Department of Biology, East Carolina University, Greenville, NC, 27858, USA.
Guangxi University of Finance and Economics, Nanning, 530031, Guangxi, China.
Funct Integr Genomics. 2023 Apr 15;23(2):125. doi: 10.1007/s10142-023-01055-7.
Although many genes may serve as reference genes, they may cause different expression patterns by selecting different reference genes because no single gene is expressed consistently in all tested tissues of an organism under all environmental and developmental conditions. Thus, it is becoming increasingly important and necessary to identify suitable reference genes before performing gene expression analysis. Currently, there are several computational tools available for evaluating the stability of candidate reference genes. These tools are based on different statistical algorithms and may produce different rankings in stability within the same reference gene study. To date, the RefFinder is the only web-based tool available for comparing and evaluating housekeeping genes as candidates to be reference genes. In this tool, we integrated the four currently available computational programs (geNorm, NormFinder, BestKeeper, and the comparative ΔCt method) into a web-based tool for evaluating the stability and reliability of reference genes. According to the gene stability rankings derived from the four programs, we assigned an appropriate weight to each gene and calculated the geometric mean of weights for the final rankings. Aside from the overall ranking, a single program or combination of the four programs can be selected for evaluating the ranking of candidate reference genes. This tool has been widely used and validated by many research laboratories around the world. You may use this tool at http://www.heartcure.com.au/reffinder/ or https://blooge.cn/RefFinder/ . You can also download this algorithm program from https://github.com/fulxie/RefFinder and setup on your own computer. RefFinder is developed by PHP. Users can deploy it to a Php-based server (Apache + PHP) and run it.
尽管许多基因可以作为参考基因,但由于没有单个基因在生物体的所有测试组织中在所有环境和发育条件下都始终表达,因此选择不同的参考基因可能会导致不同的表达模式。因此,在进行基因表达分析之前,确定合适的参考基因变得越来越重要和必要。目前,有几种计算工具可用于评估候选参考基因的稳定性。这些工具基于不同的统计算法,在同一参考基因研究中可能会产生不同的稳定性排名。迄今为止,RefFinder 是唯一可用于比较和评估管家基因作为候选参考基因的基于网络的工具。在该工具中,我们将目前可用的四个计算程序(geNorm、NormFinder、BestKeeper 和比较 ΔCt 方法)集成到一个基于网络的工具中,用于评估参考基因的稳定性和可靠性。根据四个程序得出的基因稳定性排名,我们为每个基因分配一个适当的权重,并计算最终排名的权重几何平均值。除了总体排名外,还可以选择单个程序或四个程序的组合来评估候选参考基因的排名。该工具已被世界各地的许多研究实验室广泛使用和验证。您可以在 http://www.heartcure.com.au/reffinder/ 或 https://blooge.cn/RefFinder/ 上使用此工具。您也可以从 https://github.com/fulxie/RefFinder 下载此算法程序并在自己的计算机上进行设置。RefFinder 是用 PHP 开发的。用户可以将其部署到基于 Php 的服务器(Apache + PHP)并运行它。