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首页> 外文期刊>BMC Genomics >Integrated mRNA and miRNA transcriptome analysis reveals a regulatory network for tuber expansion in Chinese yam ( Dioscorea opposita )
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Integrated mRNA and miRNA transcriptome analysis reveals a regulatory network for tuber expansion in Chinese yam ( Dioscorea opposita )

机译:集成mRNA和miRNA转录组分析显示中国山药(Dioscorea Opposita)的块茎扩张的监管网络

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Yam tuber is a storage organ, derived from the modified stem. Tuber expansion is a complex process, and depends on the expressions of genes that can be influenced by environmental and endogenous factors. However, little is known about the regulatory mechanism of tuber expansion. In order to identify the genes and miRNAs involved in tuber expansion, we examined the mRNAs and small RNAs in Dioscorea opposita (Chinese yam) cv. Guihuai 16 tuber during its initiation and expansion stages. A total of 14,238 differentially expressed genes in yam tuber at its expansion stage were identified by using RNA sequencing technology. Among them, 5723 genes were up-regulated, and 8515 genes were down-regulated. Functional analysis revealed the coordination of tuber plant involved in processes of cell events, metabolism, biosynthesis, and signal transduction pathways at transcriptional level, suggesting that these differentially expressed genes are somehow involved in response to tuber expansion, including CDPK, CaM, CDL, SAUR, DELLA, SuSy, and expansin. In addition, 541 transcription factor genes showed differential expression during the expansion stage at transcriptional level. MADS, bHLH, and GRAS were involved in cell differentiation, division, and expansion, which may relate to tuber expansion. Noteworthy, data analysis revealed that 22 known tuber miRNAs belong to 10 miRNA families, and 50 novel miRNAs were identified. The integrated analysis of miRNA-mRNA showed that 4 known miRNAs and 11 genes formed 14 miRNA-target mRNA pairs were co-expressed in expansion stage. miRNA160, miRNA396, miRNA535 and miRNA5021 may be involved in complex network to regulate cell division and differentiation in yam during its expansion stage. The mRNA and miRNA datasets presented here identified a subset of candidate genes and miRNAs that are putatively associated with tuber expansion in yam, a hypothetical model of genetic regulatory network associated with tuber expansion in yam was put forward, which may provide a foundation for molecular regulatory mechanism researching on tuber expansion in Dioscorea species.
机译:山药是一种贮存器官,来自改性茎。块茎扩增是一种复杂的过程,并取决于可能受环境和内源性因素影响的基因的表达。然而,关于块茎膨胀的调节机制知之甚少。为了鉴定参与块茎扩增的基因和miRNA,我们检查了Dioscorea对立(中国亚药)CV中的MRNA和小RNA。桂淮16块茎在其启动和扩展阶段。通过使用RNA测序技术鉴定在其膨胀阶段的山药中总共14,238个差异表达基因。其中,上调5723个基因,下调8515个基因。功能分析表明,在转录水平下涉及细胞事件,代谢,生物合成和信号转导途径过程中涉及的块茎植物的协调,表​​明这些差异表达基因是以某种方式参与块茎扩张,包括CDPK,CAM,CDL,Saur ,della,susy和扩展素。此外,541转录因子基因在转录水平的膨胀阶段显示出差异表达。 Mads,Bhlh和Gras参与了细胞分化,分裂和扩张,可能与块块扩张有关。值得注意的是,数据分析显示,22个已知的块茎MIRNA属于10个miRNA家族,并确定了50个新的miRNA。 MiRNA-mRNA的综合分析表明,在膨胀阶段中,4种已知的MiRNA和11个基因形成14 miRNA靶MRNA对。 miRNA160,miRNA396,miRNA535和miRNA5021可参与复杂的网络,以在其扩展阶段调节纱线中的细胞分裂和分化。这里呈现的mRNA和miRNA数据集鉴定了候选基因和miRNA的子集,该候选基因与山药中的块茎膨胀有关,提出了与山药中块茎膨胀相关的遗传调节网络的假设模型,这可能为分子调节提供基础二十型物种块茎扩增的机制研究。

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