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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >The quantification of tomato microRNAs response to viral infection by stem-loop real-time RT-PCR.
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The quantification of tomato microRNAs response to viral infection by stem-loop real-time RT-PCR.

机译:通过茎环实时RT-PCR定量分析番茄microRNA对病毒感染的反应。

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摘要

MicroRNAs (miRNAs) are RNA molecules consisting of 20-24 nucleotides that play important roles in regulating plant's gene expression for growth and development, cell viability and stress responses. Viral infection often has a noticeable influence on host gene expression, which may result in a range of developmental abnormalities. To investigate the molecular mechanisms underlying viral infection, miRNA pathway and host gene expression, we report herein the application of the novel miRNAs quantification method in tomato, using a stem-loop reverse transcription followed by SYBR Green PCR assay. For the seven tested miRNAs of Solanum lycopersicum, which are related to the regulation of plant development, hormone response, and their own biogenesis, this quantification method showed high sensitivity, specificity, and wide dynamic range. Precise quantification could be achieved with as little as 0.01 ng of total RNAs for most cases. Additionally, their target mRNAs could be quantified from the same RNA sample simultaneously, by the conventional real-time RT-PCR assay. In comparison with mock inoculation, accumulation levels of the tested miRNAs and target mRNAs were found obviously altered in tomato seedlings, indicating that the miRNA pathway was interrupted by Cucumber mosaic virus and Tomato aspermy virus infection.
机译:微小RNA(miRNA)是由20-24个核苷酸组成的RNA分子,它们在调节植物的基因表达以促进生长和发育,细胞活力和胁迫反应中发挥重要作用。病毒感染通常会对宿主基因表达产生明显影响,这可能会导致一系列发育异常。为了研究潜在的病毒感染,miRNA途径和宿主基因表达的分子机制,我们在此报告了新颖的miRNA定量方法在番茄中的应用,使用茎环逆转录,然后进行SYBR Green PCR分析。对于与植物发育,激素反应及其自身生物发生的调节有关的七个测试的茄果miRNA,该定量方法显示出高灵敏度,特异性和宽动态范围。在大多数情况下,仅用0.01 ng的总RNA即可实现精确定量。此外,可以通过常规实时RT-PCR分析同时从同一RNA样品中定量其靶mRNA。与模拟接种相比,番茄幼苗中被测miRNA和靶mRNA的积累水平明显改变,表明miRNA途径被黄瓜花叶病毒和番茄曲霉病毒感染所打断。

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