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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >De novo assembly and transcriptome of Pfaffia glomerata uncovers the role of photoautotrophy and the P450 family genes in 20-hydroxyecdysone production
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De novo assembly and transcriptome of Pfaffia glomerata uncovers the role of photoautotrophy and the P450 family genes in 20-hydroxyecdysone production

机译:De Novo组装和PFaffia Glomerata的转录组揭示了光学萎缩和P450家族基因在20-羟基迪克松生产中的作用

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Pfaffia glomerata is a medically important species because it produces the phytoecdysteroid 20-hydroxyecdysone (20-E). However, there has been no ready-to-use transcriptome data available in the literature for this plant. Here, we present de novo transcriptome sequencing of RNA from P. glomerata in order to investigate the 20-E production as well as to understand the biochemical pathway of secondary metabolites in this non-model species. We then analyze the effect of photoautotrophy on the production of 20-E genes phylogenetically identified followed by expression analysis. For this, total messenger RNA (mRNA) from leaves, stems, roots, and flowers was used to construct indexed mRNA libraries. Based on the similarity searches against plant non-redundant protein database, gene ontology, and eukaryotic orthologous groups, 164,439 transcripts were annotated. In addition, the effect of photoautotrophy in two genes putatively involved in the 20-E synthesis pathway was analyzed. The Phantom gene (CYP76C), a precursor of the route, showed increased expression in P. glomerata plants cultured under photoautotrophic conditions. This was accompanied by increased production of this metabolite indicating a putative involvement in 20-E synthesis. This work reveals that several genes in the P. glomerata transcriptome are related to secondary metabolism and stresses, that genes of the P450 family participate in the 20-E biosynthesis route, and that plants cultured under photoautotrophic conditions promote an upregulated Phantom gene and enhance the productivity of 20-E. The data will be used for future investigations of the 20-E synthesis pathway in P. glomerata while offering a better understanding of the metabolism of the species.
机译:PFaffia Glomerata是一种医学上重要的物种,因为它产生了植物植物20-羟基粥样酮(20-e)。但是,对于该植物的文献中没有可用的现成转录组数据。在这里,我们介绍了来自P.Glomerata的RNA的De Novo转录组测序,以研究20-E的生产,并了解该非模型物种中次生代谢物的生化途径。然后,我们分析了光学萎缩对系统发育鉴定的20-E基因的影响,然后进行了表达分析。为此,使用来自叶,茎,根和花的总信使RNA(mRNA)构建指数的mRNA文库。基于对植物非冗余蛋白质数据库,基因本体和真核原碱基组的相似性搜索,注释了164,439种转录物。此外,分析了在借助于20-E合成途径参与20-E合成途径的两个基因中的光学萎缩的影响。 Phantom基因(CYP76C)是该途径的前体,显示出在光学营养条件下培养的P.Glomerata植物中的表达增加。这伴随着增加这种代谢物的产生,表明推定的20-E合成。本作的工作表明,P.Glomerata转录组中的几个基因与次生代谢和应力有关,P450家族的基因参与了20-E生物合成途径,并且在光学营养条件下培养的植物促进了上调的幻像基因并增强了20-e的生产力。数据将用于未来对P.Glomerata的20-E合成途径的研究,同时更好地了解物种的新陈代谢。

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