Zhang Rui, Wang Yin-Qiu, Su Bing
State Key Laboratory of Genetic Resources and Evolution, Kunming Institute of Zoology, Chinese Academy of Sciences, Kunming, China.
Mol Biol Evol. 2008 Jul;25(7):1493-502. doi: 10.1093/molbev/msn094. Epub 2008 Apr 15.
Lineage-specific microRNA (miRNA) families may contribute to developmental novelties during evolution. However, little is known about the origin and evolution of new miRNA families. We report evidence of an Alu-mediated rapid expansion of miRNA genes in a previously identified primate-specific miRNA family, drawn from sequencing and comparative analysis of 9 diverse primate species. Evolutionary analysis reveals similar divergence among miRNA copies whether they are within or between species, lineage-specific gain and loss of miRNAs, and gene pseudolization in multiple species. These observations support a birth-and-death process of miRNA genes in this family, implicating functional diversification during primate evolution. In addition, both secondary structure conservation and reduced single nucleotide polymorphisms density attest to functional constraint of this family in primates. Finally, we observed preferential expression of miRNAs in human placenta and fetal brain, suggesting a functional importance of this family for primate development.
谱系特异性微小RNA(miRNA)家族可能在进化过程中促成了发育上的新奇特征。然而,对于新miRNA家族的起源和进化知之甚少。我们通过对9种不同灵长类物种的测序和比较分析,报告了在先前鉴定的灵长类特异性miRNA家族中,Alu介导的miRNA基因快速扩增的证据。进化分析揭示了miRNA拷贝在物种内或物种间的相似分歧、miRNA的谱系特异性增减以及多个物种中的基因假基因化。这些观察结果支持了该家族中miRNA基因的生死过程,暗示了灵长类进化过程中的功能多样化。此外,二级结构保守性和单核苷酸多态性密度降低都证明了该家族在灵长类中的功能限制。最后,我们观察到miRNA在人类胎盘和胎儿大脑中的优先表达,表明该家族对灵长类发育具有功能重要性。