Niu Jun, Wang Jia, Hu Huiwen, Chen Yinlei, An Jiyong, Cai Jian, Sun Runze, Sheng Zhongting, Liu Xieping, Lin Shanzhi
College of Biological Sciences and Biotechnology, National Engineering Laboratory for Tree Breeding, Key Laboratory of Genetics and Breeding in Forest Trees and Ornamental Plants, Ministry of Education, Beijing Forestry University, Beijing 10083, China.
Sci Rep. 2016 Feb 8;6:20648. doi: 10.1038/srep20648.
MicroRNAs (miRNAs) are small, non-coding RNAs that play important roles in post-transcriptional regulation of their target genes, yet the transcriptional regulation of plant miRNAs by promoter is poorly understood. Here, we firstly clone pri-miR475b cDNA and its native promoter from P. suaveolens, and characterize Psu-MIR475b as class-II gene transcribed by RNA polymerase II. By 5' deletion analysis of Psu-miR475b promoter in a series of promoter-GUS chimeric vectors, we functionally identify three positive regulatory regions and multiple cis-acting elements responsible for Psu-miR475b promoter activity in response to freezing stress and exogenous hormone treatment. Moreover, the Psu-miR475b promoter activity displays a tissue-specific manner, negatively regulated by freezing stress and positively by MeJA, SA or GA treatment. Importantly, we comparatively analyze the time-course transcriptional profiles of Psu-miR475b and its targets in Psu-miR475b over-expression transgenic plants controlled by Psu-miR475b-specific promoter or CaMV 35S constitutive promoter, and explore the regulatory mechanism of Psu-miR475b promoter controlling transcriptional expressions of Psu-MIR475b and its targets in response to freezing stress and exogenous hormone treatment. Our results reveal that Psu-miR475b promoter-mediated transcriptions of Psu-MIR475b and its targets in response to freezing stress may be involved in a cross-talk between freezing response and stress signaling process.
微小RNA(miRNA)是一类小的非编码RNA,在其靶基因的转录后调控中发挥重要作用,然而植物miRNA启动子对其转录调控的了解却很少。在此,我们首先从藿香中克隆了pri-miR475b cDNA及其天然启动子,并将Psu-MIR475b鉴定为RNA聚合酶II转录的II类基因。通过在一系列启动子-GUS嵌合载体中对Psu-miR475b启动子进行5'缺失分析,我们在功能上鉴定出三个正调控区域和多个顺式作用元件,它们负责Psu-miR475b启动子在响应冷冻胁迫和外源激素处理时的活性。此外,Psu-miR475b启动子活性呈现组织特异性方式,受冷冻胁迫负调控,受茉莉酸甲酯(MeJA)、水杨酸(SA)或赤霉素(GA)处理正调控。重要的是,我们比较分析了由Psu-miR475b特异性启动子或花椰菜花叶病毒35S组成型启动子控制的Psu-miR475b过表达转基因植物中Psu-miR475b及其靶标的时间进程转录谱,并探索了Psu-miR475b启动子在响应冷冻胁迫和外源激素处理时控制Psu-MIR475b及其靶标转录表达的调控机制。我们的结果表明,Psu-miR475b启动子介导的Psu-MIR475b及其靶标在响应冷冻胁迫时的转录可能参与了冷冻响应和胁迫信号传导过程之间的相互作用。