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Computational identification of conserved microRNAs and their putative targets in the Hypericum perforatum L. flower transcriptome

机译:贯叶连翘花转录组中保守的microRNA及其推定靶标的计算鉴定

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MicroRNAs (miRNAs) have recently emerged as important regulators of gene expression in plants. Many miRNA families and their targets have been extensively studied in model species and major crops. We have characterized mature miRNAs along with their precursors and potential targets in Hypericum to generate a comprehensive list of conserved miRNA families and to investigate the regulatory role of selected miRNAs in biological processes that occur in the flower. St. John's wort (Hypericum perforatum L., 2n = 4x = 32), a medicinal plant that produces pharmaceutically important metabolites with therapeutic activities, was chosen because it is regarded as an attractive model system for the study of apomixis. A computational in silico prediction of structure, in combination with an in vitro validation, allowed us to identify 7 pre-miRNAs, including miR156, miR166, miR390, miR394, miR396, and miR414. We demonstrated that H. perforatum flowers share highly conserved miRNAs and that these miRNAs potentially target dozens of genes with a wide range of molecular functions, including metabolism, response to stress, flower development, and plant reproduction. Our analysis paves the way toward identifying flower-specific miRNAs that may differentiate the sexual and apomictic reproductive pathways.
机译:MicroRNA(miRNA)最近已经成为植物中基因表达的重要调节剂。许多miRNA家族及其靶标已在模型物种和主要农作物中得到广泛研究。我们已经表征了成熟的miRNA及其在金丝桃属植物中的前体和潜在靶标,以生成保守的miRNA家族的完整列表,并研究所选miRNA在花中发生的生物过程中的调控作用。选择圣约翰草(Hypericum perforatum L.,2n = 4x = 32),它是一种产生具有治疗活性的重要药物代谢产物的药用植物,因为它被认为是研究无融合生殖的诱人模型系统。计算的计算机模拟结构预测与体外验证相结合,使我们能够鉴定出7个pre-miRNA,包括miR156,miR166,miR390,miR394,miR396和miR414。我们证明了贯叶连翘花共享高度保守的miRNA,并且这些miRNA潜在地靶向具有广泛分子功能的数十个基因,包括新陈代谢,对胁迫的响应,花朵发育和植物繁殖。我们的分析为鉴定可能区分性生殖和无生殖生殖途径的花特异性miRNA铺平了道路。

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