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首页> 外文期刊>Frontiers in Plant Science >Selection and Validation of Appropriate Reference Genes for Quantitative Real-Time PCR Normalization in Staminate and Perfect Flowers of Andromonoecious Taihangia rupestris
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Selection and Validation of Appropriate Reference Genes for Quantitative Real-Time PCR Normalization in Staminate and Perfect Flowers of Andromonoecious Taihangia rupestris

机译:雄雄同株的雄蕊和完美花的实时荧光定量PCR标准化参考基因的选择和验证

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摘要

Quantitative real-time reverse transcription-polymerase chain reaction (qRT-PCR) is the most commonly used and powerful method for gene expression analysis due to its high sensitivity, specificity, and high throughput, and the accuracy of this approach depends on the stability of reference genes used for normalization. Taihangia rupestris Yu and Li (Rosaceae), an andromonoecious plant, produces both bisexual flowers and unisexual male flowers within the same individual. Using qRT-PCR technique, investigation of the gene expression profiling in staminate and perfect flowers would improve our understanding of the molecular mechanism in regulation of flower formation and sex differentiation in andromonoecious T. rupestris . To accurate normalize the gene expression level in Taihangia flower, 16 candidate reference genes, including 10 traditional housekeeping genes, and 6 newly stable genes, were selected based on transcriptome sequence data and previous studies. The expressions of these genes were assessed by qRT-PCR analysis in 51 samples, including 30 staminate and perfect flower samples across developmental stages and 21 different floral tissue samples from mature flowers. By using geNorm, NormFinder, BestKeeper, and comprehensive RefFinder algorithms, ADF3 combined with UFD1 were identified as the optimal reference genes for staminate flowers, while the combination of HIS3/ADF3 was the most accurate reference genes for perfect floral samples. For floral tissues, HIS3, UFD1 , and TMP50 were the most suitable reference genes. Furthermore, two target genes, TruPI , and TruFBP24 , involved in floral organ identity were selected to validate the most and least stable reference genes in staminate flowers, perfect flowers, and different floral tissues, indicating that the use of inappropriate reference genes for normalization will lead to the adverse results. The reference genes identified in this study will improve the accuracy of qRT-PCR quantification of target gene expression in andromonoecious T. rupestris flowers, and will facilitate the functional genomics studies on flower development and sex differentiation in the future.
机译:实时定量逆转录聚合酶链反应(qRT-PCR)由于其高灵敏度,特异性和高通量而成为基因表达分析中最常用和最有效的方法,这种方法的准确性取决于其稳定性。用于标准化的参考基因。桃花心木(Taonghanga rupestris Yu and Li)(蔷薇科)是一种雄性单性植物,在同一个体中同时产生双性花和单性雄花。使用qRT-PCR技术研究雄蕊和完美花中雄花和雌花的基因表达谱将增进我们对调节花形成和性别分化的分子机制的了解。为了准确地标准化大黄菊花中的基因表达水平,基于转录组序列数据和先前的研究,选择了16个候选参考基因,包括10个传统管家基因和6个新的稳定基因。通过qRT-PCR分析评估了51个样品中这些基因的表达,其中包括30个发育阶段的稳定和完美花样品以及21个成熟花的不同花组织样品。通过使用geNorm,NormFinder,BestKeeper和全面的RefFinder算法,将ADF3与UFD1组合确定为花的最佳参考基因,而HIS3 / ADF3的组合则是用于完美花卉样品的最准确的参考基因。对于花卉组织,HIS3,UFD1和TMP50是最合适的参考基因。此外,选择了两个涉及花器官识别的靶基因TruPI和TruFBP24来验证稳定花,完美花和不同花组织中最稳定和最不稳定的参考基因,这表明使用不合适的参考基因进行标准化将导致不良后果。在这项研究中鉴定的参考基因将提高雄激素天竺葵花中靶基因表达的qRT-PCR定量准确性,并将有助于将来进行花发育和性别分化的功能基因组学研究。

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