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Validation of Reference Genes for Quantitative Real-Time PCR during Bicolor Tepal Development in Asiatic Hybrid Lilies (Lilium spp.)

机译:亚洲杂交百合(百合属)双色Tepal发育过程中定量实时PCR参考基因的验证

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摘要

Quantitative real-time PCR (qRT-PCR) is a reliable and high-throughput technique for gene expression studies, but its accuracy depends on the expression stability of reference genes. To date, several reliable reference gene identifications have been reported in Lilium spp., but none has been obtained for lily tepals at different developmental stages. In this study, ten candidate reference genes were selected and evaluated for their expression stability in Lilium ‘Tiny Padhye’ during the process of bicolor tepal development. The expression stability of these candidates was evaluated by three software programs (geNorm, NormFinder, and BestKeeper) and the comparative ΔCt method, and comprehensive stability rankings were generated by RefFinder. As a result, TIP41-like family gene (TIP41) and actin (ACT) were the best combination of reference genes for tepals at different developmental stages; TIP41 and F-box family gene (F-box) for tepals under shading treatment; ACT, actin11 (ACT11), and elongation factor 1-α (EF1-α) for different tissues; and ACT, TIP41, and ACT11 for all samples. The selected optimal reference genes were further verified by analyzing the expression levels of flavonoid 3′-hydroxylase (LhF3′H) and anthocyanidin 3-O-glucosyltransfersae (LhUFGT) in tepals at different developmental stages. This study provides useful information for gene expression characterization in lilies under different experimental conditions, and can serve as a basis for similar research in other closely related species.
机译:实时定量PCR(qRT-PCR)是用于基因表达研究的可靠且高通量的技术,但其准确性取决于参考基因的表达稳定性。迄今为止,在百合属植物中已经报道了几种可靠的参考基因鉴定,但是在不同的发育阶段,没有得到关于百合花被的信息。在这项研究中,选择了十个候选参考基因,并评估了它们在双色花被发育过程中在“ Tiny Padhye”百合中的表达稳定性。通过三个软件程序(geNorm,NormFinder和BestKeeper)和比较ΔCt方法评估了这些候选蛋白的表达稳定性,并通过RefFinder生成了综合稳定性等级。结果,类似TIP41的家族基因(TIP41)和肌动蛋白(ACT)是不同发育阶段的tepals参考基因的最佳组合。 TIP41和F-box家族基因(F-box)用于遮荫处理的花蜜;不同组织的ACT,actin11(ACT11)和延伸因子1-α(EF1-α);以及所有样本的ACT,TIP41和ACT11。通过分析不同发育阶段果皮中类黄酮3'-羟化酶(LhF3'H)和花青素3-O-葡萄糖基转移酶(LhUFGT)的表达水平,进一步验证了所选的最佳参考基因。该研究为不同实验条件下百合的基因表达表征提供了有用的信息,并可作为其他密切相关物种的相似研究的基础。

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