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首页> 外文期刊>Scientific reports. >Transcriptome Analysis Reveals Biosynthesis of Important Bioactive Constituents and Mechanism of Stem Formation of Dendrobium huoshanense
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Transcriptome Analysis Reveals Biosynthesis of Important Bioactive Constituents and Mechanism of Stem Formation of Dendrobium huoshanense

机译:转录组分析显示了生物合成的重要生物活性成分和石斛茎形成的机制

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The stem of Dendrobium huoshanense C.Z. Tang and S.J. Cheng was widely used as a medicinal herb in health care products due to its broad pharmacological activities. However, the molecular regulation mechanism of stem development and biosynthetic pathways of important bioactive substances are still unclear in D. huoshanense. In this study, the bioactive compounds in leaves, stems and roots, and the identification of candidate genes involved in stem formation and biosynthesis of active compounds via transcriptome sequence were analyzed. The accumulation of total polysaccharides and flavonoids were varied significantly in different tissues. A comparative transcriptomic analysis revealed several differentially expressed genes (DEGs) involved in polysaccharides biosynthesis (103 genes), including fructose and mannose related genes (29 genes) and glycosyltransferase genes (74 genes), and flavonoids biosynthesis (15 genes). Some candidate genes that participated in photoperiod regulation (27 genes), starch and sucrose metabolism (46 genes), and hormone-induced activation of signaling pathways (38 genes) may be involved in stem formation. In sum, this study provides a foundation for investigating the molecular processes in the biosynthesis of active compounds and stem development. The transcriptome data presented here provides an important resource for the future studies of the molecular genetics and functional genomics in D. huoshanense and optimized control of the active compounds produced by D. huoshanense.
机译:石斛茎的茎Huoshanense C.Z.唐和s.j.由于其广泛的药理学活动,成被广泛用作医疗保健产品的药草。然而,在HuoShanense的重要生物活性物质的茎发育和生物合成途径的分子调控机制仍不清楚。在该研究中,分析了叶片,茎和根部的生物活性化合物,以及通过转录组序列的茎形成和活性化合物的生物合成中鉴定的候选基因的鉴定。在不同组织中,总多糖和黄酮类化合物的积累显着变化。比较转录组分析显示了多糖生物合成(103基因)的几种差异表达基因(DEGS),包括果糖和甘露糖相关基因(29基因)和糖基转移酶基因(74个基因)和黄酮类生物合成(15个基因)。参与光周期调节(27基因),淀粉和蔗糖代谢(46个基因)和激素诱导的信号通路(38基因)的候选基因可以参与茎形成。总之,本研究为研究活性化合物和干发炎的生物合成中的分子过程提供了基础。本文呈现的转录组数据为未来的分子遗传学和功能基因组学研究D. Huoshanense和D. Huoshanense产生的活性化合物的优化控制提供了重要资源。

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