National University of Ireland, Galway, University Road, Galway, Republic of Ireland.
BMC Bioinformatics. 2011 Oct 5;12 Suppl 9(Suppl 9):S16. doi: 10.1186/1471-2105-12-S9-S16.
We carried out an analysis of intron length conservation across a diverse group of nineteen mammalian species. Motivated by recent research suggesting a role for time delays associated with intron transcription in gene expression oscillations required for early embryonic patterning, we searched for examples of genes that showed the most extreme conservation of total intron content in mammals.
Gene sets annotated as being involved in pattern specification in the early embryo or containing the homeobox DNA-binding domain, were significantly enriched among genes with highly conserved intron content. We used ancestral sequences reconstructed with probabilistic models that account for insertion and deletion mutations to distinguish insertion and deletion events on lineages leading to human and mouse from their last common ancestor. Using a randomization procedure, we show that genes containing the homeobox domain show less change in intron content than expected, given the number of insertion and deletion events within their introns.
Our results suggest selection for gene expression precision or the existence of additional development-associated genes for which transcriptional delay is functionally significant.
我们对 19 种哺乳动物的内含子长度保守性进行了分析。受最近的研究启发,该研究表明,内含子转录相关的时间延迟在早期胚胎模式形成所需的基因表达振荡中发挥作用,我们寻找了在哺乳动物中显示出总内含子含量最极端保守性的基因的例子。
注释为参与早期胚胎形态发生或包含同源盒 DNA 结合域的基因集,在具有高度保守内含子含量的基因中显著富集。我们使用概率模型重建的祖先序列来区分导致人和鼠的谱系与其最后共同祖先之间的插入和缺失事件。使用随机化程序,我们表明,与它们内含子中的插入和缺失事件数量相比,含有同源盒域的基因的内含子含量变化较小。
我们的结果表明,选择基因表达精度或存在其他与发育相关的基因,转录延迟在功能上是重要的。