长尾鸡组织中基因表达研究的内参选择

Yunjeong Noh, Woncheoul Park, Han-Ha Chai, D. Lim
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引用次数: 0

摘要

实时定量聚合酶链反应(RTqPCR)是一种快速、精确的定量分析基因表达水平的方法,广泛应用于疾病的诊断和基因的定量分析。在RT-qPCR分析中,使用内参基因(或管家基因)对实验结果进行归一化。由于该分析方法检测到的产物数量少,因此灵敏度高,选择适合基因表达研究的内参基因对实验的准确性和再现性至关重要。由于内参基因在不同条件下的表达水平受到影响,为了确定内参基因作为内参基因的适宜性,有必要对其表达稳定性进行验证。本研究研究了11个管家基因(B2M、SDHA、GAPDH、RPL13、VIM、EEF1A1、HPRT1、GUSB、RPL19、ACTB和ABL1)在长尾鸡(心脏、大腿和乳房)组织中的表达稳定性。使用BestKeeper、NormFinder、geNorm、RefFinder四款软件分析表达稳定性评价。在我们的研究中,我们选择了心脏组织中的GAPDH、大腿组织中的HPRT1和乳房组织中的RPL13作为最稳定的内参基因。根据不同的条件选择合适的内参基因,评价内参基因的表达稳定性,可以为基因表达研究提供重要的数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reference gene selection for gene expression study in tissues of long-tailed chickens
Quantitative real-time polymerase chain reaction (RTqPCR) is a rapid and precise method of analysis to quantify the level of gene expression and is widely used in the diagnosis of diseases and quantitative analysis of genes. In RT-qPCR analysis, a reference gene (or housekeeping gene) is used for normalization of experimental results. Since this method of analysis detects a small quantity of the product, it is highly sensitive and it is important for the accuracy and reproducibility of the experiment to select a reference gene suitable for gene expression studies. As the expression levels of the reference gene are affected under different conditions, in order to determine the suitability of the housekeeping gene used as the reference gene, it is necessary to verify the expression stability. In the current study, the stability of the expression of 11 housekeeping genes (B2M, SDHA, GAPDH, RPL13, VIM, EEF1A1, HPRT1, GUSB, RPL19, ACTB, and ABL1) was investigated in the tissues of long-tailed chickens (heart, thigh, and breast). Expression stability evaluation was analyzed with four software: BestKeeper, NormFinder, geNorm, and RefFinder. In our study, GAPDH in heart tissue, HPRT1 in thigh tissue, and RPL13 in breast tissue were selected as the most stable reference genes. Evaluation of the expression stability of housekeeping genes can provide important data in gene expression studies by selecting an appropriate reference gene according to various conditions.
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