首页> 外文期刊>Scientific reports. >Identification of bolting-related microRNAs and their targets reveals complex miRNA-mediated flowering-time regulatory networks in radish (Raphanus sativus L.)
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Identification of bolting-related microRNAs and their targets reveals complex miRNA-mediated flowering-time regulatory networks in radish (Raphanus sativus L.)

机译:鉴定螺栓相关的微小RNA和它们的靶标揭示了萝卜中复杂的miRNA介导的开花时间监管网络( Raphanus sativus L.)

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MicroRNAs (miRNAs) play vital regulatory roles in plant growth and development. The phase transition from vegetative growth to flowering is crucial in the life cycle of plants. To date, miRNA-mediated flowering regulatory networks remain largely unexplored in radish. In this study, two small RNA libraries from radish leaves at vegetative and reproductive stages were constructed and sequenced by Solexa sequencing. A total of 94 known miRNAs representing 21 conserved and 13 non-conserved miRNA families, and 44 potential novel miRNAs, were identified from the two libraries. In addition, 42 known and 17 novel miRNAs were significantly differentially expressed and identified as bolting-related miRNAs. RT-qPCR analysis revealed that some miRNAs exhibited tissue- or developmental stage-specific expression patterns. Moreover, 154 target transcripts were identified for 50 bolting-related miRNAs, which were predominately involved in plant development, signal transduction and transcriptional regulation. Based on the characterization of bolting-related miRNAs and their target genes, a putative schematic model of miRNA-mediated bolting and flowering regulatory network was proposed. These results could provide insights into bolting and flowering regulatory networks in radish, and facilitate dissecting the molecular mechanisms underlying bolting and flowering time regulation in vegetable crops.
机译:MicroRNA(miRNA)在植物生长和发展中发挥重要调节作用。从植物生长到开花的相转变在植物生命周期中至关重要。迄今为止,MiRNA介导的开花监管网络在很大程度上在萝卜上仍然是未开发的。在该研究中,由SOLEXS测序构建并测序来自植物生殖阶段的萝卜叶的两个小RNA文库。从两个文库中鉴定了总共94个被称为21个保守和13个非保守的miRNA家族和44个潜在新的miRNA的miRNA。另外,已知和17个新的miRNA显着表达并鉴定为螺栓连接相关的miRNA。 RT-QPCR分析表明,一些miRNA表现出组织或发育阶段特异性表达模式。此外,鉴定了154个靶转录物,用于50个螺栓相关的miRNA,其主要涉及植物发育,信号转导和转录调节。基于螺栓螺栓与螺栓的表征及其靶基因,提出了miRNA介导的螺栓传输和开花调节网络的推定示意图。这些结果可以为萝卜中的螺栓和开花调节网络提供洞察力,并促进在植物作物中解剖底层底层和开花时间调节的分子机制。

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