Aceto Serena, Sica Maria, De Paolo Sofia, D'Argenio Valeria, Cantiello Piergiuseppe, Salvatore Francesco, Gaudio Luciano
Department of Biology, University of Naples Federico II, Napoli, Italy.
CEINGE-Biotecnologie Avanzate, Napoli, Italy; Department of Molecular Medicine and Medical Biotechnologies, University of Naples Federico II, Napoli, Italy.
PLoS One. 2014 May 15;9(5):e97839. doi: 10.1371/journal.pone.0097839. eCollection 2014.
Plant microRNAs (miRNAs) are small, regulatory non-coding RNAs involved in a wide range of biological processes, from organ development to response to stimuli. In recent years, an increasing number of studies on model plant species have highlighted the evolutionary conservation of a high number of miRNA families and the existence of taxon-specific ones. However, few studies have examined miRNAs in non-model species such as orchids, which are characterized by highly diversified floral structures and pollination strategies. Therefore, we analysed a small RNA library of inflorescence tissue of the Mediterranean orchid Orchis italica to increase the knowledge on miRNAs in a non-model plant species. The high-throughput sequencing and analysis of a small RNA library of inflorescence of O. italica revealed 23 conserved and 161 putative novel miRNA families. Among the putative miRNA targets, experimental validation demonstrated that a DEF-like MADS-box transcript is cleaved by the homolog of miR5179 of O. italica. The presence of conserved miRNA families in the inflorescence of O. italica indicates that the basic developmental flower regulatory mechanisms mediated by miRNAs are maintained through evolution. Because, according to the "orchid code" theory, DEF-like genes exert a key function in the diversification of tepals and lip, the cleavage-mediated inhibitory activity of miR5179 on a OitaDEF-like transcript suggests that, in orchids, miRNAs play an important role in the diversification of the perianth organs.
植物微小RNA(miRNA)是一类小的、具有调控作用的非编码RNA,参与从器官发育到对刺激的反应等广泛的生物学过程。近年来,对模式植物物种的研究越来越多,突出了大量miRNA家族的进化保守性以及特定分类群miRNA的存在。然而,很少有研究考察过非模式物种中的miRNA,比如兰花,其具有高度多样化的花结构和授粉策略。因此,我们分析了地中海兰花意大利红门兰花序组织的一个小RNA文库,以增加对非模式植物物种中miRNA的了解。对意大利红门兰花序小RNA文库的高通量测序和分析揭示了23个保守的和161个推定的新miRNA家族。在推定的miRNA靶标中,实验验证表明意大利红门兰miR5179的同源物可切割一个DEF样MADS盒转录本。意大利红门兰花序中保守miRNA家族的存在表明,由miRNA介导的基本花发育调控机制在进化过程中得以维持。因为根据“兰花密码”理论,DEF样基因在花被片和唇瓣的多样化中发挥关键作用,所以miR5179对一个意大利红门兰DEF样转录本的切割介导的抑制活性表明,在兰花中,miRNA在花被器官的多样化中起重要作用。