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Genome wide transcriptome profiling reveals differential gene expression in secondary metabolite pathway of Cymbopogon winterianus

机译:全基因组转录组谱分析揭示了冬凌草次生代谢途径中的差异基因表达

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Advances in transcriptome sequencing provide fast, cost-effective and reliable approach to generate large expression datasets especially suitable for non-model species to identify putative genes, key pathway and regulatory mechanism. Citronella (Cymbopogon winterianus) is an aromatic medicinal grass used for anti-tumoral, antibacterial, anti-fungal, antiviral, detoxifying and natural insect repellent properties. Despite of having number of utilities, the genes involved in terpenes biosynthetic pathway is not yet clearly elucidated. The present study is a pioneering attempt to generate an exhaustive molecular information of secondary metabolite pathway and to increase genomic resources in Citronella. Using high-throughput RNA-Seq technology, root and leaf transcriptome was analysed at an unprecedented depth (11.7 Gb). Targeted searches identified majority of the genes associated with metabolic pathway and other natural product pathway viz. antibiotics synthesis along with many novel genes. Terpenoid biosynthesis genes comparative expression results were validated for 15 unigenes by RT-PCR and qRT-PCR. Thus the coverage of these transcriptome is comprehensive enough to discover all known genes of major metabolic pathways. This transcriptome dataset can serve as important public information for gene expression, genomics and function genomics studies in Citronella and shall act as a benchmark for future improvement of the crop.
机译:转录组测序技术的进步提供了一种快速,经济高效且可靠的方法来生成大型表达数据集,尤其适用于非模型物种来鉴定推定的基因,关键途径和调控机制。香茅(Cymbopogon winterianus)是一种芳香性药用草,具有抗肿瘤,抗菌,抗真菌,抗病毒,解毒和天然驱虫性能。尽管具有许多用途,但尚未清楚阐明萜类生物合成途径中涉及的基因。本研究是产生次级代谢途径的详尽分子信息并增加香茅属中基因组资源的开创性尝试。使用高通量RNA-Seq技术,可以以前所未有的深度(11.7 Gb)分析根和叶转录组。有针对性的搜索确定了与代谢途径和其他天然产物途径相关的大多数基因。抗生素合成以及许多新基因。通过RT-PCR和qRT-PCR验证了15种单基因的萜类生物合成基因的比较表达结果。因此,这些转录组的覆盖范围足够全面,可以发现主要代谢途径的所有已知基因。该转录组数据集可以作为香茅属中基因表达,基因组学和功能基因组学研究的重要公共信息,并可以作为未来作物改良的基准。

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