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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >RNA-Seq-based transcriptome analysis of stem development and dwarfing regulation in Agapanthus praecox ssp orientalis (Leighton) Leighton
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RNA-Seq-based transcriptome analysis of stem development and dwarfing regulation in Agapanthus praecox ssp orientalis (Leighton) Leighton

机译:基于RNA-Seq的转录组分析茎叶A(Lagadon Laga)的茎发育和矮化调节

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摘要

Agapanthus praecox is a monocotyledonous ornamental bulb plant. Generally, the scape (inflorescence stem) length can develop more than 1 m, however application 400 mg.L-1 paclobutrazol can shorten the length beyond 70%. To get a deeper insight into its dwarfism mechanism, de novo RNA-Seq technology has been employed, for the first time, to describe the scape transcriptome of A. praecox. We got 71,258 assembled unigenes, and 45,597 unigenes obtained protein functional annotation. Take the above sequencing results as a reference gene set, using RNA-seq (quantification) technology analyzed gene expression profiles between the control and paclobutrazol-treated samples, and screened 2838 differentially expressed genes. GO, KEGG and MapMan pathway analyses indicated that these differentially expressed genes were significantly enriched in response to stimulus, hormonal signaling, carbohydrate metabolism, cell wall, cell size, and cell cycle related biological process. To validate the expression profiles obtained by RNA-Seq, real-time qPCR was performed on 24 genes selected from key significantly enriched pathways. Comprehensive analysis suggested that paclobutrazol blocks GA signal that can effectively inhibit scape elongation; the GA signal interact with other hormonal signals including auxin, ethylene, brassinosteroitl and cytokinins, and trigger downstream signaling cascades leading to metabolism, cell wall biosynthesis, cell division and the cycle decreased obviously, and finally induced dwarfism trait. Furthermore, AP2/EREBP, bHLH, C2H2, ARR, WRKY and ARF family's transcription factors were involved in the regulation of scape development in A. praecox. This transcriptome dataset will serve as an important public information platform to accelerate research on the gene expression and functional genomics of Agapanthus. (C) 2015 Elsevier B.V. All rights reserved.
机译:百子莲是单子叶装饰鳞茎植物。通常,花序(花序茎)长度可以长到1 m以上,但是施用400 mg.L-1多效唑可将其长度缩短到70%以上。为了更深入地了解其矮化机制,首次使用了从头RNA-Seq技术来描述A. praecox的scape转录组。我们获得了71,258个组装的单基因,而45,597个单基因获得了蛋白质功能注释。将上述测序结果作为参考基因集,使用RNA-seq(定量)技术分析了对照和多效唑处理的样品之间的基因表达谱,并筛选了2838个差异表达的基因。 GO,KEGG和MapMan途径分析表明,这些差异表达的基因在刺激,激素信号传导,碳水化合物代谢,细胞壁,细胞大小和细胞周期相关的生物学过程中显着富集。为了验证通过RNA-Seq获得的表达谱,对选自关键显着富集途径的24个基因进行了实时qPCR。综合分析表明,多效唑可阻滞GA信号,有效抑制花键伸长。 GA信号与其他激素信号相互作用,包括生长素,乙烯,油菜素和细胞分裂素,并触发下游信号级联反应,导致新陈代谢,细胞壁生物合成,细胞分裂和周期明显减少,最终导致侏儒症性状。此外,AP2 / EREBP,bHLH,C2H2,ARR,WRKY和ARF家族的转录因子也参与了拟南芥花发育的调控。该转录组数据集将充当重要的公共信息平台,以加快对百子莲的基因表达和功能基因组学的研究。 (C)2015 Elsevier B.V.保留所有权利。

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