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An atlas of gene expression and gene co-regulation in the human retina

机译:人类视网膜中的基因表达和基因共调控图集

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The human retina is a specialized tissue involved in light stimulus transduction. Despite its unique biology, an accurate reference transcriptome is still missing. Here, we performed gene expression analysis (RNA-seq) of 50 retinal samples from non-visually impaired post-mortem donors. We identified novel transcripts with high confidence (Observed Transcriptome (ObsT)) and quantified the expression level of known transcripts (Reference Transcriptome (RefT)). The ObsT included 77 623 transcripts (23 960 genes) covering 137 Mb (35 Mb new transcribed genome). Most of the transcripts (92%) were multi-exonic: 81% with known isoforms, 16% with new isoforms and 3% belonging to new genes. The RefT included 13 792 genes across 94 521 known transcripts. Mitochondrial genes were among the most highly expressed, accounting for about 10% of the reads. Of all the protein-coding genes in Gencode, 65% are expressed in the retina. We exploited inter-individual variability in gene expression to infer a gene co-expression network and to identify genes specifically expressed in photoreceptor cells. We experimentally validated the photoreceptors localization of three genes in human retina that had not been previously reported.
机译:人体视网膜是参与光刺激转导的专门组织。尽管其独特的生物学特性,但仍缺少准确的参考转录组。在这里,我们对来自非视觉障碍的验尸供体的50个视网膜样本进行了基因表达分析(RNA-seq)。我们鉴定了高信度的新转录本(ObsT Transcriptome(ObsT)),并量化了已知转录本的表达水平(Reference Transcriptome(RefT))。 ObsT包括77 623个转录本(23 960个基因),覆盖137 Mb(35 Mb新转录的基因组)。大多数成绩单(92%)是多外显子的:81%具有已知同工型,16%具有新同工型,3%属于新基因。 RefT包括94 521个已知转录本中的13 792个基因。线粒体基因是表达最高的基因之一,约占读数的10%。 Gencode中所有蛋白质编码基因中,有65%在视网膜中表达。我们利用基因表达中的个体间差异来推断基因共表达网络,并鉴定在感光细胞中特异性表达的基因。我们通过实验验证了人类视网膜中三个基因的光感受器定位,之前尚未报道过。

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