Ünlü Ercan Selçuk, Bataw Sara, Aslan Şen Didem, Şahin Yunus, Zencirci Nusret
Department of Chemistry, Faculty of Arts and Science, Abant İzzet Baysal University , Bolu , Turkey.
Department of Biology, Faculty of Arts and Science, Abant İzzet Baysal University , Bolu , Turkey.
Turk J Biol. 2018 Dec 10;42(6):527-536. doi: 10.3906/biy-1802-3. eCollection 2018.
Triticum monococcum subsp. monococcum as a first cultivated diploid wheat species possesses desirable agronomic and quality characteristics. Drought and salinity are the most dramatic environmental stress factors that have serious impact on yield and quality of crops; however, plants can use alternative defense mechanisms against these stresses. The posttranscriptional alteration of gene expression by microRNAs (miRNAs) is one of the most conserved mechanisms. In plant species including wheat genomes, miRNAs have been implicated in the management of salt and drought stress; however, studies on einkorn wheat (Triticum monococcum subsp. monococcum) are not yet available. In this study, we aimed to identify conserved miRNAs in einkorn wheat using next generation sequencing technology and bioinformatics analysis. In order to include a larger set of miRNAs, small RNA molecules from pooled plant samples grown under normal, drought, and salinity conditions were used for the library preparation and sequence analysis. After bioinformatics analysis, we identified 167 putative mature miRNA sequences belonging to 140 distinct miRNA families. We also presented a comparative analysis to propose that miRNAs and their target genes were involved in salt and drought stress control in addition to a comprehensive analysis of the scanned target genes in the T. aestivum genome.
一粒小麦(Triticum monococcum subsp. monococcum)作为首个被驯化的二倍体小麦物种,具有理想的农艺和品质特性。干旱和盐度是对作物产量和品质产生严重影响的最显著环境胁迫因素;然而,植物可以利用其他防御机制来应对这些胁迫。微小RNA(miRNA)对基因表达进行的转录后改变是最保守的机制之一。在包括小麦基因组在内的植物物种中,miRNA与盐和干旱胁迫的调控有关;然而,关于一粒小麦(Triticum monococcum subsp. monococcum)的研究尚未见报道。在本研究中,我们旨在利用下一代测序技术和生物信息学分析,鉴定一粒小麦中保守的miRNA。为了涵盖更多的miRNA,我们使用了在正常、干旱和盐度条件下生长的混合植物样本中的小RNA分子来构建文库并进行序列分析。经过生物信息学分析,我们鉴定出了属于140个不同miRNA家族的167个假定的成熟miRNA序列。我们还进行了比较分析,提出miRNA及其靶基因除了参与对普通小麦基因组中扫描到的靶基因进行全面分析外还参与盐和干旱胁迫的调控。