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首页> 外文期刊>Plant and cell physiology >Coupling deep transcriptome analysis with untargeted metabolic profiling in Ophiorrhiza pumila to further the understanding of the biosynthesis of the anti-cancer alkaloid camptothecin and anthraquinones. (Special Focus Issue: Phytochemical genomics.)
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Coupling deep transcriptome analysis with untargeted metabolic profiling in Ophiorrhiza pumila to further the understanding of the biosynthesis of the anti-cancer alkaloid camptothecin and anthraquinones. (Special Focus Issue: Phytochemical genomics.)

机译:将深转录组分析与非目标代谢轮廓分析结合在一起,以进一步了解抗癌生物碱喜树碱和蒽醌的生物合成。 (特别关注的话题:植物化学基因组学。)

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摘要

The Rubiaceae species, Ophiorrhiza pumila, accumulates camptothecin, an anti-cancer alkaloid with a potent DNA topoisomerase I inhibitory activity, as well as anthraquinones that are derived from the combination of the isochorismate and hemiterpenoid pathways. The biosynthesis of these secondary products is active in O. pumila hairy roots yet very low in cell suspension culture. Deep transcriptome analysis was conducted in O. pumila hairy roots and cell suspension cultures using the Illumina platform, yielding a total of 2 Gb of sequence for each sample. We generated a hybrid transcriptome assembly of O. pumila using the Illumina-derived short read sequences and conventional Sanger-derived expressed sequence tag clones derived from a full-length cDNA library constructed using RNA from hairy roots. Among 35,608 non-redundant unigenes, 3,649 were preferentially expressed in hairy roots compared with cell suspension culture. Candidate genes involved in the biosynthetic pathway for the monoterpenoid indole alkaloid camptothecin were identified; specifically, genes involved in post-strictosamide biosynthetic events and genes involved in the biosynthesis of anthraquinones and chlorogenic acid. Untargeted metabolomic analysis by Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR-MS) indicated that most of the proposed intermediates in the camptothecin biosynthetic pathway accumulated in hairy roots in a preferential manner compared with cell suspension culture. In addition, a number of anthraquinones and chlorogenic acid preferentially accumulated in hairy roots compared with cell suspension culture. These results suggest that deep transcriptome and metabolome data sets can facilitate the identification of genes and intermediates involved in the biosynthesis of secondary products including camptothecin in O. pumila.
机译:茜草科的Ophiorrhiza pumila会积聚喜树碱(一种具有强大的DNA拓扑异构酶I抑制活性的抗癌生物碱),以及蒽醌类化合物,这些化合物是由等渗硫酸盐和半萜类途径共同产生的。这些次生产物的生物合成在短小O. pumila毛状根中具有活性,但在细胞悬浮培养中却非常低。使用Illumina平台在O. pumila毛状根和细胞悬浮培养物中进行了深度转录组分析,每个样品的序列总数为2 Gb。我们使用Illumina衍生的短读序列和常规Sanger衍生的表达序列标签克隆生成了O. pumila的杂种转录组装配,该克隆衍生自使用从毛状根提取的RNA构建的全长cDNA文库。在35608个非冗余单基因中,与细胞悬浮培养相比,在毛状根中优先表达3649个。鉴定了涉及单萜类吲哚生物碱喜树碱生物合成途径的候选基因;具体来说,涉及后酰胺酶生物合成事件的基因以及蒽醌和绿原酸的生物合成基因。通过傅立叶变换离子回旋共振质谱(FT-ICR-MS)进行的非目标代谢组学分析表明,与细胞悬浮培养相比,喜树碱生物合成途径中的大多数拟议中间体均以优先方式积累在毛状根中。另外,与细胞悬浮培养相比,许多蒽醌和绿原酸优先在毛状根中积累。这些结果表明,深转录组和代谢组数据集可以促进鉴定参与O. pumila中喜树碱等次生产物生物合成的基因和中间体。

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