来,并表征了从5'17编码区域开始的lea1基因(EQ,1997 BP)的启动子。将EQ启动子(ED)和全长启动子(EQ)的缺失突变体融合给GUS报告基因,并转化到烟草叶片中。结果表明,报告基因(GUS)的表达可以通过EQ启动子调节,并且比胁迫条件下的突变体强。而且,由转基因烟草种子中的各种促进剂驱动的GUS基因的表达水平显着高于突变促进剂,这意味着它具有更好的组织特异性。因此,启动子的活性结构域位于-1997和-1000bp之间。另外,EQ启动子的活性比盐(24小时),干旱(10H)或ABA(24小时)下的启动子Camv35s活性强的2.1-,3.3和0.4倍。同时,与启动子CAMV35S相比,种子中的各种促进剂的GUS活性为1.8倍。总之,新的启动子(EQ)是双功能,应激诱导和种子特异性的。这些发现提供了对lea1gene表达调节的进一步理解,并提出了一种改善盐水和碱性土地下种子质量的新方法。

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