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Allele-specific expression and alternative splicing in horse×donkey and cattle×yak hybrids

机译:马×驴和牛×y牛杂种的等位基因特异性表达和剪接

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摘要

Divergence of gene expression and alternative splicing is a crucial driving force in the evolution of species; to date, however the molecular mechanism remains unclear. Hybrids of closely related species provide a suitable model to analyze allele-specific expression (ASE) and allele-specific alternative splicing (ASS). Analysis of ASE and ASS can uncover the differences in cis-regulatory elements between closely related species, while eliminating interference of trans-regulatory elements. Here, we provide a detailed characterization of ASE and ASS from 19 and 10 transcriptome datasets across five tissues from reciprocal-cross hybrids of horse×donkey (mule/hinny) and cattle×yak (dzo), respectively. Results showed that 4.8%–8.7% and 10.8%–16.7% of genes exhibited ASE and ASS, respectively. Notably, lncRNAs and pseudogenes were more likely to show ASE than protein-coding genes. In addition, genes showing ASE and ASS in mule/hinny were found to be involved in the regulation of muscle strength, whereas those of dzo were involved in high-altitude adaptation. In conclusion, our study demonstrated that exploration of genes showing ASE and ASS in hybrids of closely related species is feasible for species evolution research.
机译:基因表达的多样性和选择性剪接是物种进化的关键驱动力。迄今为止,其分子机制仍不清楚。密切相关物种的杂种为分析等位基因特异性表达(ASE)和等位基因特异性替代剪接(ASS)提供了合适的模型。 ASE和ASS的分析可以揭示紧密相关物种之间顺式调节元件的差异,同时消除了反式调节元件的干扰。在这里,我们分别从马x驴(m子/ hin牛)和牛x ak牛(dzo)的互交杂种的五个组织的19个和10个转录组数据集中提供了ASE和ASS的详细表征。结果表明,分别有4.8%–8.7%和10.8%–16.7%的基因表现出ASE和ASS。值得注意的是,lncRNA和假基因比蛋白编码基因更有可能显示ASE。此外,发现在m子/胫骨中显示ASE和ASS的基因与肌肉力量的调节有关,而dzo的基因与高海拔适应有关。总而言之,我们的研究表明,在密切相关物种的杂种中探索显示ASE和ASS的基因对于物种进化研究是可行的。

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