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在塔马尔沙袋鼠基因组中发现的独特小 RNA 特征。

Unique small RNA signatures uncovered in the tammar wallaby genome.

机构信息

Department of Molecular and Cell Biology, University of Connecticut, Storrs, CT 06269, USA.

出版信息

BMC Genomics. 2012 Oct 17;13:559. doi: 10.1186/1471-2164-13-559.

Abstract

BACKGROUND

Small RNAs have proven to be essential regulatory molecules encoded within eukaryotic genomes. These short RNAs participate in a diverse array of cellular processes including gene regulation, chromatin dynamics and genome defense. The tammar wallaby, a marsupial mammal, is a powerful comparative model for studying the evolution of regulatory networks. As part of the genome sequencing initiative for the tammar, we have explored the evolution of each of the major classes of mammalian small RNAs in an Australian marsupial for the first time, including the first genome-scale analysis of the newest class of small RNAs, centromere repeat associated short interacting RNAs (crasiRNAs).

RESULTS

Using next generation sequencing, we have characterized the major classes of small RNAs, micro (mi) RNAs, piwi interacting (pi) RNAs, and the centromere repeat associated short interacting (crasi) RNAs in the tammar. We examined each of these small RNA classes with respect to the newly assembled tammar wallaby genome for gene and repeat features, salient features that define their canonical sequences, and the constitution of both highly conserved and species-specific members. Using a combination of miRNA hairpin predictions and co-mapping with miRBase entries, we identified a highly conserved cluster of miRNA genes on the X chromosome in the tammar and a total of 94 other predicted miRNA producing genes. Mapping all miRNAs to the tammar genome and comparing target genes among tammar, mouse and human, we identified 163 conserved target genes. An additional nine genes were identified in tammar that do not have an orthologous miRNA target in human and likely represent novel miRNA-regulated genes in the tammar. A survey of the tammar gonadal piRNAs shows that these small RNAs are enriched in retroelements and carry members from both marsupial and tammar-specific repeat classes. Lastly, this study includes the first in-depth analyses of the newly discovered crasiRNAs. These small RNAs are derived largely from centromere-enriched retroelements, including a novel SINE.

CONCLUSIONS

This study encompasses the first analyses of the major classes of small RNAs for the newly completed tammar genome, validates preliminary annotations using deep sequencing and computational approaches, and provides a foundation for future work on tammar-specific as well as conserved, but previously unknown small RNA progenitors and targets identified herein. The characterization of new miRNA target genes and a unique profile for crasiRNAs has allowed for insight into multiple RNA mediated processes in the tammar, including gene regulation, species incompatibilities, centromere and chromosome function.

摘要

背景

小 RNA 已被证明是真核基因组中编码的重要调控分子。这些短 RNA 参与了多种细胞过程,包括基因调控、染色质动态和基因组防御。塔马尔袋鼠,一种有袋哺乳动物,是研究调控网络进化的强大比较模型。作为塔马尔基因组测序计划的一部分,我们首次探索了澳大利亚有袋动物中每一类主要的哺乳动物小 RNA 的进化,包括对最新一类小 RNA,着丝粒重复相关短相互作用 RNA(crasiRNA)的首次全基因组分析。

结果

使用下一代测序,我们对塔马尔的小 RNA 中的 microRNA(miRNA)、piwi 相互作用 RNA(piRNA)和着丝粒重复相关短相互作用 RNA(crasiRNA)进行了特征描述。我们研究了这些小 RNA 类别中的每一个,以确定与新组装的塔马尔袋狸基因组的基因和重复特征、定义其典型序列的显著特征,以及高度保守和物种特异性成员的构成。我们结合 miRNA 发夹预测和与 miRBase 条目共映射,鉴定了塔马尔 X 染色体上高度保守的 miRNA 基因簇和总共 94 个其他预测的 miRNA 产生基因。将所有 miRNA 映射到塔马尔基因组,并在塔马尔、小鼠和人类之间比较靶基因,我们鉴定了 163 个保守的靶基因。在塔马尔中还鉴定了另外 9 个没有在人类中发现同源 miRNA 靶基因的基因,它们可能代表塔马尔中新型 miRNA 调控基因。对塔马尔性腺 piRNA 的调查表明,这些小 RNA 在逆转录元件中富集,并携带来自有袋动物和塔马尔特有的重复类别的成员。最后,本研究包括对新发现的 crasiRNA 的首次深入分析。这些小 RNA 主要来源于着丝粒富集的逆转录元件,包括一种新的 SINE。

结论

本研究涵盖了新完成的塔马尔基因组中主要小 RNA 类别的首次分析,使用深度测序和计算方法验证了初步注释,并为塔马尔特异性以及保守但以前未知的小 RNA 前体和靶基因的进一步研究提供了基础。新 miRNA 靶基因的特征和 crasiRNA 的独特特征使我们能够深入了解塔马尔的多个 RNA 介导过程,包括基因调控、物种不兼容性、着丝粒和染色体功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b15e/3576234/ee42eb6bd78f/1471-2164-13-559-1.jpg

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