Biotechnology Division, CSIR-Institute of Himalayan Bioresource Technology, Palampur 176061, Himachal Pradesh, India.
Gene. 2013 Jul 15;524(1):22-7. doi: 10.1016/j.gene.2013.04.031. Epub 2013 Apr 21.
Investigation of the transgenic Arabidopsis promoter trap line GFP-868 that showed GFP expression only in anthers revealed the T-DNA insertion at 461bp upstream to the hypothetical gene At4g10596 with the GFP reporter gene in head-to-head orientation to the At4g10596 gene. The expression of the At4g10596 gene in wild type and in GFP-868 plant homozygous for T-DNA insertion was comparable and found in all tissues tested, while the GFP expression was restricted to anthers of the GFP-868 plants suggesting that the 461bp fragment separating the two genes in the GFP-868 line is functioning as bi-directional promoter. This 461bp fragment was cloned upstream to the GUS gene in two orientations to test for bi-directional promoter activity. Transgenic Arabidopsis plants carrying either of these constructs showed GUS activity in anthers indicating that this fragment behaves as bi-directional promoter specific to anthers. These results were also supported by the presence of cis-acting motifs such as TATA box and POLLEN1LELAT52 (AGAAA) within the 461bp sequence in both orientations. However, transcripts corresponding to the upstream sequences beyond -461 nucleotides were not detected in the wild type suggesting that this 461bp fragment is a cryptic promoter. The significance of the promoter trap approach and the usefulness of this type of promoter are discussed.
对仅在花药中显示 GFP 表达的转基因拟南芥启动子捕获系 GFP-868 的研究表明,T-DNA 插入到假定基因 At4g10596 的上游 461bp 处,GFP 报告基因与 At4g10596 基因头对头取向。在野生型和 GFP-868 植物中 T-DNA 插入纯合子中,At4g10596 基因的表达与 GFP-868 植物中的 GFP 表达相当,并且在所有测试的组织中均发现,而 GFP 表达仅限于 GFP-868 植物的花药,表明在 GFP-868 系中分离两个基因的 461bp 片段作为双向启动子起作用。该 461bp 片段以两种取向克隆到 GUS 基因的上游,以测试双向启动子活性。携带这些构建体之一的转基因拟南芥植物在花药中显示 GUS 活性,表明该片段作为特异地针对花药的双向启动子起作用。这些结果还得到了在这两个方向的 461bp 序列内存在顺式作用基序(例如 TATA 盒和 POLLEN1LELAT52(AGAAA))的支持。然而,在野生型中未检测到超过-461 个核苷酸的上游序列对应的转录物,这表明该 461bp 片段是一个隐藏的启动子。讨论了启动子捕获方法的意义和这种类型的启动子的有用性。