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首页> 外文期刊>Revista Peruana de Biologia >Single molecule sequencing of nucleic acids in real time (SMRT) to characterize transcriptomes and mRNA isoforms
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Single molecule sequencing of nucleic acids in real time (SMRT) to characterize transcriptomes and mRNA isoforms

机译:实时核酸的单分子测序(SMRT)表征转录om和mRNA同种型

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Our efforts are oriented to assess bovine Y-chromosome gene expression patterns. One set of genes that are of interest are the so-called X-degenerate Y-chromosome genes that are located in the male-specific region of the Y-chromosome (MSY). This region contains 95% of the DNA of the Y chromosome. These genes are single copy and have an X-chromosome homolog. Both, the Y-encoded and X-encoded homologs have ubiquitous expression profiles. However, some genes, like SRY that regulates male sex determination, have functions that are more specific. Identifying DNA sequence differences between these homologs will allow evaluation of their spatial and temporal expression patterns. Identification of the Y-encoded mRNAs and their isoforms will allow our understanding of tissue specific expression of isoforms in male tissues. The latter will facilitate our evaluation of gene function in male sex differentiation and fertility. Hence, we hypothesized that each of these X-degenerate gene homologs generate isoforms and that differential expression patterns exist between sexes and across tissues. To investigate the latter we used a new generation sequencing (NGS) technology that generates long sequencing reads with a range between 1000 to 10,000 base pairs in length. Single molecule real time (SMRT) isoform sequencing (IsoSeq) of several tissues (liver, lung, adipose, muscle, hypothalamus and testis) was carried out. Transcript sequences were used for bioinformatics analysis and isoform characterization. Given the focus of this manuscript the SMRT technology we are only presenting results obtained with the analysis of the bUTY and bUTX genes.
机译:我们的努力旨在评估牛Y-染色体基因表达模式。具有感兴趣的一组基因是所谓的X-退化的Y-染色体基因,其位于Y-染色体(MSY)的雄性特异性区域中。该区域含有95%的Y染色体的DNA。这些基因是单拷贝并具有X-染色体同源物。两者,Y编码和X编码的同源物具有普带的表达曲线。然而,一些基因,如Sry调节男性性别测定,具有更具体的功能。鉴定这些同源物之间的DNA序列差异将允许评估其空间和时间表达模式。鉴定Y编码的MRNA及其同种型将允许我们理解男组织中同种型的组织特异性表达。后者将促进我们对男性性别分化和生育的基因功能的评价。因此,我们假设这些X-退化基因同源物中的每一个产生同种型,并且在性别和跨组织之间存在差异表达模式。为了研究后者,我们使用了新一代测序(NGS)技术,该技术产生长测序,其长度为1000至10,000个碱基对。进行了几种组织(肝脏,肺,脂肪,肌肉,下丘脑和睾丸)的单分子实时(SMRT)同种型测序(isoseq)。转录物序列用于生物信息学分析和同种型表征。鉴于本手稿的重点,我们只是在分析Buty和Butx基因的情况下呈现出现的结果。

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