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A seed-specific AP2-domain transcription factor from soybean plays a certain role in regulation of seed germination

机译:大豆种子特异性AP2-结构域转录因子在种子萌发调控中起一定作用

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摘要

Plant seed development and germination are under strict temporal and spatial regulation, and transcription factors play important roles in this regulation. In the present study we identified an EST expressed specifically in the developing soybean seeds. The full length of the gene was obtained through further RACE analysis and the gene was named GmSGR. Sequence analysis revealed that this gene belonged to the AP2/ERF transcription factor family. Its AP2 domain had the highest similarity with that of the A-3 member AtABI4 of DREB subgroup in the AP2/ERF family in Arabidopsis. GmSGR did not exhibit transcriptional activation activity in the yeast assay system. GmSGR was overexpressed in Arabidopsis and the germination rates of the transgenic seeds were significantly higher than that of the wild type seeds under higher concentrations of ABA and glucose respectively. However, the germination rates of the transgenic seeds were lower than that of control under salt stress. The expression of AtEm6 and AtRD29B was higher in the seedlings of the transgenic plants than that in the wild-type seedlings. These results suggest that GmSGR may confer reduced ABA sensitivity and enhanced salt sensitivity to the transgenic seeds through regulating the expression of AtEm6 and AtRD29B genes.
机译:植物种子的发育和发芽受到严格的时空调控,转录因子在调控中起着重要的作用。在本研究中,我们确定了在发育中的大豆种子中特异性表达的EST。该基因的全长通过进一步的RACE分析获得,该基因被命名为GmSGR。序列分析表明该基因属于AP2 / ERF转录因子家族。其AP2结构域与拟南芥AP2 / ERF家族中DREB亚组的A-3成员AtABI4具有最高的相似性。 GmSGR在酵母分析系统中没有表现出转录激活活性。 GmSGR在拟南芥中过表达,分别在较高的ABA和葡萄糖浓度下,转基因种子的发芽率明显高于野生型种子。然而,在盐胁迫下,转基因种子的发芽率低于对照。转基因植物的幼苗中AtEm6和AtRD29B的表达高于野生型幼苗。这些结果表明,GmSGR可通过调节AtEm6和AtRD29B基因的表达而降低转基因种子的ABA敏感性和盐敏感性。

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