Department of Agronomy and Plant Breeding, Faculty of Agricultural science, University of Guilan, Rasht, Iran.
Department of Plant Biotechnology, Faculty of Sciences & Biotechnology, Shahid Beheshti University G.C., Tehran, Iran.
Sci Rep. 2019 Nov 1;9(1):15826. doi: 10.1038/s41598-019-52090-z.
Triterpenic acids (TAs), a large group of natural compounds with diverse biological activity, are produced by several plant taxa. Betulinic, oleanolic, and ursolic acids are the most medicinally important TAs and are mainly found in plants of the mint family. Metabolic engineering is strongly dependent on identifying the key genes in biosynthetic pathways toward the products of interest. In this study, gene expression tracking was performed by transcriptome mining, co-expression network analysis, and tissue-specific metabolite-expression analysis in order to identify possible key genes involved in TAs biosynthetic pathways. To this end, taxa-specific degenerate primers of six important genes were designed using an effective method based on the MEME algorithm in a phylogenetically related group of sequences and successfully applied in three members of the Lamiaceae (Rosmarinus officinalis, Salvia officinalis, and Thymus persicus). Based on the results of in-depth data analysis, genes encoding squalene epoxidase and oxido squalene cyclases are proposed as targets for boosting triterpene production. The results emphasize the importance of identifying key genes in triterpene biosynthesis, which may facilitate genetic manipulation or overexpression of target genes.
三萜酸(TAs)是一类具有多种生物活性的天然化合物,由多种植物类群产生。白桦脂酸、齐墩果酸和熊果酸是最重要的药用 TAs,主要存在于薄荷科植物中。代谢工程强烈依赖于鉴定生物合成途径中对目标产物的关键基因。在这项研究中,通过转录组挖掘、共表达网络分析和组织特异性代谢物表达分析,进行基因表达跟踪,以鉴定可能参与 TAs 生物合成途径的关键基因。为此,使用基于 MEME 算法的有效方法,针对一个系统发育相关的序列组设计了六个重要基因的分类特异性简并引物,并成功应用于唇形科的三个成员(迷迭香、鼠尾草和香薄荷)中。基于深入数据分析的结果,提出了编码角鲨烯环氧化酶和氧化角鲨烯环化酶的基因作为提高三萜产量的目标。研究结果强调了鉴定三萜生物合成中关键基因的重要性,这可能有助于遗传操作或目标基因的过表达。