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Preimplantation development regulatory pathway construction through a text-mining approach

机译:通过文本挖掘方法构建植入前发展监管途径

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BackgroundThe integration of sequencing and gene interaction data and subsequent generation of pathways and networks contained in databases such as KEGG Pathway is essential for the comprehension of complex biological processes. We noticed the absence of a chart or pathway describing the well-studied preimplantation development stages; furthermore, not all genes involved in the process have entries in KEGG Orthology, important information for knowledge application with relation to other organisms.ResultsIn this work we sought to develop the regulatory pathway for the preimplantation development stage using text-mining tools such as Medline Ranker and PESCADOR to reveal biointeractions among the genes involved in this process. The genes present in the resulting pathway were also used as seeds for software developed by our group called SeedServer to create clusters of homologous genes. These homologues allowed the determination of the last common ancestor for each gene and revealed that the preimplantation development pathway consists of a conserved ancient core of genes with the addition of modern elements.ConclusionsThe generation of regulatory pathways through text-mining tools allows the integration of data generated by several studies for a more complete visualization of complex biological processes. Using the genes in this pathway as “seeds” for the generation of clusters of homologues, the pathway can be visualized for other organisms. The clustering of homologous genes together with determination of the ancestry leads to a better understanding of the evolution of such process.
机译:背景技术测序和基因相互作用数据的整合以及随后包含在数据库(例如KEGG Pathway)中的途径和网络的生成对于理解复杂的生物过程至关重要。我们注意到没有图表或途径描述了经过充分研究的植入前发育阶段。此外,并非所有参与该过程的基因都在KEGG Orthology中有条目,KEGG Orthology是与其他生物相关的知识应用的重要信息。结果在这项工作中,我们试图使用文本挖掘工具(例如Medline Ranker)开发植入前发育阶段的调控途径。和PESCADOR揭示参与此过程的基因之间的生物相互作用。产生的途径中存在的基因也被用作我们小组称为SeedServer的软件开发的种子,以创建同源基因簇。这些同源物可以确定每个基因的最后共同祖先,并揭示了植入前的发育途径包括一个保守的古老基因核心以及现代元素。几项研究生成的结果可以更完整地可视化复杂的生物过程。使用该途径中的基因作为“种子”以产生同源簇,其他生物可以在该途径中看到。同源基因的聚类以及对血统的确定导致对这种过程的进化的更好的理解。

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