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Genome-wide analysis of alternative splicing evolution Genome-wide analysis of alternative splicing evolution

机译:选择性剪接进化的全基因组分析选择性剪接进化的全基因组分析

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Alternative splicing, the combination of different exons to produce a variety of transcripts from a single gene, contributes enormously to transcriptome diversity in mammals, and the majority of genes encode alternatively spliced products. Previous research comparing mouse, rat and human has shown that a significant proportion of splice forms are not conserved across species, suggesting that alternative transcripts are an important source of evolutionary novelty. Here, we studied the evolution of alternative splicing in the early stages of species divergence in the house mouse. We sequenced the testis transcriptomes of three Mus musculus subspecies and Mus spretus using Illumina technology. On the basis of a genome-wide analysis of read coverage differences among subspecies, we identified several hundred candidate alternatively spliced regions. We conservatively estimate that 6.5% of testis-expressed genes show alternative splice differences between at least one pair of M. musculus subspecies, a proportion slightly higher than the proportion of genes differentially expressed among subspecies. These results suggest that differences in both the structure and abundance of transcripts contribute to early transcriptome divergence.
机译:选择性剪接,即不同外显子的组合可从单个基因产生多种转录本,极大地促进了哺乳动物的转录组多样性,并且大多数基因编码了选择性剪接的产物。以前比较小鼠,大鼠和人类的研究表明,剪接形式的显着比例在物种间并不保守,这表明替代转录本是进化新奇的重要来源。在这里,我们研究了家鼠在物种分化的早期阶段中选择性剪接的演变。我们使用Illumina技术对三个家蝇小亚种和家蝇的睾丸转录组进行了测序。基于全基因组的亚种间阅读覆盖率差异的分析,我们确定了数百个候选交替剪接区域。我们保守地估计,有6.5%的睾丸表达基因在至少一对小家鼠亚种之间显示出不同的剪接差异,这一比例略高于在亚种间差异表达的基因的比例。这些结果表明,转录本的结构和丰度上的差异会导致早期转录组的差异。

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