Centre for Plant Molecular Biology, Osmania University, Hyderabad 500007, Andhra Pradesh, India.
Mol Biotechnol. 2011 May;48(1):49-59. doi: 10.1007/s12033-010-9347-5.
Earlier, a pollen-specific Oryza sativa indica pollen allergen gene (OSIPA), coding for expansins/pollen allergens, was isolated from rice, and its promoter--upon expression in tobacco and Arabidopsis--was found active during the late stages of pollen development. In this investigation, to analyze the effects of different putative regulatory motifs of OSIPA promoter, a series of 5' deletions were fused to β-glucuronidase gene (GUS) which were stably introduced into rice and Arabidopsis. Histochemical GUS analysis of the transgenic plants revealed that a 1631 bp promoter fragment mediates maximum GUS expression at different stages of anther/pollen development. Promoter deletions to -1272, -966, -617, and -199 bp did not change the expression profile of the pollen specificity. However, the activity of promoter was reduced as the length of promoter decreased. The region between -1567 and -199 bp was found adequate to confer pollen-specific expression in both rice and Arabidopsis systems. An approximate 4-fold increase in the GUS activity was observed in the pollen of rice when compared to that of Arabidopsis. As such, the OSIPA promoter seems promising for generation of stable male-sterile lines required for the production of hybrids in rice and other crop plants.
先前,从水稻中分离出了一个花粉特异性的水稻 indica 花粉过敏原基因 (OSIPA),该基因编码扩展蛋白/花粉过敏原,其启动子——在烟草和拟南芥中表达时——在花粉发育的后期阶段具有活性。在这项研究中,为了分析 OSIPA 启动子不同假定调控元件的影响,将一系列 5'缺失与β-葡萄糖醛酸酶基因 (GUS) 融合,并稳定导入水稻和拟南芥。对转基因植物的组织化学 GUS 分析表明,1631bp 的启动子片段在花药/花粉发育的不同阶段介导最大的 GUS 表达。启动子缺失至-1272、-966、-617 和-199bp 不会改变花粉特异性的表达谱。然而,随着启动子长度的缩短,启动子的活性降低。发现-1567 和-199bp 之间的区域足以在水稻和拟南芥系统中赋予花粉特异性表达。与拟南芥相比,水稻花粉中的 GUS 活性增加了约 4 倍。因此,OSIPA 启动子有望产生稳定的雄性不育系,用于水稻和其他作物植物的杂种生产。