首页> 外文期刊>BMC Genomics >Integrated mRNA and small RNA sequencing reveals microRNA regulatory network associated with internode elongation in sugarcane (Saccharum officinarum L.)
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Integrated mRNA and small RNA sequencing reveals microRNA regulatory network associated with internode elongation in sugarcane (Saccharum officinarum L.)

机译:集成mRNA和小型RNA测序揭示了与甘蔗(Saccharum OfficinArum L.)中与节间伸长相关的MicroRNA调节网络

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BACKGROUND:Internode elongation is one of the most important traits in sugarcane because of its relation to crop productivity. Understanding the microRNA (miRNA) and mRNA expression profiles related to sugarcane internode elongation would help develop molecular improvement strategies but they are not yet well-investigated. To identify genes and miRNAs involved in internode elongation, the cDNA and small RNA libraries from the pre-elongation stage (EI), early elongation stage (EII) and rapid elongation stage (EIII) were sequenced and their expression were studied.RESULTS:Based on the sequencing results, 499,495,518 reads and 80,745 unigenes were identified from stem internodes of sugarcane. The comparisons of EI vs. EII, EI vs. EIII, and EII vs. EIII identified 493, 5035 and 3041 differentially expressed genes, respectively. Further analysis revealed that the differentially expressed genes were enriched in the GO terms oxidoreductase activity and tetrapyrrole binding. KEGG pathway annotation showed significant enrichment in "zeatin biosynthesis", "nitrogen metabolism" and "plant hormone signal transduction", which might be participating in internode elongation. miRNA identification showed 241 known miRNAs and 245 novel candidate miRNAs. By pairwise comparison, 11, 42 and 26 differentially expressed miRNAs were identified from EI and EII, EI and EIII, and EII and EIII comparisons, respectively. The target prediction revealed that the genes involved in "zeatin biosynthesis", "nitrogen metabolism" and "plant hormone signal transduction" pathways are targets of the miRNAs. We found that the known miRNAs miR2592-y, miR1520-x, miR390-x, miR5658-x, miR6169-x and miR8154-x were likely regulators of genes with internode elongation in sugarcane.CONCLUSIONS:The results of this study provided a global view of mRNA and miRNA regulation during sugarcane internode elongation. A genetic network of miRNA-mRNA was identified with miRNA-mediated gene expression as a mechanism in sugarcane internode elongation. Such evidence will be valuable for further investigations of the molecular regulatory mechanisms underpinning sugarcane growth and development.
机译:背景:间伸长率是甘蔗中最重要的性状之一,因为它与作物生产率的关系。理解与甘蔗节间伸长率相关的microRNA(miRNA)和mRNA表达谱将有助于发展分子改善策略,但尚未康复。为了鉴定参与节间伸长的基因和miRNA,测序来自预延长阶段(EI),早期伸长阶段(EII)和快速伸长阶段(EIII)的cDNA和小RNA文库,并研究了它们的表达。结果:基于在测序结果上,从甘蔗干细节鉴定出499,495,518次读数和80,745个unigenes。 EI与EII,EI对eIII和EII与EIII的比较分别确定了493,5035和3041型差异表达基因。进一步的分析表明,富含差异表达的基因在氧化还原酶活性和四吡咯结合中富集。 Kegg途径注释在“Zeat​​in Biosynthesis”,“氮代谢”和“植物激素信号转导”中显示出显着的富集,这可能参与了节间伸长率。 miRNA鉴定显示241个已知的miRNA和245个新的候选MiRNA。通过成对比较,分别从EI和EII,EII,EIII,EII和EIII和EIII比较鉴定了11,42和26差异表达的miRNA。目标预测显示,参与“Zeat​​in生物合成”,“氮代谢”和“植物激素信号转导”途径的基因是miRNA的靶标。我们发现已知的miRNA miR2592-y,miR1520-x,mir390-x,mir5658-x,mir6169-x和mir8154-x可能是甘蔗节间伸长的基因的调节因子。结论:本研究的结果提供了全球性mRNA和miRNA调节在甘蔗节间伸长期间的视图。用miRNA介导的基因表达鉴定miRNA-mRNA的遗传网络,作为甘蔗节水伸长的机制。这些证据对于进一步调查甘蔗生长和发育的分子调节机制进一步调查是有价值的。

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