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Transcriptome Analysis of Thapsia laciniata Rouy Provides Insights into Terpenoid Biosynthesis and Diversity in Apiaceae

机译:Thapsia laciniata Rouy的转录组分析为洞into科类萜生物合成和多样性提供了见识

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摘要

Thapsia laciniata Rouy (Apiaceae) produces irregular and regular sesquiterpenoids with thapsane and guaiene carbon skeletons, as found in other Apiaceae species. A transcriptomic analysis utilizing Illumina next-generation sequencing enabled the identification of novel genes involved in the biosynthesis of terpenoids in Thapsia. From 66.78 million HQ paired-end reads obtained from T. laciniata roots, 64.58 million were assembled into 76,565 contigs (N50: 1261 bp). Seventeen contigs were annotated as terpene synthases and five of these were predicted to be sesquiterpene synthases. Of the 67 contigs annotated as cytochromes P450, 18 of these are part of the CYP71 clade that primarily performs hydroxylations of specialized metabolites. Three contigs annotated as aldehyde dehydrogenases grouped phylogenetically with the characterized ALDH1 from Artemisia annua and three contigs annotated as alcohol dehydrogenases grouped with the recently described ADH1 from A. annua. ALDH1 and ADH1 were characterized as part of the artemisinin biosynthesis. We have produced a comprehensive EST dataset for T. laciniata roots, which contains a large sample of the T. laciniata transcriptome. These transcriptome data provide the foundation for future research into the molecular basis for terpenoid biosynthesis in Thapsia and on the evolution of terpenoids in Apiaceae.
机译:Thapsia laciniata Rouy(Apiaceae)会产生不规则和规则的倍半萜类化合物,其具有thapsane和guaiene碳骨架,这是在其他Apiaceae物种中发现的。利用Illumina下一代测序技术进行的转录组分析可鉴定与Thapsia中萜类生物合成有关的新基因。从来自T.laciniata根的6678万个HQ配对末端读数中,有6,458万个被组装成76,565个重叠群(N50:1261 bp)。十七个重叠群被标注为萜烯合酶,其中五个被预测为倍半萜烯合酶。在注释为细胞色素P450的67个重叠群中,其中18个是CYP71进化枝的一部分,主要进行专门代谢物的羟基化作用。三种被称为醛脱氢酶的毗连群在系统发育上与来自青蒿的特征性ALDH1一起分组,而三个被称为醇脱氢酶的毗连群与最近来自A. annua的ADH1一起被分组。 ALDH1和ADH1被表征为青蒿素生物合成的一部分。我们已经为T. laciniata根生成了一个全面的EST数据库,其中包含一个大的T. laciniata转录组样本。这些转录组数据为进一步研究Thapsia中萜类生物合成的分子基础以及A科中萜类的进化提供了基础。

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