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Reference Gene Selection for Gene Expression Studies Using Quantitative Real-Time PCR Normalization in Atropa belladonna

机译:使用定量实时PCR归一化颠茄进行基因表达研究的参考基因选择

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摘要

Quantitative PCR (qPCR) is a powerful tool for measuring gene expression levels. Accurate and reproducible results are dependent on the correct choice of reference genes for data normalization. Atropa belladonna is a commercial plant species from which pharmaceutical tropane alkaloids are extracted. In this study, eight candidate reference genes, namely 18S ribosomal RNA (18S), actin (ACT), cyclophilin (CYC), elongation factor 1 alpha (EF-1 alpha), beta-fructosidase (FRU), glyceraldehyde-3-phosphate dehydrogenase (GAPDH), phosphoglycerate kinase (PGK), and beta-tubulin (TUB), were selected and their expression stabilities studied to determine their suitability for normalizing gene expression in A. belladonna. The expression stabilities of these genes were analyzed in the root, stem, and leaf under cold, heat, NaCl, UV-B, methyl jasmonate, salicylic acid, and abscisic acid treatments using geNorm, NormFinder, and BestKeeper. The statistical algorithms indicated that PGK was a reliable gene for normalizing gene expression under most of the experimental conditions. The pairwise value analysis showed that two genes were sufficient for proper expression normalization, except when analyzing gene expression in heat-treated roots. However, the choice of the second reference gene depended on specific conditions. Finally, the relative expression level of the PMT gene of A. belladonna was detected to validate the selection of PGK a reliable reference gene. In summary, our results should guide the selection of appropriate reference genes for gene expression studies in A. belladonna under different organs and abiotic stress conditions
机译:定量PCR(qPCR)是测量基因表达水平的强大工具。准确和可重复的结果取决于参考基因的正确选择以进行数据归一化。颠茄颠茄(Atropa belladonna)是一种商业植物,可从其中提取药用托烷生物碱。在这项研究中,八个候选参考基因,即18S核糖体RNA(18S),肌动蛋白(ACT),亲环蛋白(CYC),延伸因子1α(EF-1 alpha),β果糖苷酶(FRU),甘油三磷酸酯选择脱氢酶(GAPDH),磷酸甘油酸激酶(PGK)和β-微管蛋白(TUB),并研究它们的表达稳定性,以确定它们在颠茄中使基因表达正常化的适用性。使用geNorm,NormFinder和BestKeeper在冷,热,NaCl,UV-B,茉莉酸甲酯,水杨酸和脱落酸处理下,分析了这些基因在根,茎和叶中的表达稳定性。统计算法表明,PGK是在大多数实验条件下用于标准化基因表达的可靠基因。成对值分析表明,除了分析热处理根中的基因表达外,两个基因足以实现适当的表达标准化。但是,第二参考基因的选择取决于特定条件。最后,检测颠茄曲霉PMT基因的相对表达水平,以验证PGK是可靠的参考基因的选择。总之,我们的结果应指导在不同器官和非生物胁迫条件下颠茄的基因表达研究中选择合适的参考基因。

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