小RNA组测序描绘了地中海施米德虫(Schmidtea mediterranea)多能成体干细胞的小RNA图谱

Yue Li , An Zeng , Xiao-Shuan Han , Ge Li , Yong-Qin Li , Bairong Shen , Qing Jing
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引用次数: 7

摘要

小的非编码rna在基因表达调控中起着关键作用,是动物发育的关键调控因子。淡水涡虫表现出非凡的身体再生能力,代表了研究干细胞调控和组织再生机制的新兴模型。在这里,我们利用下一代测序(NGS)来鉴定在涡虫成体干细胞中表达的小rna,这些小rna与组织再生有关。我们分析了18 - 30nt大小的microRNAs (miRNAs)、piwi相互作用RNA (piRNAs)、小rdna衍生RNA (srrna)和内源性干扰RNA (endosirna)群体,测量了244个保守mirna的表达,鉴定了41个新的mirna和64个新的endosirna。表达谱分析显示,大多数pirna和srrna在再生过程中上调,其中表达量最多的srrna来自5.8s和28s rRNA。此外,采用靶标预测方法研究小rna与mRNA表达的反相关性。我们建立了一个以动态变化的小rna靶向基因为基础的基因调控网络。这些结果扩展了涡虫中已知的小RNA库,并为理解小RNA在干细胞介导的再生中的景观提供了有价值的见解和丰富的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Small RNAome sequencing delineates the small RNA landscape of pluripotent adult stem cells in the planarian Schmidtea mediterranea

Small noncoding RNAs play a pivotal role in the regulation of gene expression, and are key regulators of animal development. Freshwater planarian exhibits an extraordinary ability to regenerate any missing body parts, representing an emerging model for studying mechanism underlying stem cell regulation and tissue regeneration.

Here, we utilized next-generation sequencing (NGS) to identify small RNAs that are expressed in planarian adult stem cells, and are implicated in tissue regeneration. We profiled microRNAs (miRNAs), piwi-interacting RNA (piRNAs), small rDNA-derived RNAs (srRNAs) and endogenous interfering RNAs (endo-siRNAs) population from size 18–30 nt, measured the expression of 244 conserved miRNAs, and identified 41 novel miRNAs and 64 novel endo-siRNAs. Expression profiling analyses revealed that most piRNAs and srRNAs are up-regulated during regeneration, and that the most abundantly expressed srRNAs are from 5.8s and 28s rRNA. Furthermore, a target prediction method was adopted to investigate the anti-correlation of small RNAs and mRNA expression. We built up a gene regulatory network based on the genes that are targeted by dynamically changed small RNAs.

These results expand the known small RNA repertoire in planarian, and provide valuable insights and a rich resource for understanding the small RNAs landscape in stem cell-mediated regeneration.

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