首页> 美国卫生研究院文献>International Journal of Molecular Sciences >RNA-Seq de Novo Assembly and Differential Transcriptome Analysis of Chaga (Inonotus obliquus) Cultured with Different Betulin Sources and the Regulation of Genes Involved in Terpenoid Biosynthesis
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RNA-Seq de Novo Assembly and Differential Transcriptome Analysis of Chaga (Inonotus obliquus) Cultured with Different Betulin Sources and the Regulation of Genes Involved in Terpenoid Biosynthesis

机译:桦木(Inonotus obliquus)的RNA-Seq de Novo大会和差异转录组分析与不同的桦木素来源培养和萜类生物合成相关基因的调控。

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摘要

Chaga (Inonotus obliquus) is a medicinal fungus used in traditional medicine of Native American and North Eurasian cultures. Several studies have demonstrated the medicinal properties of chaga’s bioactive molecules. For example, several terpenoids (e.g., betulin, betulinic acid and inotodiol) isolated from I. obliquus cells have proven effectiveness in treating different types of tumor cells. However, the molecular mechanisms and regulation underlying the biosynthesis of chaga terpenoids remain unknown. In this study, we report on the optimization of growing conditions for cultured I. obliquus in presence of different betulin sources (e.g., betulin or white birch bark). It was found that better results were obtained for a liquid culture pH 6.2 at 28 °C. In addition, a de novo assembly and characterization of I. obliquus transcriptome in these growth conditions using Illumina technology was performed. A total of 219,288,500 clean reads were generated, allowing for the identification of 20,072 transcripts of I. obliquus including transcripts involved in terpenoid biosynthesis. The differential expression of these genes was confirmed by quantitative-PCR. This study provides new insights on the molecular mechanisms and regulation of I. obliquus terpenoid production. It also contributes useful molecular resources for gene prediction or the development of biotechnologies for the alternative production of terpenoids.
机译:Chaga(Inonotus obliquus)是一种药用真菌,用于美洲原住民和北欧亚文化的传统药物中。几项研究证明了查加生物活性分子的药用特性。例如,从斜纹肌细胞分离出的几种萜类化合物(例如,桦木素,桦木酸和肌醇)已被证明可有效治疗不同类型的肿瘤细胞。然而,查加类萜生物合成的分子机制和调控仍然未知。在这项研究中,我们报告了在存在不同桦木素来源(例如桦木素或白桦树皮)的情况下培养斜纹伊豆的最佳生长条件。发现在28℃下pH 6.2的液体培养物获得了更好的结果。另外,使用Illumina技术在这些生长条件下从头开始组装和鉴定了斜生肠杆菌转录组。总共产生了219,288,500次纯净读数,从而鉴定了20,072个斜纹鸢尾菌的转录本,包括涉及萜类生物合成的转录本。这些基因的差异表达通过定量PCR证实。这项研究提供了有关斜生萜类化合物生产的分子机制和调控的新见解。它还为有用的分子资源做出了贡献,可用于基因预测或生物技术的发展,以替代萜类化合物的生产。

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