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Transcriptome analysis based on next-generation sequencing of non-model plants producing specialized metabolites of biotechnological interest

机译:基于下一代测序的转录组分析,所述非测序植物产生具有生物技术意义的专门代谢产物的非模型植物

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摘要

Plants produce a vast array of specialized metabolites, many of which are used as pharmaceuticals, flavors, fragrances, and other high-value fine chemicals. However, most of these compounds occur in non-model plants for which genomic sequence information is not yet available. The production of a large amount of nucleotide sequence data using next-generation technologies is now relatively fast and cost-effective, especially when using the latest Roche-454 and Illumina sequencers with enhanced base-calling accuracy. To investigate specialized metabolite biosynthesis in non-model plants we have established a data-mining framework, employing next-generation sequencing and computational algorithms, to construct and analyze the transcriptomes of 75 non-model plants that produce compounds of interest for biotechnological applications. After sequence assembly an extensive annotation approach was applied to assign functional information to over 800,000 putative transcripts. The annotation is based on direct searches against public databases, including RefSeq and InterPro. Gene Ontology (GO), Enzyme Commission (EC) annotations and associated Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway maps are also collected. As a proof-of-concept, the selection of biosynthetic gene candidates associated with six specialized metabolic pathways is described. A web-based BLAST server has been established to allow public access to assembled transcriptome databases for all 75 plant species of the PhytoMetaSyn Project (www.phytometasyn.ca).
机译:植物产生大量专门的代谢产物,其中许多代谢产物被用作药物,调味剂,香料和其他高价值的精细化学品。但是,这些化合物中的大多数都发生在尚未获得基因组序列信息的非模型植物中。现在,使用下一代技术生成大量核苷酸序列数据相对较快且具有成本效益,尤其是在使用具有增强碱基检出准确性的最新Roche-454和Illumina测序仪时。为了研究非模式植物的专门代谢物生物合成,我们建立了一个数据挖掘框架,采用下一代测序和计算算法,以构建和分析75种非模式植物的转录组,这些植物产生了感兴趣的生物技术应用化合物。序列组装后,采用了广泛的注释方法,将功能信息分配给超过80万个推定的笔录。注释基于对公共数据库(包括RefSeq和InterPro)的直接搜索。还收集了基因本体论(GO),酶委员会(EC)注释和相关的《京都议定书基因与基因组百科全书》(KEGG)路径图。作为概念验证,描述了与六个专门代谢途径相关的生物合成基因候选物的选择。已经建立了一个基于网络的BLAST服务器,以允许公众访问PhytoMetaSyn项目(www.phytometasyn.ca)的所有75种植物的组装转录组数据库。

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