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Association of tissue lineage and gene expression: conservatively and differentially expressed genes define common and special functions of tissues

机译:组织谱系与基因表达的关联:保守和差异表达的基因定义了组织的共同和特殊功能

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摘要

Background: Embryogenesis is the process by which the embryo is formed, develops, and establishes developmental hierarchies of tissues. The recent advance in microarray technology made it possible to investigate the tissue specific patterns of gene expression and their relationship with tissue lineages. This study is focused on how tissue specific functions, tissue lineage, and cell differentiation are correlated, which is essential to understand embryonic development and organism complexity. Results: We performed individual gene and gene set based analysis on multiple tissue expression data, in association with the classic topology of mammalian fate maps of embryogenesis. For each sub-group of tissues on the fate map, conservatively, differentially and correlatively expressed genes or gene sets were identified. Tissue distance was found to correlate with gene expression divergence. Tissues of the ectoderm or mesoderm origins from the same segments on the fate map shared more similar expression pattern than those from different origins. Conservatively expressed genes or gene sets define common functions in a tissue group and are related to tissue specific diseases, which is supported by results from Gene Ontology and KEGG pathway analysis. Gene expression divergence is larger in certain human tissues than in the mouse homologous tissues. Conclusion: The results from tissue lineage and gene expression analysis indicate that common function features of neighbor tissue groups were defined by the conservatively expressed genes and were related to tissue specific diseases, and differentially expressed genes contribute to the functional divergence of tissues. The difference of gene expression divergence in human and mouse homologous tissues reflected the organism complexity, i.e. distinct neural development levels and different body sizes.
机译:背景:胚胎发生是胚形成,发育和建立组织发育等级的过程。微阵列技术的最新进展使得研究基因表达的组织特异性模式及其与组织谱系的关系成为可能。这项研究的重点是如何将组织的特定功能,组织谱系和细胞分化相关联,这对于理解胚胎发育和生物复杂性至关重要。结果:我们对多种组织表达数据进行了单独的基因和基因组分析,并结合了哺乳动物胚胎发育命运图谱的经典拓扑结构。对于命运图上每个组织的亚组,都可以识别出保守,差异和相关表达的基因或基因集。发现组织距离与基因表达差异相关。来自命运图上相同片段的外胚层或中胚层来源的组织比来自不同来源的组织共享更多相似的表达模式。保守表达的基因或基因集定义了组织组中的共同功能,并且与组织特异性疾病有关,这由基因本体论和KEGG通路分析的结果所支持。在某些人类组织中,基因表达差异要大于在小鼠同源组织中。结论:来自组织谱系和基因表达分析的结果表明,相邻组织的共同功能特征由保守表达的基因定义,并与组织特异性疾病有关,差异表达的基因有助于组织的功能分化。人和小鼠同源组织中基因表达差异的差异反映了生物体的复杂性,即不同的神经发育水平和不同的体型。

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  • 会议地点 Hangzhou(CN);Hangzhou(CN)
  • 作者单位

    Key Lab of Systems Biology/Key Laboratory of Synthetic Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China Graduate School of the Chinese Academy of Sciences,Shanghai 200031, PR China;

    College of life science and biotechnology,Shanghai Jiaotong University, Shanghai 200240, China;

    Shanghai Center for Bioinformation Technology, 100 Qinzhou Road, Shanghai 200235, China;

    Key Lab of Systems Biology/Key Laboratory of Synthetic Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, China Shanghai Center for Bioinformation Technology, 100 Qinzhou Road, Shanghai 200235, China;

    Key Lab of Systems Biology/Key Laboratory of Synthetic Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sc;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 基因理论;基因理论;
  • 关键词

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