首页> 外文期刊>International Journal of Molecular Sciences >Transcriptome-Wide Identification of miRNA Targets under Nitrogen Deficiency in Populus tomentosa Using Degradome Sequencing
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Transcriptome-Wide Identification of miRNA Targets under Nitrogen Deficiency in Populus tomentosa Using Degradome Sequencing

机译:利用退化基因组测序技术在全氮丰缺条件下miRNA靶标的转录组全鉴定

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miRNAs are endogenous non-coding small RNAs with important regulatory roles in stress responses. Nitrogen (N) is an indispensable macronutrient required for plant growth and development. Previous studies have identified a variety of known and novel miRNAs responsive to low N stress in plants, including Populus. However, miRNAs involved in the cleavage of target genes and the corresponding regulatory networks in response to N stress in Populus remain largely unknown. Consequently, degradome sequencing was employed for global detection and validation of N-responsive miRNAs and their targets. A total of 60 unique miRNAs (39 conserved, 13 non-conserved, and eight novel) were experimentally identified to target 64 mRNA transcripts and 21 precursors. Among them, we further verified the cleavage of 11 N-responsive miRNAs identified previously and provided empirical evidence for the cleavage mode of these miRNAs on their target mRNAs. Furthermore, five miRNA stars (miRNA*s) were shown to have cleavage function. The specificity and diversity of cleavage sites on the targets and miRNA precursors in P. tomentosa were further detected. Identification and annotation of miRNA-mediated cleavage of target genes in Populus can increase our understanding of miRNA-mediated molecular mechanisms of woody plants adapted to low N environments.
机译:miRNA是内源性非编码小RNA,在应激反应中具有重要的调控作用。氮(N)是植物生长和发育所必需的大量营养素。先前的研究已经确定了多种已知和新颖的miRNA,它们对植物(包括胡杨)中的低N胁迫有反应。然而,参与靶基因裂解的miRNA和相应的调节网络响应于胡杨中的N胁迫仍然是未知的。因此,降解组测序被用于全局检测和验证N反应性miRNA及其靶标。实验上鉴定出总共60个独特的miRNA(39个保守,13个非保守和8个新颖)靶向64个mRNA转录本和21个前体。其中,我们进一步验证了先前鉴定的11种N反应性miRNA的切割,并为这些miRNA在其靶mRNA上的切割模式提供了经验证据。此外,显示了五个miRNA星(miRNA * s)具有切割功能。进一步检测了靶点上的切割位点的特异性和多样性以及毛绒球菌的miRNA前体。鉴定和注释miRNA介导的胡杨中靶基因的切割可以增加我们对miRNA介导的适应低氮环境的木本植物分子机制的了解。

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