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首页> 外文期刊>International Journal of Genomics >Transcriptome Sequencing of Gynostemma pentaphyllum to Identify Genes and Enzymes Involved in Triterpenoid Biosynthesis
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Transcriptome Sequencing of Gynostemma pentaphyllum to Identify Genes and Enzymes Involved in Triterpenoid Biosynthesis

机译:绞股蓝的转录组测序,以鉴定涉及三萜类生物合成的基因和酶

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摘要

G. pentaphyllum (Gynostemma pentaphyllum), a creeping herbaceous perennial with many important medicinal properties, is widely distributed in Asia. Gypenosides (triterpenoid saponins), the main effective components of G. pentaphyllum, are well studied. FPS (farnesyl pyrophosphate synthase), SS (squalene synthase), and SE (squalene epoxidase) are the main enzymes involved in the synthesis of triterpenoid saponins. Considering the important medicinal functions of G. pentaphyllum, it is necessary to investigate the transcriptomic information of G. pentaphyllum to facilitate future studies of transcriptional regulation. After sequencing G. pentaphyllum, we obtained 50,654,708 unigenes. Next, we used RPKM (reads per kilobases per million reads) to calculate expression of the unigenes and we performed comparison of our data to that contained in five common databases to annotate different aspects of the unigenes. Finally, we noticed that FPS, SS, and SE showed differential expression of enzymes in DESeq. Leaves showed the highest expression of FPS, SS, and SE relative to the other two tissues. Our research provides transcriptomic information of G. pentaphyllum in its natural environment and we found consistency in unigene expression, enzymes expression (FPS, SS, and SE), and the distribution of gypenosides content in G. pentaphyllum. Our results will enable future related studies of G. pentaphyllum.
机译:五子松(Gynostemma pentaphyllum)是多年生的多年生草本植物,具有许多重要的药用特性,在亚洲分布广泛。绞股蓝总皂甙的主要有效成分绞股蓝皂甙(三萜皂甙)已得到充分研究。 FPS(法呢基焦磷酸合酶),SS(角鲨烯合酶)和SE(角鲨烯环氧化酶)是涉及三萜皂苷合成的主要酶。考虑到五芒菇的重要药用功能,有必要研究五芒菇的转录组信息,以促进将来对转录调控的研究。在对G.pentaphyllum进行测序后,我们获得了50,654,708个单基因。接下来,我们使用RPKM(每千碱基每百万个碱基的读取数)来计算单基因的表达,并且我们将数据与五个常见数据库中包含的数据进行了比较,以注释单基因的不同方面。最后,我们注意到FPS,SS和SE在DESeq中显示了酶的差异表达。相对于其他两个组织,叶片显示出FPS,SS和SE的最高表达。我们的研究提供了五叶G.pentalum在其自然环境中的转录组信息,我们发现单基因表达,酶表达(FPS,SS和SE)以及绞股蓝中绞股蓝皂苷含量的分布具有一致性。我们的研究结果将有助于将来对G.pentaphyllum的相关研究。

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