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螯肢动物中普遍存在的微小RNA复制:来自蜘蛛温血拟壁钱胚胎微小RNA库的见解

Pervasive microRNA Duplication in Chelicerates: Insights from the Embryonic microRNA Repertoire of the Spider Parasteatoda tepidariorum.

作者信息

Leite Daniel J, Ninova Maria, Hilbrant Maarten, Arif Saad, Griffiths-Jones Sam, Ronshaugen Matthew, McGregor Alistair P

机构信息

Department of Biological and Medical Sciences, Oxford Brookes University, Gipsy Lane, Oxford, OX3 0BP, United Kingdom.

Faculty of Life Sciences, University of Manchester, United Kingdom.

出版信息

Genome Biol Evol. 2016 Aug 3;8(7):2133-44. doi: 10.1093/gbe/evw143.

Abstract

MicroRNAs are small (∼22 nt) noncoding RNAs that repress translation and therefore regulate the production of proteins from specific target mRNAs. microRNAs have been found to function in diverse aspects of gene regulation within animal development and many other processes. Among invertebrates, both conserved and novel, lineage specific, microRNAs have been extensively studied predominantly in holometabolous insects such as Drosophila melanogaster However little is known about microRNA repertoires in other arthropod lineages such as the chelicerates. To understand the evolution of microRNAs in this poorly sampled subphylum, we characterized the microRNA repertoire expressed during embryogenesis of the common house spider Parasteatoda tepidariorum We identified a total of 148 microRNAs in P. tepidariorum representing 66 families. Approximately half of these microRNA families are conserved in other metazoans, while the remainder are specific to this spider. Of the 35 conserved microRNAs families 15 had at least two copies in the P. tepidariorum genome. A BLAST-based approach revealed a similar pattern of duplication in other spiders and a scorpion, but not among other chelicerates and arthropods, with the exception of a horseshoe crab. Among the duplicated microRNAs we found examples of lineage-specific tandem duplications, and the duplication of entire microRNA clusters in three spiders, a scorpion, and in a horseshoe crab. Furthermore, we found that paralogs of many P. tepidariorum microRNA families exhibit arm switching, which suggests that duplication was often followed by sub- or neofunctionalization. Our work shows that understanding the evolution of microRNAs in the chelicerates has great potential to provide insights into the process of microRNA duplication and divergence and the evolution of animal development.

摘要

微小RNA是一类小的(约22个核苷酸)非编码RNA,它们通过抑制翻译来调控特定靶标信使核糖核酸(mRNA)的蛋白质合成。微小RNA在动物发育及许多其他过程中的基因调控的多个方面发挥作用。在无脊椎动物中,无论是保守的还是新出现的、特定谱系的微小RNA,主要在全变态昆虫(如黑腹果蝇)中得到了广泛研究。然而,对于其他节肢动物谱系(如螯肢动物)中的微小RNA组成却知之甚少。为了了解这个研究较少的亚门中微小RNA的进化情况,我们对普通家蛛(温和蛛)胚胎发育过程中表达的微小RNA组成进行了表征。我们在温和蛛中总共鉴定出148个微小RNA,代表66个家族。这些微小RNA家族中约一半在其他后生动物中是保守的,其余的则是该蜘蛛特有的。在35个保守的微小RNA家族中,有15个在温和蛛基因组中至少有两个拷贝。基于BLAST的方法揭示了其他蜘蛛和一种蝎子中存在类似的重复模式,但在其他螯肢动物和节肢动物中(马蹄蟹除外)则没有。在重复的微小RNA中,我们发现了谱系特异性串联重复的例子,以及在三种蜘蛛、一种蝎子和一种马蹄蟹中整个微小RNA簇的重复。此外,我们发现许多温和蛛微小RNA家族的旁系同源物表现出臂转换,这表明重复之后往往伴随着亚功能化或新功能化。我们的工作表明,了解螯肢动物中微小RNA的进化对于深入了解微小RNA的重复和分化过程以及动物发育的进化具有很大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a87a/4987109/cbf396f82429/gbe_8_7_2133_f1.jpg

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