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De Novo transcriptome characterization of Dracaena cambodiana and analysis of genes involved in flavonoid accumulation during formation of dragon’s blood

机译:龙血竹的De Novo转录组表征及龙血形成过程中类黄酮积累相关基因的分析

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摘要

Dragon’s blood is a red resin mainly extracted from Dracaena plants, and has been widely used as a traditional medicine in East and Southeast Asia. The major components of dragon’s blood are flavonoids. Owing to a lack of Dracaena plants genomic information, the flavonoids biosynthesis and regulation in Dracaena plants remain unknown. In this study, three cDNA libraries were constructed from the stems of D. cambodiana after injecting the inducer. Approximately 266.57 million raw sequencing reads were de novo assembled into 198,204 unigenes, of which 34,873 unique sequences were annotated in public protein databases. Many candidate genes involved in flavonoid accumulation were identified. Differential expression analysis identified 20 genes involved in flavonoid biosynthesis, 27 unigenes involved in flavonoid modification and 68 genes involved in flavonoid transport that were up-regulated in the stems of D. cambodiana after injecting the inducer, consistent with the accumulation of flavonoids. Furthermore, we have revealed the differential expression of transcripts encoding for transcription factors (MYB, bHLH and WD40) involved in flavonoid metabolism. These de novo transcriptome data sets provide insights on pathways and molecular regulation of flavonoid biosynthesis and transport, and improve our understanding of molecular mechanisms of dragon’s blood formation in D. cambodiana.
机译:龙血是一种主要从龙血树属植物中提取的红色树脂,在东亚和东南亚已广泛用作传统药物。龙血的主要成分是类黄酮。由于缺乏龙血树属植物的基因组信息,因此龙血树属植物中的类黄酮生物合成和调控仍然未知。在这项研究中,在注射诱导剂后,从D. cambodiana的茎中构建了三个cDNA文库。从头开始将大约2.657亿个原始测序读数组装成198,204个单基因,其中34,873个独特序列在公共蛋白质数据库中标注。鉴定了许多参与类黄酮积累的候选基因。差异表达分析鉴定了20种参与类黄酮生物合成的基因,27种参与类黄酮修饰的单基因和68种参与类黄酮转运的基因,这些基因在注入诱导剂后在柬埔寨竹子的茎中被上调,与类黄酮的积累一致。此外,我们揭示了编码参与类黄酮代谢的转录因子(MYB,bHLH和WD40)的转录物的差异表达。这些从头转录组数据集提供了关于类黄酮生物合成和运输的途径和分子调控的见解,并增进了我们对柬埔寨假丝酵母龙血形成的分子机制的了解。

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