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Evaluation of putative internal reference genes for gene expression normalization in Nannochloropsis sp. by quantitative real-time RT-PCR

机译:评价拟南芥内参基因的基因表达归一化。通过实时定量RT-PCR

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摘要

Quantitative real-time reverse transcription PCR (RT-qPCR), a sensitive technique for quantifying gene expression, depends on the stability of the reference gene(s) used for data normalization. To date, few studies on reference genes have been undertaken for Nannochloropsis sp. In this study, 12 potential reference genes were evaluated for their expression stability using the geNorm and NormFinder statistical algorithms by RT-qPCR. The results showed that the best reference genes differed depending on the treatments: different light intensities (DL), the diurnal cycle (DC), high light intensity (HL) and low temperature treatments (LT). A combination of ACT1, ACT2 and TUA would be appropriate as a reference panel for normalizing gene expression data across all the treatments. ACT2 showed the most stable expression across all tested samples but was not the most stable one for individual treatments. Though 18S showed the least stable expression considering all tested samples, it is the most stable one for LT using geNorm. The expression of Lhc confirmed that the appropriate reference genes are crucial. These results provide a foundation for more accurate use of RT-qPCR under different experimental conditions in Nannochloropsis sp. gene analysis.
机译:实时定量逆转录PCR(RT-qPCR)是一种用于量化基因表达的灵敏技术,取决于用于数据标准化的参考基因的稳定性。迄今为止,关于拟南芥属的参考基因的研究很少。在这项研究中,通过rt-qPCR使用geNorm和NormFinder统计算法评估了12个潜在参考基因的表达稳定性。结果表明,最佳参考基因随处理方式的不同而不同:不同的光照强度(DL),昼夜周期(DC),高光照强度(HL)和低温处理(LT)。 ACT1,ACT2和TUA的组合将适合作为在所有治疗中标准化基因表达数据的参考面板。 ACT2在所有测试样品中均显示最稳定的表达,但对于单个处理而言却不是最稳定的表达。尽管考虑到所有测试样品,18S表现出最不稳定的表达,但对于使用geNorm的LT,它是最稳定的表达。 Lhc的表达证实适当的参考基因至关重要。这些结果为在Nannochloropsis sp。中不同实验条件下更准确地使用RT-qPCR提供了基础。基因分析。

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