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首页> 外文期刊>Bulletin of Entomological Research >MicroRNAs of the mesothorax in Qinlingacris elaeodes, an alpine grasshopper showing a wing polymorphism with unilateral wing form
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MicroRNAs of the mesothorax in Qinlingacris elaeodes, an alpine grasshopper showing a wing polymorphism with unilateral wing form

机译:Qinlingacris elaeodes(一种高山蝗虫,表现出具有单侧翼形式的翼多态性的高山蝗虫)间皮的MicroRNA

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MicroRNAs (miRNAs) are now recognized as key post-transcriptional regulators in regulation of phenotypic diversity. Qinlingacris elaeodes is a species of the alpine grasshopper, which is endemic to China. Adult individuals have three wing forms: wingless, unilateral-winged and short-winged. This is an ideal species to investigate the phenotypic plasticity, development and evolution of insect wings because of its case of unilateral wing form in both the sexes. We sequenced a small RNA library prepared from mesothoraxes of the adult grasshoppers using the Illumina deep sequencing technology. Approximately 12,792,458 raw reads were generated, of which the 854,580 high-quality reads were used only for miRNA identification. In this study, we identified 49 conserved miRNAs belonging to 41 families and 69 species-specific miRNAs. Moreover, seven miRNA*s were detected both for conserved miRNAs and species-specific miRNAs, which were supported by hairpin forming precursors based on polymerase chain reaction. This is the first description of miRNAs in alpine grasshoppers. The results provide a useful resource for further studies on molecular regulation and evolution of miRNAs in grasshoppers. These findings not only enrich the miRNAs for insects but also lay the groundwork for the study of post-transcriptional regulation of wing forms.
机译:MicroRNA(miRNA)现在被认为是调节表型多样性的关键转录后调节因子。秦岭ac是中国特有的高山蝗虫的一种。成年个体有三种翅形:无翅,单翅和短翅。这是研究昆虫翅膀表型可塑性,发育和进化的理想物种,因为它在两性中都具有单侧翅膀形式。我们使用Illumina深度测序技术对从成年蚱me的间胸腔制备的小RNA文库进行了测序。产生了大约12,792,458个原始读数,其中854,580个高质量读数仅用于miRNA鉴定。在这项研究中,我们确定了41个家族的49个保守miRNA和69个物种特异性的miRNA。此外,对于保守的miRNA和物种特异性的miRNA,均检测到7个miRNA *,这些均由基于聚合酶链反应的发夹形成前体支持。这是高山蝗虫中miRNA的首次描述。该结果为进一步研究蝗虫中miRNA的分子调控和进化提供了有用的资源。这些发现不仅丰富了昆虫的miRNA,而且为研究翼型的转录后调控奠定了基础。

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