GmSBP2启动子的组合调控模块:一个远端顺式调控域将SBP2启动子的活性限制在营养器官的维管组织中

Alessandro J. Waclawovsky , Rejane L. Freitas , Carolina S. Rocha , Luis Antônio S. Contim , Elizabeth P.B. Fontes
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引用次数: 13

摘要

Glycine max蔗糖结合蛋白(GmSBP2)启动子指导转基因烟草韧皮部特异性报告基因的表达。在这里,我们确定了对GmSPB2启动子的组织特异性模式进行正调控和负调控的顺式调控域(CRD)。CRD-A远端(−2000 ~−700)序列中的负调控元件抑制GmSBP2启动子在除种子组织和营养器官维管组织外的其他组织中的表达。该区域的删除减轻了抑制,导致在所有组织中都具有高度活性的组成启动子。强组成型- 700GmSBP2启动子的进一步缺失划分了几个以上下文依赖方式起作用的插入增强子样和抑制结构域。组织化学检查显示,CRD-C(- 445至- 367)同时含有阴性和阳性元素。这个区域在根和除内韧皮部外的茎的所有组织中都不表达启动子。相比之下,当与- 132pSBP2-GUS构建体融合时,它可以恢复根分生组织的表达,该构建体包含映射到44-bp CRD-G(- 136至- 92)的根分生组织表达抑制决定因素。因此,GmSBP2启动子在功能上被组织成一个具有植物启动子组合模块化配置的近端区域和一个远端区域,这限制了基因在营养器官维管组织中的表达。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Combinatorial regulation modules on GmSBP2 promoter: A distal cis-regulatory domain confines the SBP2 promoter activity to the vascular tissue in vegetative organs

The Glycine max sucrose binding protein (GmSBP2) promoter directs phloem-specific expression of reporter genes in transgenic tobacco. Here, we identified cis-regulatory domains (CRD) that contribute with positive and negative regulation for the tissue-specific pattern of the GmSPB2 promoter. Negative regulatory elements in the distal CRD-A (−2000 to −700) sequences suppressed expression from the GmSBP2 promoter in tissues other than seed tissues and vascular tissues of vegetative organs. Deletion of this region relieved repression resulting in a constitutive promoter highly active in all tissues analyzed. Further deletions from the strong constitutive −700GmSBP2 promoter delimited several intercalating enhancer-like and repressing domains that function in a context-dependent manner. Histochemical examination revealed that the CRD-C (−445 to −367) harbors both negative and positive elements. This region abolished promoter expression in roots and in all tissues of stems except for the inner phloem. In contrast, it restores root meristem expression when fused to the −132pSBP2-GUS construct, which contains root meristem expression-repressing determinants mapped to the 44-bp CRD-G (−136 to −92). Thus, the GmSBP2 promoter is functionally organized into a proximal region with the combinatorial modular configuration of plant promoters and a distal domain, which restricts gene expression to the vascular tissues in vegetative organs.

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