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Comparative analysis of neural transcriptomes and functional implication of unannotated intronic expression

机译:神经转录组的比较分析和无注释内含子表达的功能含义

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Background The transcriptome and its regulation bridge the genome and the phenome. Recent RNA-seq studies unveiled complex transcriptomes with previously unknown transcripts and functions. To investigate the characteristics of neural transcriptomes and possible functions of previously unknown transcripts, we analyzed and compared nine recent RNA-seq datasets corresponding to tissues/organs ranging from stem cell, embryonic brain cortex to adult whole brain. Results We found that the neural and stem cell transcriptomes share global similarity in both gene and chromosomal expression, but are quite different from those of liver or muscle. We also found an unusually high level of unannotated expression in mouse embryonic brains. The intronic unannotated expression was found to be strongly associated with genes annotated for neurogenesis, axon guidance, negative regulation of transcription, and neural transmission. These functions are the hallmarks of the late embryonic stage cortex, and crucial for synaptogenesis and neural circuit formation. Conclusions Our results revealed unique global and local landscapes of neural transcriptomes. It also suggested potential functional roles for previously unknown transcripts actively expressed in the developing brain cortex. Our findings provide new insights into potentially novel genes, gene functions and regulatory mechanisms in early brain development.
机译:背景转录组及其调控作用是基因组和表型的桥梁。最近的RNA-seq研究揭示了具有先前未知的转录本和功能的复杂转录组。为了研究神经转录组的特征和以前未知的转录本的可能功能,我们分析并比较了9个最新的RNA-seq数据集,这些数据集对应于从干细胞,胚胎脑皮质到成年全脑的组织/器官。结果我们发现,神经和干细胞转录组在基因和染色体表达上都具有全局相似性,但与肝脏或肌肉的转录组完全不同。我们还发现小鼠胚胎大脑中未注释的表达异常高水平。发现内含子未注释的表达与注释神经元,轴突指导,转录的负调控和神经传递的基因密切相关。这些功能是胚胎后期皮质的标志,对于突触形成和神经回路形成至关重要。结论我们的结果揭示了神经转录组的独特的全球和局部景观。它还暗示了在发育中的大脑皮层中活跃表达的先前未知的转录本的潜在功能作用。我们的发现为早期大脑发育中潜在的新基因,基因功能和调控机制提供了新的见解。

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