State Key Laboratory of Agrobiotechnology, College of Biological Sciences, China Agricultural University, Beijing, People's Republic of China.
Plant Cell Rep. 2010 May;29(5):503-11. doi: 10.1007/s00299-010-0839-3. Epub 2010 Mar 10.
SBgLR (Solanum tuberosum genomic lysine-rich) is a pollen-specific gene cloned from potato (Solanum tuberosum L.). The region from -269 to -9 (The A of translation start site "ATG" as +1) of the SBgLR promoter was identified as critical for gene specific expression in pollen grains. Sequence analysis indicates a palindromic sequence "TTTCTATTATAATAGAAA" in the -227 to -209 region, in which two pollen-specific motifs TTTCT and AGAAA surround a unique putative TATA box. Moreover, nine putative pollen-specific motifs are located in the region between the TATA box and ATG. We placed the -227 to -9 region (reserving the palindrome) and the -222 to -9 region (breaking the palindrome) downstream of the CaMV35S enhancer, respectively, to construct two fusion promoters. Histochemical assays in transgenic plants demonstrated that the region from -222 to -9 is necessary and sufficient for pollen-specific expression of the uidA gene. However, the region of -227 to -9 is incapable of driving GUS expression in pollen grains and parts of vegetative tissues. A series of 5' deletions from -269 to -9 of SBgLR promoter were constructed. A transient expression assay indicated that the region from the -227 to -9 suppressed gfp gene expression in pollen, and a positive regulatory element was present in the region of -253 to -227. The function of the palindromic sequence as a repressor inhibiting gene expression in pollen was further confirmed by the mutated promoter, breaking the palindrome by substituting its 3'-flanking five base pairs, which resumes the reporter gene expression in mature pollen.
SBgLR(马铃薯基因组赖氨酸丰富蛋白)是从马铃薯中克隆得到的花粉特异性基因。该基因启动子的-269 到-9(翻译起始位点“ATG”的 A 为+1)区域对于花粉粒中基因的特异性表达是必需的。序列分析表明,-227 到-209 区域存在一个回文序列“TTTCTATTATAATAGAAA”,其中两个花粉特异性基序 TTTCT 和 AGAAA 围绕一个独特的推定 TATA 盒。此外,在 TATA 盒和 ATG 之间的区域有 9 个假定的花粉特异性基序。我们分别将-227 到-9 区域(保留回文序列)和-222 到-9 区域(破坏回文序列)置于 CaMV35S 增强子的下游,构建了两个融合启动子。在转基因植物中的组织化学分析表明,-222 到-9 区域是 uidA 基因在花粉中特异性表达所必需和充分的。然而,-227 到-9 区域不能驱动 GUS 在花粉粒和部分营养组织中的表达。构建了一系列从 SBgLR 启动子的-269 到-9 的 5'缺失。瞬时表达分析表明,-227 到-9 区域抑制了花粉中的 GFP 基因表达,并且在-253 到-227 区域存在一个正调控元件。通过突变启动子进一步证实了回文序列作为抑制花粉中基因表达的阻遏物的功能,通过替换其 3'侧翼的 5 个碱基破坏了回文序列,从而恢复了成熟花粉中报告基因的表达。