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从头组装和分析艾蒿转录组并鉴定参与萜类生物合成的基因。

De novo assembly and analysis of the Artemisia argyi transcriptome and identification of genes involved in terpenoid biosynthesis.

机构信息

Graduate School, Anhui University of Chinese Medicine, Hefei, 230038, China.

Department of Physiology, School of Basic Medical Sciences, Anhui Medical University, Hefei, 230032, China.

出版信息

Sci Rep. 2018 Apr 11;8(1):5824. doi: 10.1038/s41598-018-24201-9.

Abstract

Artemisia argyi Lev. et Vant. (A. argyi) is widely utilized for moxibustion in Chinese medicine, and the mechanism underlying terpenoid biosynthesis in its leaves is suggested to play an important role in its medicinal use. However, the A. argyi transcriptome has not been sequenced. Herein, we performed RNA sequencing for A. argyi leaf, root and stem tissues to identify as many as possible of the transcribed genes. In total, 99,807 unigenes were assembled by analysing the expression profiles generated from the three tissue types, and 67,446 of those unigenes were annotated in public databases. We further performed differential gene expression analysis to compare leaf tissue with the other two tissue types and identified numerous genes that were specifically expressed or up-regulated in leaf tissue. Specifically, we identified multiple genes encoding significant enzymes or transcription factors related to terpenoid synthesis. This study serves as a valuable resource for transcriptome information, as many transcribed genes related to terpenoid biosynthesis were identified in the A. argyi transcriptome, providing a functional genomic basis for additional studies on molecular mechanisms underlying the medicinal use of A. argyi.

摘要

艾蒿(Artemisia argyi Lev. et Vant.)在中医中被广泛用于艾灸,其叶片中萜类化合物生物合成的机制被认为在其药用中起着重要作用。然而,艾蒿的转录组尚未测序。在此,我们对艾蒿叶、根和茎组织进行了 RNA 测序,以尽可能多地鉴定转录基因。总共,通过分析来自三种组织类型的表达谱,组装了 99,807 个 unigenes,其中 67,446 个 unigenes在公共数据库中进行了注释。我们进一步进行了差异基因表达分析,以比较叶片组织与其他两种组织类型,并鉴定了许多在叶片组织中特异性表达或上调的基因。具体而言,我们鉴定了多个编码与萜类合成相关的重要酶或转录因子的基因。本研究为转录组信息提供了有价值的资源,因为在艾蒿转录组中鉴定了许多与萜类生物合成相关的转录基因,为进一步研究艾蒿药用的分子机制提供了功能基因组基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/431e/5895812/25711a01e35d/41598_2018_24201_Fig1_HTML.jpg

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