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海绵中动态且广泛的长链非编码RNA表达与动物复杂性的起源

Dynamic and Widespread lncRNA Expression in a Sponge and the Origin of Animal Complexity.

作者信息

Gaiti Federico, Fernandez-Valverde Selene L, Nakanishi Nagayasu, Calcino Andrew D, Yanai Itai, Tanurdzic Milos, Degnan Bernard M

机构信息

School of Biological Sciences, University of Queensland, Brisbane, QLD, Australia.

Department of Biology, Technion - Israel Institute of Technology, Haifa, Israel.

出版信息

Mol Biol Evol. 2015 Sep;32(9):2367-82. doi: 10.1093/molbev/msv117. Epub 2015 May 14.

Abstract

Long noncoding RNAs (lncRNAs) are important developmental regulators in bilaterian animals. A correlation has been claimed between the lncRNA repertoire expansion and morphological complexity in vertebrate evolution. However, this claim has not been tested by examining morphologically simple animals. Here, we undertake a systematic investigation of lncRNAs in the demosponge Amphimedon queenslandica, a morphologically simple, early-branching metazoan. We combine RNA-Seq data across multiple developmental stages of Amphimedon with a filtering pipeline to conservatively predict 2,935 lncRNAs. These include intronic overlapping lncRNAs, exonic antisense overlapping lncRNAs, long intergenic nonprotein coding RNAs, and precursors for small RNAs. Sponge lncRNAs are remarkably similar to their bilaterian counterparts in being relatively short with few exons and having low primary sequence conservation relative to protein-coding genes. As in bilaterians, a majority of sponge lncRNAs exhibit typical hallmarks of regulatory molecules, including high temporal specificity and dynamic developmental expression. Specific lncRNA expression profiles correlate tightly with conserved protein-coding genes likely involved in a range of developmental and physiological processes, such as the Wnt signaling pathway. Although the majority of Amphimedon lncRNAs appears to be taxonomically restricted with no identifiable orthologs, we find a few cases of conservation between demosponges in lncRNAs that are antisense to coding sequences. Based on the high similarity in the structure, organization, and dynamic expression of sponge lncRNAs to their bilaterian counterparts, we propose that these noncoding RNAs are an ancient feature of the metazoan genome. These results are consistent with lncRNAs regulating the development of animals, regardless of their level of morphological complexity.

摘要

长链非编码RNA(lncRNAs)是两侧对称动物重要的发育调节因子。在脊椎动物进化过程中,lncRNA库的扩张与形态复杂性之间存在关联。然而,这一说法尚未通过对形态简单的动物进行研究来验证。在此,我们对形态简单、处于进化早期分支的后生动物——澳洲绵筒螅(Amphimedon queenslandica)中的lncRNAs进行了系统研究。我们将澳洲绵筒螅多个发育阶段的RNA测序数据与一个筛选流程相结合,保守地预测出2935个lncRNAs。这些包括内含子重叠lncRNAs、外显子反义重叠lncRNAs、长链基因间非蛋白质编码RNAs以及小RNAs的前体。海绵lncRNAs与其两侧对称动物的对应物非常相似,相对较短,外显子较少,相对于蛋白质编码基因而言,其一级序列保守性较低。与两侧对称动物一样,大多数海绵lncRNAs表现出调节分子的典型特征,包括高时间特异性和动态发育表达。特定的lncRNA表达谱与可能参与一系列发育和生理过程(如Wnt信号通路)的保守蛋白质编码基因紧密相关。尽管大多数澳洲绵筒螅lncRNAs似乎在分类学上受到限制,没有可识别的直系同源物,但我们发现了一些在编码序列反义的lncRNAs中,海绵动物之间存在保守性的案例。基于海绵lncRNAs与其两侧对称动物对应物在结构、组织和动态表达上的高度相似性,我们提出这些非编码RNA是后生动物基因组的一个古老特征。这些结果与lncRNAs调节动物发育的观点一致,无论其形态复杂程度如何。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e320/4540969/f026230b9291/msv117f1p.jpg

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