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Starch biosynthesis in cassava: a genome-based pathway reconstruction and its exploitation in data integration

机译:木薯中淀粉的生物合成:基于基因组的途径重建及其在数据整合中的应用

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Background Cassava is a well-known starchy root crop utilized for food, feed and biofuel production. However, the comprehension underlying the process of starch production in cassava is not yet available. Results In this work, we exploited the recently released genome information and utilized the post-genomic approaches to reconstruct the metabolic pathway of starch biosynthesis in cassava using multiple plant templates. The quality of pathway reconstruction was assured by the employed parsimonious reconstruction framework and the collective validation steps. Our reconstructed pathway is presented in the form of an informative map, which describes all important information of the pathway, and an interactive map, which facilitates the integration of omics data into the metabolic pathway. Additionally, to demonstrate the advantage of the reconstructed pathways beyond just the schematic presentation, the pathway could be used for incorporating the gene expression data obtained from various developmental stages of cassava roots. Our results exhibited the distinct activities of the starch biosynthesis pathway in different stages of root development at the transcriptional level whereby the activity of the pathway is higher toward the development of mature storage roots. Conclusions To expand its applications, the interactive map of the reconstructed starch biosynthesis pathway is available for download at the SBI group’s website ( http://sbi.pdti.kmutt.ac.th/?page_id=33 webcite ). This work is considered a big step in the quantitative modeling pipeline aiming to investigate the dynamic regulation of starch biosynthesis in cassava roots.
机译:背景木薯是一种众所周知的淀粉状根作物,用于食品,饲料和生物燃料的生产。但是,尚未获得对木薯淀粉生产过程的基本了解。结果在这项工作中,我们利用了最近发布的基因组信息,并利用后基因组方法使用多种植物模板重建了木薯淀粉生物合成的代谢途径。所采用的简约重建框架和集体验证步骤确保了通路重建的质量。我们重建的途径以信息图和交互式图的形式呈现,该信息图描述了该途径的所有重要信息,而交互式图则有助于将组学数据整合到代谢途径中。另外,为了证明除了示意性表示之外的重构途径的优势,该途径可以用于整合从木薯根的各个发育阶段获得的基因表达数据。我们的结果在转录水平上显示了淀粉生物合成途径在根发育的不同阶段的独特活性,其中该途径的活性朝向成熟贮藏根的发育更高。结论为了扩大其应用范围,可以在SBI集团的网站(http://sbi.pdti.kmutt.ac.th/?page_id=33 webcite)上下载重建的淀粉生物合成途径的交互式图。这项工作被认为是旨在研究木薯根中淀粉生物合成动态调控的定量建模过程中的重要一步。

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