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首页> 外文期刊>BMC Genomics >Genome-wide identification and characterization of long non-coding RNAs involved in the early somatic embryogenesis in Dimocarpus longan Lour
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Genome-wide identification and characterization of long non-coding RNAs involved in the early somatic embryogenesis in Dimocarpus longan Lour

机译:在Dimocarpus Longan Lour中涉及早期体细胞胚胎发生的长期非编码RNA的基因组鉴定与表征

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Long non-coding RNAs (lncRNAs) are involved in variable cleavage, transcriptional interference, regulation of DNA methylation and protein modification. However, the regulation of lncRNAs in plant somatic embryos remains unclear. The longan (Dimocarpus longan) somatic embryogenesis (SE) system is a good system for research on longan embryo development. In this study, 7643 lncRNAs obtained during early SE in D. longan were identified by high-throughput sequencing, among which 6005 lncRNAs were expressed. Of the expressed lncRNAs, 4790 were found in all samples and 160 were specifically expressed in embryogenic callus (EC), 154 in incomplete embryogenic compact structures (ICpECs), and 376 in globular embryos (GEs). We annotated the 6005 expressed lncRNAs, and 1404 lncRNAs belonged to 506 noncoding RNA (ncRNA) families and 4682 lncRNAs were predicted to target protein-coding genes. The target genes included 5051 cis-regulated target genes (5712 pairs) and 1605 trans-regulated target genes (3618 pairs). KEGG analysis revealed that most of the differentially expressed target genes (mRNAs) of the lncRNAs were enriched in the "plant-pathogen interaction" and "plant hormone signaling" pathways during early longan SE. Real-time quantitative PCR confirmed that 20 selected lncRNAs showed significant differences in expression and that five lncRNAs were related to auxin response factors. Compared with the FPKM expression trends, 16 lncRNA expression trends were the same in qPCR. In lncRNA-miRNA-mRNA relationship prediction, 40 lncRNAs were predicted to function as eTMs for 15 miRNAs and 7 lncRNAs were identified as potential miRNA precursors. In addition, we verified the lncRNA-miRNA-mRNA regulatory relationships by transient expression of miRNAs (miR172a, miR159a.1 and miR398a). Analyses of lncRNAs during early longan SE showed that differentially expressed lncRNAs were involved in expression regulation at each SE stage, and may form a regulatory network with miRNAs and mRNAs. These findings provide new insights into lncRNAs and lay a foundation for future functional analysis of lncRNAs during early longan SE.
机译:长期非编码RNA(LNCRNA)参与可变性切割,转录干扰,DNA甲基化调节和蛋白质改性。然而,植物体细胞胚胎中LNCRNA的调节仍不清楚。龙眼(Dimocarpus Longan)体细胞胚胎发生(SE)系统是龙眼胚胎发育研究的良好系统。在本研究中,通过高通量测序鉴定在D.Se的早期Se期间获得的7643克朗。表达了6005℃。在表达的LNCRNA中,在所有样品中发现4790个,并且在胚胎愈伤组织(EC),154中特异性地在不完全胚状致密结构(ICPEC)和376中特异性地在球状胚胎(GES)中。我们注释了6005所表达的LNCRNA,并且预测406个非数性RNA(NCRNA)家族和4682LNCRNA,对靶编码基因进行预测。靶基因包括5051个顺式调节靶基因(5712对)和1605个经调节的靶基因(3618对)。 Kegg分析表明,在龙眼服装期间,LNCRNA的大多数差异表达的靶基因(MRNA)富集在“植物 - 病原体相互作用”和“植物激素信号传导”途径中。实时定量PCR证实,20所选的LNCRNA显示出表达显着差异,并且五个LNCRNA与生长素响应因子有关。与FPKM表达趋势相比,QPCR中16个LNCRNA表达趋势相同。在LNCRNA-miRNA-mRNA关系预测中,预测40LNCRNA以鉴定为15 miRNA的ETM,7 LNCRNA被鉴定为潜在的miRNA前体。此外,我们通过miRNA的瞬时表达验证了LNCRNA-miRNA-mRNA调节关系(miR172a,mir159a.1和mir398a)。龙眼早期LNCRNA的分析显示,差异表达的LNCRNA在每个SE阶段参与表达调节,可以形成具有miRNA和MRNA的调节网络。这些调查结果为LNCRNA提供了新的见解,并为龙眼服装期间LNCRNA的未来功能分析奠定了基础。

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