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Rna-directed Dna Methylation Induces Transcriptional Activation In Plants

机译:Rna指导的Dna甲基化诱导植物中的转录激活。

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A class-C floral homeotic gene of Petunia, pMADS3, is specifically expressed in the stamen and carpels of developing flowers. We had previously reported the ect-pMADS3 phenomenon in which introduction of a part of the pMADS3 genomic sequence, including intron 2, induces ectopic expression of endogenous pMADS3. Unlike transcriptional or posttranscriptional gene silencing triggered by the introduction of homologous sequences, this observation is unique in that the gene expression is up-regulated. In this study, we demonstrated that the ect-pMADS3 phenomenon is due to transcriptional activation based on RNA-directed DNA methylation (RdDM) occurring in a particular CG in a putative cis-element in pMADS3 intron 2. The CG methylation was maintained over generations, along with pMADS3 ectopic expression, even in the absence of RNA triggers. These results demonstrate a previously undescribed transcriptional regulatory mechanism that could lead to the generation of a transcriptionally active epiallele, thereby contributing to plant evolution. Our results also reveal a putative negative cis-element for organ-specific transcriptional regulation of class-C floral homeotic genes, which could be difficult to identify by other approaches.
机译:矮牵牛的C类花卉同源基因pMADS3在正在发育的花朵的雄蕊和心皮中特别表达。我们之前曾报道过ect-pMADS3现象,其中引入了一部分pMADS3基因组序列(包括内含子2)会诱导内源性pMADS3的异位表达。与引入同源序列引起的转录或转录后基因沉默不同,这种观察是独特的,因为基因表达被上调。在这项研究中,我们证明了ect-pMADS3现象是由于基于RNA指导的DNA甲基化(RdDM)的转录激活,该转录激活发生在pMADS3内含子2的特定CG中的特定CG中。 ,以及pMADS3异位表达,甚至在没有RNA触发因素的情况下也是如此。这些结果证明了以前未描述的转录调节机制,该机制可能导致转录活性表位等位基因的产生,从而有助于植物的进化。我们的研究结果还揭示了用于C类花卉同源基因的器官特异性转录调控的假定负性顺式元件,这可能很难通过其他方法进行鉴定。

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