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A Combined Approach of High-Throughput Sequencing and Degradome Analysis Reveals Tissue Specific Expression of MicroRNAs and Their Targets in Cucumber

机译:高通量测序和降解组分析的组合方法揭示了黄瓜中microRNA及其靶标的组织特异性表达

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摘要

MicroRNAs (miRNAs) are endogenous small RNAs playing an important regulatory function in plant development and stress responses. Among them, some are evolutionally conserved in plant and others are only expressed in certain species, tissue or developmental stages. Cucumber is among the most important greenhouse species in the world, but only a limited number of miRNAs from cucumber have been identified and the experimental validation of the related miRNA targets is still lacking. In this study, two independent small RNA libraries from cucumber leaves and roots were constructed, respectively, and sequenced with the high-throughput Illumina Solexa system. Based on sequence similarity and hairpin structure prediction, a total of 29 known miRNA families and 2 novel miRNA families containing a total of 64 miRNA were identified. QRT-PCR analysis revealed that some of the cucumber miRNAs were preferentially expressed in certain tissues. With the recently developed ‘high throughput degradome sequencing’ approach, 21 target mRNAs of known miRNAs were identified for the first time in cucumber. These targets were associated with development, reactive oxygen species scavenging, signaling transduction and transcriptional regulation. Our study provides an overview of miRNA expression profile and interaction between miRNA and target, which will help further understanding of the important roles of miRNAs in cucumber plants.
机译:微小RNA(miRNA)是内源性小RNA,在植物发育和胁迫响应中起着重要的调节作用。其中,有些在植物中进化保守,而另一些仅在某些物种,组织或发育阶段表达。黄瓜是世界上最重要的温室物种之一,但是从黄瓜中鉴定出的miRNA数量有限,而相关miRNA靶标的实验验证仍然缺乏。在这项研究中,分别从黄瓜叶和根中构建了两个独立的小RNA库,并使用高通量Illumina Solexa系统进行了测序。基于序列相似性和发夹结构预测,共鉴定了29个已知的miRNA家族和2个包含总共64个miRNA的新miRNA家族。 QRT-PCR分析表明,某些黄瓜miRNA在某些组织中优先表达。通过最近开发的“高通量降解组测序”方法,首次在黄瓜中鉴定出了已知miRNA的21种靶标mRNA。这些靶标与发育,活性氧清除,信号转导和转录调控有关。我们的研究概述了miRNA的表达概况以及miRNA与靶标之间的相互作用,这将有助于进一步了解miRNA在黄瓜植株中的重要作用。

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