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向日葵向日葵素基因的发育和激素调控:近端启动子序列赋予种子区域化表达。

Developmental and hormonal regulation of sunflower helianthinin genes: proximal promoter sequences confer regionalized seed expression.

作者信息

Nunberg A N, Li Z, Bogue M A, Vivekananda J, Reddy A S, Thomas T L

机构信息

Department of Biology, Texas A & M University, College Station 77843.

出版信息

Plant Cell. 1994 Apr;6(4):473-86. doi: 10.1105/tpc.6.4.473.

Abstract

DNA elements involved in the regulation of two sunflower helianthinin genes were identified by analysis of beta-glucuronidase (GUS) expression in transgenic tobacco driven by sequences derived from the 5' upstream regions of these genes. A 2.4-kb upstream region of the helianthinin gene HaG3-A conferred rigorous developmental GUS expression in transgenic tobacco seeds with no significant GUS activity in nonembryonic tissues. Regions of the helianthinin upstream regulatory ensemble (URE) conferred ectopic expression in nonembryonic tissues when analyzed outside of the context of the complete helianthinin regulatory complex. A proximal promoter region was identified that conferred significant GUS expression in seeds but not in leaves of transgenic tobacco. Three sequence motifs that bind to seed nuclear proteins were identified in the proximal promoter region; mutations in these motifs significantly reduced the level of nuclear protein binding. Another important class of cis-regulatory elements was identified in the helianthinin URE that conferred abscisic acid-responsive GUS expression. In the full-length helianthinin URE, these elements only responded to abscisic acid in the developing seed, suggesting that the helianthinin gene contains additional regulatory elements, possibly in the proximal promoter region, that ensure hierarchical control in the developing seed.

摘要

通过分析由这些基因5'上游区域序列驱动的转基因烟草中β-葡萄糖醛酸酶(GUS)的表达,鉴定出参与两个向日葵向日葵素基因调控的DNA元件。向日葵素基因HaG3-A的2.4 kb上游区域在转基因烟草种子中赋予了严格的发育性GUS表达,在非胚胎组织中没有明显的GUS活性。当在完整的向日葵素调控复合体背景之外进行分析时,向日葵素上游调控元件(URE)区域在非胚胎组织中赋予了异位表达。鉴定出一个近端启动子区域,其在转基因烟草的种子中赋予了显著的GUS表达,但在叶片中没有。在近端启动子区域鉴定出三个与种子核蛋白结合的序列基序;这些基序中的突变显著降低了核蛋白结合水平。在向日葵素URE中鉴定出另一类重要的顺式调控元件,其赋予了脱落酸响应性GUS表达。在全长向日葵素URE中,这些元件仅在发育中的种子中对脱落酸有反应,这表明向日葵素基因可能在近端启动子区域含有额外的调控元件,以确保在发育中的种子中进行分级控制。

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