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首页> 外文期刊>Journal of Applied Phycology >Normalization genes for mRNA expression in the marine diatom Ditylum brightwellii following exposure to thermal and toxic chemical stresses
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Normalization genes for mRNA expression in the marine diatom Ditylum brightwellii following exposure to thermal and toxic chemical stresses

机译:暴露于热和有毒化学胁迫后海洋硅藻Ditylum Brightwellii中mRNA表达的标准化基因

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摘要

Toxicity assessments using the diatom Ditylum brightwellii are well documented; however, analysis of their toxicogenomics has been little attempted. Currently, quantitative real-time PCR is the most accurate and widely applied method to detect differential gene expression, including that of specific genes induced by environmental contaminants. This method requires internal reference genes to normalize expression levels, and their selection is a critical factor for the correct analysis of the results. Here, we assessed the gene expression stability of nine housekeeping genes (HKGs), including 18S rRNA, ACT, TUA, EF2, MDH, UBQ, UCE, PCNA, and GAPDH, in 28 RNA samples of D. brightwellii. All the tested HKGs displayed different expression patterns under different experimental conditions such as heat shock and exposure to metals and non-metals. Analysis of C (T) values showed that at least two genes were required for proper normalization according to the tested conditions. Overall, TUA, followed by ACT, was the most stable gene under all conditions. Furthermore, we examined the expression of the HSP70 gene in D. brightwellii when exposed to heat shock and chemicals by using the most stable references and found that the gene was significantly up-regulated during the stress period. This study has evaluated, for the first time, the normalization genes in D. brightwellii, providing potential references for gene expression studies of diatoms.
机译:使用硅藻Ditylum Brightwellii进行的毒性评估已得到充分记录。然而,很少尝试对其毒物基因组学进行分析。当前,定量实时PCR是检测差异基因表达(包括环境污染物诱导的特定基因的差异表达)的最准确,应用最广泛的方法。此方法需要内部参考基因来标准化表达水平,其选择是正确分析结果的关键因素。在这里,我们评估了D. Brightwellii的28个RNA样品中9个管家基因(HKG)的基因表达稳定性,其中包括18S rRNA,ACT,TUA,EF2,MDH,UBQ,UCE,PCNA和GAPDH。所有测试的HKG在不同的实验条件下都表现出不同的表达模式,例如热冲击以及暴露于金属和非金属。 C(T)值分析表明,根据测试条件,至少需要两个基因才能正确进行标准化。总体而言,在所有条件下,TUA紧随其后是ACT,是最稳定的基因。此外,我们通过使用最稳定的参考资料检查了D. Brightwellii中HSP70基因在暴露于热激和化学作用时的表达,发现该基因在胁迫期间显着上调。这项研究首次评估了D. Brightwellii中的归一化基因,为硅藻的基因表达研究提供了潜在的参考。

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