首页> 外文期刊>Journal of biosciences >Transcriptome analysis of stem wood of Nothapodytes nimmoniana (Graham) Mabb. identifies genes associated with biosynthesis of camptothecin, an anti-carcinogenic molecule
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Transcriptome analysis of stem wood of Nothapodytes nimmoniana (Graham) Mabb. identifies genes associated with biosynthesis of camptothecin, an anti-carcinogenic molecule

机译:Nothapodytes nimmoniana(Graham)Mabb的茎木转录组分析。鉴定与喜树碱生物合成有关的基因,喜树碱是一种抗癌分子

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Camptothecin (CPT), a monoterpene indole alkaloid, is a potent inhibitor of DNA topoisomerase I and has applications in treating ovarian, small lung and refractory ovarian cancers. Stem wood tissue of Nothapodytes nimmoniana (Graham) Mabb. (family Icacinaceae) is one of the richest sources of CPT. Since there is no genomic or transcriptome data available for the species, the present work sequenced and analysed transcriptome of stem wood tissue on an Illumina platform. From a total of 77,55,978 reads, 9,187 transcripts were assembled with an average length of 255 bp. Functional annotation and categorization of these assembled transcripts unraveled the transcriptome architecture and also a total of 13 genes associated with CPT biosynthetic pathway were identified in the stem woodtissue. Four genes of the pathway were cloned to full length by RACE to validate the transcriptome data. Expression analysis of 13 genes associated with CPT biosynthetic pathway in 11 different tissues vis-a-vis CPT content analysis suggested an important role of NnPG10H, NnPSLS and NnPSTR genes in the biosynthesis of CPT. These results indicated that CPT might be synthesized in the leaves and then perhaps exported to stem wood tissue for storage.
机译:喜树碱(CPT)是一种单萜吲哚生物碱,是一种有效的DNA拓扑异构酶I抑制剂,可用于治疗卵巢癌,小肺癌和难治性卵巢癌。 Nothapodytes nimmoniana(Graham)Mabb的茎木组织。 (家族的伊卡菌科)是CPT最丰富的来源之一。由于没有该物种的基因组或转录组数据,本工作在Illumina平台上对茎木组织的转录组进行了测序和分析。从总共77,55,978次读取中,组装了9,187个转录本,平均长度为255 bp。这些组装的转录本的功能注释和分类揭示了转录组的结构,并且在茎木本组织中总共鉴定出了与CPT生物合成途径相关的13个基因。通过RACE将途径的四个基因克隆至全长,以验证转录组数据。相对于CPT含量分析,在11个不同组织中与CPT生物合成途径相关的13个基因的表达分析表明,NnPG10H,NnPSLS和NnPSTR基因在CPT生物合成中具有重要作用。这些结果表明,CPT可能在叶片中合成,然后可能输出到茎木组织中进行储存。

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