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The Transcript Profile of a Traditional Chinese Medicine Atractylodes lancea Revealing Its Sesquiterpenoid Biosynthesis of the Major Active Components

机译:中药白术的转录本谱揭示其主要活性成分的倍半萜生物合成

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摘要

Atractylodes lancea (Thunb.) DC., named “Cangzhu” in China, which belongs to the Asteraceae family. In some countries of Southeast Asia (China, Thailand, Korea, Japan etc.) its rhizome, commonly called rhizoma atractylodis, is used to treat many diseases as it contains a variety of sesquiterpenoids and other components of medicinal importance. Despite its medicinal value, the information of the sesquiterpenoid biosynthesis is largely unknown. In this study, we investigated the transcriptome analysis of different tissues of non-model plant A. lancea by using short read sequencing technology (Illumina). We found 62,352 high quality unigenes with an average sequence length of 913 bp in the transcripts of A. Lancea. Among these, 43,049 (69.04%), 30,264 (48.53%), 26,233 (42.07%), 17,881 (28.67%) and 29,057(46.60%) unigenes showed significant similarity (E-value<1e-5) to known proteins in Nr, KEGG, SWISS-PROT, GO, and COG databases, respectively. Of the total 62,352 unigenes, 43,049 (Nr Database) open reading frames were predicted. On the basis of different bioinformatics tools we identify all the enzymes that take part in the terpenoid biosynthesis as well as five different known sesquiterpenoids via cytosolic mevalonic acid (MVA) pathway and plastidal methylerythritol phosphate (MEP) pathways. In our study, 6, 864 Simple Sequence Repeats (SSRs) were also found as great potential markers in A. lancea. This transcriptomic resource of A. lancea provides a great contribution in advancement of research for this specific medicinal plant and more specifically for the gene mining of different classes of terpenoids and other chemical compounds that have medicinal as well as economic importance.
机译:苍术的白术,在中国命名为“苍术”,属于菊科。在东南亚的一些国家(中国,泰国,韩国,日本等),其根茎通常被称为白术,由于它含有多种倍半萜类化合物和其他具有医学重要性的成分,因此被用于治疗多种疾病。尽管具有药用价值,但倍半萜生物合成的信息仍是未知的。在这项研究中,我们通过使用短读测序技术(Illumina)研究了非模型植物拟南芥不同组织的转录组分析。我们在A. Lancea的转录物中发现了62,352个高质量的单基因,平均序列长度为913 bp。其中43,049(69.04%),30,264(48.53%),26,233(42.07%),17,881(28.67%)和29,057(46.60%)unigene显示出显着相似性(E-value <1e -5 )分别到Nr,KEGG,SWISS-PROT,GO和COG数据库中的已知蛋白质。在总共62,352个单基因中,预测有43,049个(Nr数据库)开放阅读框。根据不同的生物信息学工具,我们通过胞质甲戊酸(MVA)途径和质体甲基赤藓糖醇磷酸(MEP)途径鉴定参与萜类生物合成的所有酶以及五种不同的已知倍半萜。在我们的研究中,还发现了6 864个简单序列重复序列(SSR),作为在拟南芥中的重要潜在标记。柳杉的这种转录组学资源为该特定药用植物的研究进展做出了巨大贡献,更具体地说,是对不同类别的萜类化合物和其他具有药用及经济重要性的化合物的基因挖掘。

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