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克隆、鉴定及广泛表达分析鸡睾丸 piRNA 样 RNA。

Cloning, characterization and widespread expression analysis of testicular piRNA-like chicken RNAs.

机构信息

College of Animal Science and Technology, Yangzhou University, Yangzhou 225009, China.

出版信息

Mol Biol Rep. 2013 Apr;40(4):2799-807. doi: 10.1007/s11033-012-2295-3. Epub 2012 Nov 30.

Abstract

Piwi-interacting RNAs (piRNAs) are small RNAs abundant in the germline that have been implicated in germline development and maintenance of genomic integrity across several animal species including human, mouse, rat, zebrafish and drosophila. Tens of thousands of piRNAs have been discovered, yet abundant piRNAs have still not been detected in various eukaryotic organisms. This is a report on the characterization, cloning and expression profiling of piRNA-like chicken RNAs. Here, we identified 19 piRNAs, each 23-39 nucleotides long, from chicken testis using a small RNA cDNA library and T-A cloning methods. Three different pilRNAs were selected according to size, homology and secondary structure for temporal and spatial expression by Q-PCR technology in different tissues at five growth and four development stages of Chinese indigenous Rugao chickens (RG) and introduced recessive white feather chickens (RW). We found that, consistent to other organisms, pilRNA-encoding sequences within the chicken genome were asymmetrically distributed on the chromosomes while displaying a preference for intergenic regions across the genome. Interestingly, unlike miRNAs with unique stem-loop structures (mature miRNAs form stem section and the rest form loop section), distinct secondary structures of pilRNAs were predicted. In addition, chicken pilRNAs were not only abundant in the germline but also existed in somatic tissues, where, expression levels were influenced mainly by different pilRNAs, breed and gender. Taken together, our results suggest that two distinct secondary structures exist between pilRNAs and miRNAs, which may clarify the splicing and processing mechanisms of the two small RNAs are possible different. Moreover, our results suggest that pilRNAs may not only be confined to development and maintenance of the germline but may also play important roles in somatic tissues. Additionally, different pilRNAs may be involved in the unique regulatory machinery of complex biological processes.

摘要

Piwi 相互作用 RNA(piRNAs)是在生殖系中丰富的小 RNA,已被牵连到几种动物物种(包括人类、小鼠、大鼠、斑马鱼和果蝇)的生殖系发育和基因组完整性的维持中。已经发现了成千上万的 piRNAs,但在各种真核生物中仍未检测到丰富的 piRNAs。这是一篇关于鸡类 piRNA 样 RNA 的特征、克隆和表达谱的报告。在这里,我们使用小 RNA cDNA 文库和 T-A 克隆方法从鸡睾丸中鉴定了 19 个长度为 23-39 个核苷酸的 piRNAs。根据大小、同源性和二级结构,选择了三个不同的 pilRNAs,通过 Q-PCR 技术在不同组织和五个生长阶段和四个发育阶段的中国本土如皋鸡(RG)和引入的隐性白羽鸡(RW)中进行时空表达分析。我们发现,与其他生物一样,鸡基因组中的 pilRNA 编码序列在染色体上不对称分布,同时在整个基因组中优先分布在基因间区域。有趣的是,与具有独特茎环结构的 miRNAs 不同(成熟的 miRNAs 形成茎部,其余部分形成环部),预测出了 pilRNAs 的独特二级结构。此外,鸡 pilRNAs 不仅在生殖系中丰富,而且存在于体细胞组织中,其表达水平主要受不同 pilRNAs、品种和性别影响。总之,我们的结果表明 pilRNAs 和 miRNAs 之间存在两种不同的二级结构,这可能阐明了两种小 RNA 的剪接和加工机制可能不同。此外,我们的结果表明,pilRNAs 可能不仅局限于生殖系的发育和维持,而且可能在体细胞组织中发挥重要作用。此外,不同的 pilRNAs 可能参与复杂生物过程的独特调控机制。

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