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Investigation on the expression stability of common reference genes in Aurelia sp.1 under hypoxia

机译:缺氧下Aurelia SP.1常见参考基因表达稳定性研究

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RT-qPCR (Quantitative real-time polymerase chain reaction) is a reliable molecular biology technique used for gene expression detection due to its high sensibility and good reproducibility. However, suitable reference genes for RT-qPCR are often not available to investigate the expression of target genes in jellyfish under different conditions. To determine the responsible genes of jellyfish under hypoxia, primers to amplify the actin gene was designed for the amplification according to the conserved actin amino acid sequences of cnidarian. Then, we cloned and sequenced the partial cDNA sequence of beta-actin gene containing 849 bp nucleic acids was cloned and sequenced, and the four common housekeeping genes (18S rRNA, beta-actin, alpha-tubulin and GAPDH) were detected. To obtain suitable reference genes, we compared the four genes under normoxia and hypoxia were determined and compared using RT-qPCR. The evaluation result shows that a-tubulin gene can be used as single reference gene, and alpha-tubulin and beta-actin can be served as multiple reference genes to study relative gene expression related to hypoxic tolerance of Aurelia sp. 1. This research will establish foundation to reveal the molecular mechanism of jellyfish under hypoxia.
机译:RT-QPCR(定量实时聚合酶链反应)是一种可靠的分子生物学技术,用于基因表达检测由于其高敏感性和良好的再现性。然而,用于RT-QPCR的合适的参考基因通常无法在不同条件下研究水母中靶基因的表达。为了确定缺氧下的水母的负责任基因,设计用于扩增肌动蛋白基因的引物,用于根据Cnidarian的保守的肌动蛋白氨基酸序列进行扩增。然后,我们克隆并测序含有849bp核酸的β-肌动蛋白基因的部分cDNA序列被克隆和测序,并且检测到四种常见的内务碱(18s rRNA,β-肌动蛋白,α-微管蛋白和GAPDH)。为了获得合适的参考基因,我们比较了常氧和缺氧下的四种基因并使用RT-QPCR进行比较。评估结果表明,α-微管蛋白基因可以用作单一参考基因,并且可以用作多种参考基因,以研究与Aurelia sp的缺氧耐受相关的相对基因表达。本研究将建立基础,揭示缺氧下水母的分子机制。

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