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Profile of microRNA in Giant Panda Blood: A Resource for Immune-Related and Novel microRNAs

机译:大熊猫血液中microRNA的概况:免疫相关和新型microRNA的资源。

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摘要

The giant panda (Ailuropoda melanoleuca) is one of the world’s most beloved endangered mammals. Although the draft genome of this species had been assembled, little was known about the composition of its microRNAs (miRNAs) or their functional profiles. Recent studies demonstrated that changes in the expression of miRNAs are associated with immunity. In this study, miRNAs were extracted from the blood of four healthy giant pandas and sequenced by Illumina next generation sequencing technology. As determined by miRNA screening, a total of 276 conserved miRNAs and 51 novel putative miRNAs candidates were detected. After differential expression analysis, we noticed that the expressions of 7 miRNAs were significantly up-regulated in young giant pandas compared with that of adults. Moreover, 2 miRNAs were up-regulated in female giant pandas and 1 in the male individuals. Target gene prediction suggested that the miRNAs of giant panda might be relevant to the expressions of 4,602 downstream genes. Subseuqently, the predicted target genes were conducted to KEGG (Kyoto Encyclopedia of Genes and Genomes) pathway analysis and we found that these genes were mainly involved in host immunity, including the Ras signaling pathway, the PI3K-Akt signaling pathway, and the MAPK signaling pathway. In conclusion, our results provide the first miRNA profiles of giant panda blood, and the predicted functional analyses may open an avenue for further study of giant panda immunity.
机译:大熊猫(Ailuropoda melanoleuca)是世界上最受欢迎的濒危哺乳动物之一。尽管已经收集了该物种的基因组草图,但对其微RNA(miRNA)的组成或功能概况知之甚少。最近的研究表明,miRNA表达的变化与免疫力有关。在这项研究中,从四个健康大熊猫的血液中提取了miRNA,并通过Illumina下一代测序技术对其进行了测序。通过miRNA筛选确定,共检测到276个保守的miRNA和51个新的假定miRNA候选对象。经过差异表达分析后,我们发现与成人相比,年轻大熊猫中的7个miRNA的表达明显上调。此外,雌性大熊猫中有2个miRNA上调,雄性个体中有1个miRNA上调。靶基因预测表明,大熊猫的miRNA可能与4,602个下游基因的表达有关。随后,将预测的靶基因进行了KEGG(《基因与基因组京都百科全书》)通路分析,我们发现这些基因主要参与宿主免疫,包括Ras信号通路,PI3K-Akt信号通路和MAPK信号通路。途径。总之,我们的结果提供了大熊猫血液的第一个miRNA图谱,并且预测的功能分析可能会为进一步研究大熊猫免疫性开辟一条道路。

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