Faculty of Life Sciences, University of Manchester, Manchester, United Kingdom.
Genome Biol Evol. 2010;2:686-96. doi: 10.1093/gbe/evq053. Epub 2010 Sep 3.
MicroRNAs (miRNAs) are short endogenous RNA molecules that regulate gene expression at the posttranscriptional level and have been shown to play critical roles during animal development. The identification and comparison of miRNAs in metazoan species are therefore paramount for our understanding of the evolution of body plans. We have characterized 203 miRNAs from the red flour beetle Tribolium castaneum by deep sequencing of small RNA libraries. We can conclude, from a single study, that the Tribolium miRNA set is at least 15% larger than that in the model insect Drosophila melanogaster (despite tens of high-throughput sequencing experiments in the latter). The rate of birth and death of miRNAs is high in insects. Only one-third of the Tribolium miRNA sequences are conserved in D. melanogaster, and at least 18 Tribolium miRNAs are conserved in vertebrates but lost in Drosophila. More than one-fifth of miRNAs that are conserved between Tribolium and Drosophila exhibit changes in the transcription, genomic organization, and processing patterns that lead to predicted functional shifts. For example, 13% of conserved miRNAs exhibit seed shifting, and we describe arm-switching events in 11% of orthologous pairs. These shifts fundamentally change the predicted targets and therefore function of orthologous miRNAs. In general, Tribolium miRNAs are more representative of the insect ancestor than Drosophila miRNAs and are more conserved in vertebrates.
微 RNA(miRNA)是短的内源性 RNA 分子,在转录后水平上调节基因表达,并且在动物发育过程中发挥关键作用。因此,鉴定和比较后生动物物种中的 miRNA 对于我们理解身体计划的进化至关重要。我们通过对小 RNA 文库进行深度测序,从赤拟谷盗 Tribolium castaneum 中鉴定和比较了 203 个 miRNA。我们可以从一项研究中得出结论,赤拟谷盗的 miRNA 集至少比模式昆虫黑腹果蝇的 miRNA 集大 15%(尽管后者进行了数十项高通量测序实验)。昆虫中 miRNA 的诞生和死亡速度很高。只有三分之一的赤拟谷盗 miRNA 序列在黑腹果蝇中保守,至少有 18 个赤拟谷盗 miRNA 在脊椎动物中保守,但在果蝇中丢失。在赤拟谷盗和果蝇之间保守的 miRNA 中,超过五分之一的 miRNA 在转录、基因组组织和加工模式上发生了变化,导致预测功能发生转变。例如,13%的保守 miRNA 表现出种子移位,并且我们在 11%的同源对中描述了臂转换事件。这些转变从根本上改变了同源 miRNA 的预测靶标,因此改变了其功能。一般来说,与黑腹果蝇相比,赤拟谷盗的 miRNA 更能代表昆虫的祖先,并且在脊椎动物中更保守。