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Identification and characterization of microRNAs in Eucheuma denticulatum by high-throughput sequencing and bioinformatics analysis

机译:通过高通量测序和生物信息学分析鉴定和鉴定Eucheuma denticulatum中的microRNA

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Eucheuma denticulatum, an economically and industrially important red alga, is a valuable marine resource. Although microRNAs (miRNAs) play an essential role in gene post-transcriptional regulation, no research has been conducted to identify and characterize miRNAs in E. denticulatum. In this study, we identified 134 miRNAs (133 conserved miRNAs and one novel miRNA) from 2,997,135 small-RNA reads by high-throughput sequencing combined with bioinformatics analysis. BLAST searching against miRBase uncovered 126 potential miRNA families. A conservation and diversity analysis of predicted miRNA families in different plant species was performed by comparative alignment and homology searching. A total of 4 and 13 randomly selected miRNAs were respectively validated by northern blotting and stem-loop reverse transcription PCR, thereby demonstrating the reliability of the miRNA sequencing data. Altogether, 871 potential target genes were predicted using psRobot and TargetFinder. Target genes classification and enrichment were conducted based on Gene Ontology analysis. The functions of target gene products and associated metabolic pathways were predicted by Kyoto Encyclopedia of Genes and Genomes pathway analysis. A Cytoscape network was constructed to explore the interrelationships of miRNAs, miRNA-target genes and target genes. A large number of miRNAs with diverse target genes will play important roles for further understanding some essential biological processes in E. denticulatum. The uncovered information can serve as an important reference for the protection and utilization of this unique red alga in the future.
机译:Eucheuma denticulatum是一种在经济上和工业上都很重要的红藻,是一种宝贵的海洋资源。尽管microRNA(miRNA)在基因转录后调控中起着至关重要的作用,但尚未进行鉴定和鉴定牙本质大肠杆菌中miRNA的研究。在这项研究中,我们通过高通量测序与生物信息学分析相结合,从2,997,135个小RNA读数中鉴定出134个miRNA(133个保守miRNA和一个新miRNA)。 BLAST搜索miRBase发现了126个潜在的miRNA家族。通过比较比对和同源性搜索,对不同植物物种中预测的miRNA家族进行了保守性和多样性分析。分别通过Northern印迹和茎环逆转录PCR验证了总共4和13个随机选择的miRNA,从而证明了miRNA测序数据的可靠性。使用psRobot和TargetFinder总共预测了871个潜在靶基因。基于基因本体分析对靶基因进行分类和富集。目标基因产物的功能和相关的代谢途径通过《京都基因百科全书》和《基因组途径分析》进行了预测。构建了Cytoscape网络,以探索miRNA,miRNA靶基因和靶基因之间的相互关系。具有多种靶基因的大量miRNA将在进一步了解牙本质大肠埃希菌中某些重要的生物学过程中发挥重要作用。所发现的信息可以为将来保护和利用这种独特的红藻提供重要参考。

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