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Expression pattern and activity of six glutelin gene promoters in transgenic rice*

机译:六个谷蛋白基因启动子在转基因水稻中的表达模式和活性*

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摘要

The shortage of strong endosperm-specific expression promoters for driving the expression of recombinant protein genes in cereal endosperm is a major limitation in obtaining the required level and pattern of expression. Six promoters of seed storage glutelin genes (GluA-1, GluA-2, GluA-3, GluB-3, GluB-5, and GluC) were isolated from rice (Oryza sativa L.) genomic DNA by PCR. Their spatial and temporal expression patterns and expression potential in stable transgenic rice plants were examined with β-glucuronidase (GUS) used as a reporter gene. All the promoters showed the expected spatial expression within the endosperm. The GluA-1, GluA-2, and GluA-3 promoters directed GUS expression mainly in the outer portion (peripheral region) of the endosperm. The GluB-5 and GluC promoters directed GUS expression in the whole endosperm, with the latter expressed almost evenly throughout the whole endosperm, a feature different from that of other rice glutelin gene promoters. The GluB-3 promoter directed GUS expression solely in aleurone and subaleurone layers. Promoter activities examined during seed maturation showed that the GluC promoter had much higher activity than the other promoters. These promoters are ideal candidates for achieving gene expression for multiple purposes in monocot endosperm but avoid promoter homology-based gene silencing. The GluC promoter did not contain the endosperm specificity-determining motifs GCN4, AACA, and the prolamin-box, which suggests the existence of additional regulatory mechanism in determining endosperm specificity.
机译:用于驱动谷物胚乳中重组蛋白基因表达的强胚乳特异性表达启动子的缺乏是获得所需表达水平和表达方式的主要限制。通过PCR从水稻(Oryza sativa L.)基因组DNA中分离出种子存储谷蛋白基因的六个启动子(GluA-1,GluA-2,GluA-3,GluB-3,GluB-5和GluC)。以β-葡萄糖醛酸苷酶(GUS)为报告基因,研究了其在稳定转基因水稻植株中的时空表达模式和表达潜力。所有的启动子均在胚乳中显示出预期的空间表达。 GluA-1,GluA-2和GluA-3启动子主要在胚乳的外部(外围区域)指导GUS表达。 GluB-5和GluC启动子指导整个胚乳中GUS的表达,后者在整个胚乳中几乎均匀地表达,这一特征不同于其他水稻谷蛋白基因启动子。 GluB-3启动子仅在糊粉层和亚aleurone层指导GUS表达。在种子成熟过程中检查的启动子活性表明,GluC启动子的活性远高于其他启动子。这些启动子是在单子叶植物胚乳中实现多种目的基因表达的理想候选者,但避免了基于启动子同源性的基因沉默。 GluC启动子不包含胚乳特异性决定基序GCN4,AACA和谷醇溶蛋白框,这表明在确定胚乳特异性时还存在其他调控机制。

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