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WellInverter:用于分析荧光报告基因数据的网络应用程序。

WellInverter: a web application for the analysis of fluorescent reporter gene data.

机构信息

Univ. Grenoble Alpes, Inria, Grenoble, 38000, France.

Univ. Grenoble Alpes, Grenoble IAE, Grenoble, 38000, France.

出版信息

BMC Bioinformatics. 2019 Jun 11;20(1):309. doi: 10.1186/s12859-019-2920-4.

Abstract

BACKGROUND

Fluorescent reporter genes have become widely used for monitoring gene expression in living cells. When a microbial strain carrying a reporter gene is grown in a microplate reader, the fluorescence and the absorbance (optical density) of the culture can be automatically measured every few minutes in a highly parallelized way. The extraction of useful information from the resulting large amounts of data is not easy to achieve, because the fluorescence and absorbance measurements are only indirectly related to promoter activities and protein concentrations, requiring mathematical models of the expression of reporter genes for their interpretation. Although the principles of the analysis of reporter gene data are well-established today, there is a lack of general-purpose bioinformatics tools based on generic measurement models and sound inference procedures. This has motivated the development of WellInverter, a web application based on well-known methods for regularized linear inversion.

RESULTS

We present a new version of WellInverter that considerably improves the performance and usability of the original application. In particular, we have put in place a parallel computing architecture with a load balancer to distribute analysis queries over several back-end servers, we have completely redesigned the graphical user interface to better support the different analysis steps, and we have developed a plug-in system for the parsing of data files produced by microplate readers from different manufacturers. We illustrate the functioning of WellInverter by analyzing data of the expression of a fluorescent reporter gene controlled by a phage promoter in growing Escherichia coli populations. We show that the expression pattern in different growth media, supporting different growth rates, corresponds to the pattern expected for a constitutive gene.

CONCLUSIONS

The new version of WellInverter is a robust, easy-to-use and scalable web application, which has been deployed on two publicly accessible web servers and which can also be installed locally. A demo version of the application with two sample datasets is available on-line.

摘要

背景

荧光报告基因已广泛用于监测活细胞中的基因表达。当携带报告基因的微生物菌株在微孔板读数器中生长时,可以以高度并行的方式每隔几分钟自动测量培养物的荧光和吸光度(光密度)。从由此产生的大量数据中提取有用信息并不容易,因为荧光和吸光度测量仅与启动子活性和蛋白质浓度间接相关,需要对报告基因的表达进行数学建模才能进行解释。尽管目前已经确立了分析报告基因数据的原理,但缺乏基于通用测量模型和合理推理程序的通用生物信息学工具。这促使我们开发了 WellInverter,这是一个基于正则化线性反演的知名方法的 Web 应用程序。

结果

我们展示了一个新版本的 WellInverter,该版本大大提高了原始应用程序的性能和可用性。特别是,我们已经建立了一个带有负载均衡器的并行计算架构,用于将分析查询分配到多个后端服务器上,我们还完全重新设计了图形用户界面,以更好地支持不同的分析步骤,并且我们开发了一个插件系统用于解析来自不同制造商的微孔板读数器生成的数据文件。我们通过分析受噬菌体启动子控制的荧光报告基因在生长中的大肠杆菌群体中的表达数据来演示 WellInverter 的功能。我们表明,在不同生长培养基中支持不同生长速率的表达模式与组成型基因的预期模式相对应。

结论

新版本的 WellInverter 是一个强大、易于使用且可扩展的 Web 应用程序,已经部署在两个公共可访问的 Web 服务器上,也可以在本地安装。该应用程序的演示版本和两个示例数据集可在线获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1564/6558888/accd60e39c38/12859_2019_2920_Fig1_HTML.jpg

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