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首页> 外文期刊>BMC Genomics >Transcriptional profiling of sweetpotato (Ipomoea batatas) roots indicates down-regulation of lignin biosynthesis and up-regulation of starch biosynthesis at an early stage of storage root formation
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Transcriptional profiling of sweetpotato (Ipomoea batatas) roots indicates down-regulation of lignin biosynthesis and up-regulation of starch biosynthesis at an early stage of storage root formation

机译:甘薯(Ipomoea batatas)根的转录谱分析表明,在贮藏根形成的早期阶段,木质素生物合成的下调和淀粉生物合成的上调

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Background The number of fibrous roots that develop into storage roots determines sweetpotato yield. The aim of the present study was to identify the molecular mechanisms involved in the initiation of storage root formation, by performing a detailed transcriptomic analysis of initiating storage roots using next-generation sequencing platforms. A two-step approach was undertaken: (1) generating a database for the sweetpotato root transcriptome using 454-Roche sequencing of a cDNA library created from pooled samples of two root types: fibrous and initiating storage roots; (2) comparing the expression profiles of initiating storage roots and fibrous roots, using the Illumina Genome Analyzer to sequence cDNA libraries of the two root types and map the data onto the root transcriptome database. Results Use of the 454-Roche platform generated a total of 524,607 reads, 85.6% of which were clustered into 55,296 contigs that matched 40,278 known genes. The reads, generated by the Illumina Genome Analyzer, were found to map to 31,284 contigs out of the 55,296 contigs serving as the database. A total of 8,353 contigs were found to exhibit differential expression between the two root types (at least 2.5-fold change). The Illumina-based differential expression results were validated for nine putative genes using quantitative real-time PCR. The differential expression profiles indicated down-regulation of classical root functions, such as transport, as well as down-regulation of lignin biosynthesis in initiating storage roots, and up-regulation of carbohydrate metabolism and starch biosynthesis. In addition, data indicated delicate control of regulators of meristematic tissue identity and maintenance, associated with the initiation of storage root formation. Conclusions This study adds a valuable resource of sweetpotato root transcript sequences to available data, facilitating the identification of genes of interest. This resource enabled us to identify genes that are involved in the earliest stage of storage root formation, highlighting the reduction in carbon flow toward phenylpropanoid biosynthesis and its delivery into carbohydrate metabolism and starch biosynthesis, as major events involved in storage root initiation. The novel transcripts related to storage root initiation identified in this study provide a starting point for further investigation into the molecular mechanisms underlying this process.
机译:背景技术发展成贮藏根的纤维根的数量决定了甘薯的产量。本研究的目的是通过使用下一代测序平台对起始贮藏根进行详细的转录组分析,从而确定与起始贮藏根形成有关的分子机制。采取了两步方法:(1)使用454-Roche测序从两个根类型的合并样本创建的cDNA文库,为甘薯根转录组生成数据库;纤维状和起始贮藏根; (2)使用Illumina Genome Analyzer对两种根型的cDNA文库进行测序,比较起始存储根和纤维根的表达谱,并将数据映射到根转录组数据库中。结果454-Roche平台的使用产生了524,607个读段,其中85.6%的读段被聚集成55,296个重叠群,与40,278个已知基因匹配。发现由Illumina基因组分析器生成的读数可映射到用作数据库的55,296个重叠群中的31,284个重叠群。发现总共8353个重叠群在两种根类型之间表现出差异表达(至少2.5倍变化)。使用定量实时PCR对9个推定基因验证了基于Illumina的差异表达结果。差异表达谱表明经典根功能的下调,例如运输,以及在起始贮藏根中木质素生物合成的下调,以及碳水化合物代谢和淀粉生物合成的上调。另外,数据表明,与储存根形成的开始有关,对分生组织特性和维持调节剂的精细控制。结论本研究为可利用的数据增加了甘薯根转录本序列的宝贵资源,有助于鉴定目的基因。该资源使我们能够鉴定出参与贮藏根形成最早阶段的基因,突出显示了碳向苯丙烷类生物合成流动的减少以及其向碳水化合物代谢和淀粉生物合成的传递,这是涉及贮藏根起始的主要事件。在这项研究中确定的与存储根起始相关的新转录本为进一步研究该过程的分子机制提供了一个起点。

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