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首页> 外文期刊>Molecular Breeding >Validation of candidate reference genes in RT-qPCR studies of developing olive fruit and expression analysis of four genes involved in fatty acids metabolism.
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Validation of candidate reference genes in RT-qPCR studies of developing olive fruit and expression analysis of four genes involved in fatty acids metabolism.

机译:在开发橄榄果实的RT-qPCR研究中验证候选参考基因,并对参与脂肪酸代谢的四个基因进行表达分析。

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摘要

Olive (Olea europaea L.) is an evergreen Mediterranean oil fruit tree with great economic, cultural and historical importance. For accurate gene expression studies of specific genes, reverse transcriptase-quantitative polymerase chain reaction (RT-qPCR) is often the method of choice, using suitable reference genes (RGs). This study identified RGs for RT-qPCR studies of developing olive fruit from 29 RG candidates. We used 12 sampling points to cover the five stages of olive fruit development. According to the results of the geNorm algorithm, the two best RGs were TIP41-like family protein (TIP41) and TATA binding protein (TBP), while several classical RGs proved not to be suitable. Using the two new RGs, four genes involved in the metabolism of fatty acids were studied and showed distinct expression patterns associated with mesocarp development and ripening stages. In addition to identifying two RGs for future analysis of gene expression in olive fruit, our results also provide a list of potential RGs that can be easily tested in other studies of olive gene expression in different developmental stages or in biologically challenged olive tissues. The results are also valuable for future research on genes that influence the synthesis and accumulation of olive fruit metabolites.
机译:橄榄(Olea europaea L.)是一种常绿的地中海油果树,具有重要的经济,文化和历史意义。为了对特定基因进行准确的基因表达研究,逆转录酶定量聚合酶链反应(RT-qPCR)通常是使用合适的参考基因(RGs)的选择方法。这项研究确定了RGs,用于从29个RG候选物中开发橄榄果实的RT-qPCR研究。我们使用了12个采样点来涵盖橄榄果实发育的五个阶段。根据geNorm算法的结果,两个最佳RGs是TIP41样家族蛋白(TIP41)和TATA结合蛋白(TBP),而几种经典RGs都不适合。使用两个新的RG,研究了与脂肪酸代谢有关的四个基因,它们显示了与中果皮发育和成熟阶段相关的独特表达模式。除了确定两个RGs以便将来分析橄榄果中的基因表达外,我们的结果还提供了可能的RGs列表,这些RGs可以在不同发育阶段或受到生物学挑战的橄榄组织中的其他橄榄基因表达研究中轻松测试。该结果对于将来影响橄榄果代谢产物合成和积累的基因的研究也很有价值。

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