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Genome-wide identification and functional analysis of lincRNAs acting as miRNA targets or decoys in maize

机译:玉米中充当miRNA靶标或诱饵的lincRNA的全基因组鉴定和功能分析

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Long intergenic noncoding RNAs (lincRNAs) are endogenous non-coding RNAs (ncRNAs) that are transcribed from ‘intergenic’ regions of the genome and may play critical roles in regulating gene expression through multiple RNA-mediated mechanisms. MicroRNAs (miRNAs) are single-stranded small ncRNAs of approximately 21–24 nucleotide (nt) that are involved in transcriptional and post-transcriptional gene regulation. While miRNAs functioning as mRNA repressors have been studied in detail, the influence of miRNAs on lincRNAs has seldom been investigated in plants. LincRNAs as miRNA targets or decoys were predicted via GSTAr.pl script with a set of rules, and lincRNAs as miRNA targets were validated by degradome data. Conservation analysis of lincRNAs as miRNA targets or decoys were conducted using BLASTN and MAFFT. The function of lincRNAs as miRNA targets were predicted via a lincRNA-mRNA co-expression network, and the function of lincRNAs as miRNA decoys were predicted according to the competing endogenous RNA (ceRNA) hypothesis. In this work, we developed a computational method and systematically predicted 466 lincRNAs as 165 miRNA targets and 86 lincRNAs as 58 miRNA decoys in maize (Zea mays L.). Furthermore, 34 lincRNAs predicted as 33 miRNA targets were validated based on degradome data. We found that lincRNAs acting as miRNA targets or decoys are a common phenomenon, which indicates that the regulated networks of miRNAs also involve lincRNAs. To elucidate the function of lincRNAs, we reconstructed a miRNA-regulated network involving 78 miRNAs, 117 lincRNAs and 8834 mRNAs. Based on the lincRNA-mRNA co-expression network and the competing endogenous RNA hypothesis, we predicted that 34 lincRNAs that function as miRNA targets and 86 lincRNAs that function as miRNA decoys participate in cellular and metabolic processes, and play role in catalytic activity and molecular binding functions. This work provides a comprehensive view of miRNA-regulated networks and indicates that lincRNAs can participate in a layer of regulatory interactions as miRNA targets or decoys in plants, which will enable in-depth functional analysis of lincRNAs.
机译:长的基因间非编码RNA(lincRNA)是内源性非编码RNA(ncRNA),它们是从基因组的“基因间”区域转录而来的,并可能通过多种RNA介导的机制在调节基因表达中发挥关键作用。 MicroRNA(miRNA)是大约21–24个核苷酸(nt)的单链小ncRNA,参与转录和转录后基因调控。虽然已经详细研究了充当RNA阻遏物的miRNA,但很少在植物中研究miRNA对lincRNA的影响。通过GSTAr.pl脚本使用一组规则预测了作为miRNA靶标或诱饵的LincRNA,并且通过降解基因组数据验证了作为miRNA靶标的lincRNA。使用BLASTN和MAFFT对lincRNA作为miRNA靶标或诱饵进行保守性分析。通过lincRNA-mRNA共表达网络预测了lincRNA作为miRNA靶的功能,并根据竞争内源RNA(ceRNA)假设预测了lincRNA作为miRNA诱饵的功能。在这项工作中,我们开发了一种计算方法,系统地预测了466个lincRNAs作为165个miRNA靶标,86个lincRNAs作为58个miRNA诱饵在玉米中(Zea mays L.)。此外,基于降解组数据验证了预测为33个miRNA靶标的34个lincRNA。我们发现,充当miRNA靶标或诱饵的lincRNA是常见现象,这表明miRNA的调控网络也涉及lincRNA。为了阐明lincRNA的功能,我们重建了一个包含78个miRNA,117个lincRNA和8834 mRNA的miRNA调控网络。基于lincRNA-mRNA共表达网络和竞争性内源性RNA假设,我们预测34个充当miRNA靶标的lincRNA和86个充当miRNA诱饵的lincRNA参与细胞和代谢过程,并在催化活性和分子过程中发挥作用绑定功能。这项工作提供了对miRNA调控网络的全面了解,并表明lincRNA可以作为植物中的miRNA目标或诱饵来参与一层调控相互作用,这将使lincRNA能够进行深入的功能分析。

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