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用于选择稳定参考基因以进行银尖脂鲤精确基因表达定量分析的数据集:对性别分化和决定的影响

Dataset for selection of stable reference genes for accurate quantitative gene expression analysis in silvertip tetra (): Implications for sex differentiation and determination.

作者信息

Lee Hwa Jin, Kim Ki Tae, Kim Min Sun, Lee Sang Yoon

机构信息

CellQua, Inc, Seongnam 13595, South Korea.

Department of Biological Sciences, Kongju National University, Gongju 32588, South Korea.

出版信息

Data Brief. 2024 Feb 20;53:110221. doi: 10.1016/j.dib.2024.110221. eCollection 2024 Apr.

Abstract

Real-time quantitative PCR (RT-qPCR) is a widely used method for accurate quantitative gene expression analysis. For accurate quantitative verification of RT-qPCR, it is essential to select a reference gene with high expression stability depending on the experimental environment or the different tissues. In this study, we evaluated the stability of nine candidate reference genes, labeled elongation factor 1-alpha (EF1A), ERBB receptor feedback inhibitor 1-like isoform x2 (ERRFI), glyceraldehyde-3-phosphate dehydrogenase (GAPDH), integrin beta2 like (ITGB2), phosphatidylinositol-binding clathrin assembly protein-like isoform x3 (PICALM), 60 s ribosomal protein L5 (RPL5), 60 s ribosomal protein L7 (RPL7), tubulin beta chain (TUBB), and ubiquitin-conjugating enzyme E2A (UBE2A), in the brain (including pituitary gland) gonads and caudal fins of silvertip tetra () males and females. The stability evaluation of the reference gene was analyzed using a program based on the geNorm, NormFinder, BestKeeper, and RankAggreg algorithms. As a result, RPL5 (brain, caudal fin), EF1A (gonad), and PICALM (three tissue types) genes were evaluated as the most stable genes in silvertip tetra females. In males, TUBB (brain, caudal fin) and ITGB2 (gonads, three tissue types) genes were the most stable, and in both sexes, TUBB (brain), ITGB2 (caudal fin), RPL5 (gonads), and PICALM (three tissue types) genes are considered appropriate as reference genes for qRT-PCR analysis. However, the GAPDH gene was judged to be inappropriate for use as a reference gene because gene stability in the brain, caudal fin, and gonads was evaluated to be low in all males and females. As an introductory study on silvertip tetra, a new research model fish, the results of this study are expected to provide helpful information regarding sex differentiation and determination in fish.

摘要

实时定量聚合酶链反应(RT-qPCR)是一种广泛应用于准确进行基因表达定量分析的方法。为了对RT-qPCR进行准确的定量验证,根据实验环境或不同组织选择具有高表达稳定性的内参基因至关重要。在本研究中,我们评估了9个候选内参基因的稳定性,它们分别是延伸因子1-α(EF1A)、ERBB受体反馈抑制剂1样亚型x2(ERRFI)、甘油醛-3-磷酸脱氢酶(GAPDH)、整合素β2样(ITGB2)、磷脂酰肌醇结合网格蛋白组装蛋白样亚型x3(PICALM)、60S核糖体蛋白L5(RPL5)、60S核糖体蛋白L7(RPL7)、微管蛋白β链(TUBB)和泛素结合酶E2A(UBE2A),评估对象为银尖脂鲤()雄性和雌性的脑(包括垂体)、性腺和尾鳍。使用基于geNorm、NormFinder、BestKeeper和RankAggreg算法的程序分析内参基因的稳定性评估结果。结果表明,RPL5(脑、尾鳍)、EF1A(性腺)和PICALM(三种组织类型)基因被评估为银尖脂鲤雌性中最稳定的基因。在雄性中,TUBB(脑、尾鳍)和ITGB2(性腺、三种组织类型)基因最稳定,在两性中,TUBB(脑)、ITGB2(尾鳍)、RPL5(性腺)和PICALM(三种组织类型)基因被认为适合作为qRT-PCR分析的内参基因。然而,GAPDH基因被判定不适合用作内参基因,因为在所有雄性和雌性中,其在脑、尾鳍和性腺中的基因稳定性都被评估为较低。作为对新的研究模式鱼类银尖脂鲤的一项初步研究,本研究结果有望为鱼类性别分化和性别决定提供有用信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8796/10904181/3ca7c2ebf62a/gr1.jpg

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