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花椰菜花叶病毒35S启动子的功能分析:对B5、B4和B2亚结构域在启动子活性中作用的重新评估

Functional analysis of cauliflower mosaic virus 35S promoter: re-evaluation of the role of subdomains B5, B4 and B2 in promoter activity.

作者信息

Bhullar Simran, Datta Sudipta, Advani Sonia, Chakravarthy Suma, Gautam Taru, Pental Deepak, Burma Pradeep Kumar

机构信息

Department of Genetics, University of Delhi, South Campus, Benito Juarez Road, New Delhi-110021, India.

出版信息

Plant Biotechnol J. 2007 Nov;5(6):696-708. doi: 10.1111/j.1467-7652.2007.00274.x. Epub 2007 Jul 1.

Abstract

The cauliflower mosaic virus 35S (35S) promoter is used extensively for transgene expression in plants. The promoter has been delineated into different subdomains based on deletion analysis and gain-of-function studies. However, cis-elements important for promoter activity have been identified only in the domains B1 (as-2 element), A1 (as-1 element) and minimal promoter (TATA box). No cis-elements have been described in subdomains B2-B5, although these are reported to be important for the overall activity of the 35S promoter. We have re-evaluated the contribution of three of these subdomains, namely B5, B4 and B2, to 35S promoter activity by developing several modified promoters. The analysis of beta-glucuronidase gene expression driven by the modified promoters in different tissues of primary transgenic tobacco lines, as well as in seedlings of the T(1) generation, revealed new facets about the functional organization of the 35S promoter. This study suggests that: (i) the 35S promoter truncated up to -301 functions in a similar manner to the -343 (full-length) 35S promoter; (ii) the Dof core and I-box core observed in the subdomain B4 are important for 35S promoter activity; and (iii) the subdomain B2 is essential for maintaining an appropriate distance between the proximal and distal regions of the 35S promoter. These observations will aid in the development of functional synthetic 35S promoters with decreased sequence homology. Such promoters can be used to drive multiple transgenes without evoking promoter homology-based gene silencing when attempting gene stacking.

摘要

花椰菜花叶病毒35S(35S)启动子广泛用于植物中的转基因表达。基于缺失分析和功能获得性研究,该启动子已被划分为不同的亚结构域。然而,仅在结构域B1(as-2元件)、A1(as-1元件)和最小启动子(TATA框)中鉴定出了对启动子活性重要的顺式元件。尽管据报道亚结构域B2 - B5对35S启动子的整体活性很重要,但尚未在这些亚结构域中描述顺式元件。我们通过构建几个修饰的启动子,重新评估了其中三个亚结构域,即B5、B4和B2对35S启动子活性的贡献。对修饰启动子驱动的β-葡萄糖醛酸酶基因在初级转基因烟草品系的不同组织以及T(1)代幼苗中的表达分析,揭示了35S启动子功能组织的新方面。这项研究表明:(i)截短至-301的35S启动子的功能与-343(全长)35S启动子相似;(ii)在亚结构域B4中观察到的Dof核心和I-box核心对35S启动子活性很重要;(iii)亚结构域B2对于维持35S启动子近端和远端区域之间的适当距离至关重要。这些观察结果将有助于开发具有降低序列同源性的功能性合成35S启动子。当尝试进行基因堆叠时,此类启动子可用于驱动多个转基因而不会引发基于启动子同源性的基因沉默。

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