Transomics2cytoscape:可解释的跨组学网络 2.5 维可视化自动软件

IF 3.5 2区 生物学 Q1 MATHEMATICAL & COMPUTATIONAL BIOLOGY
Kozo Nishida, Junichi Maruyama, Kazunari Kaizu, Koichi Takahashi, Katsuyuki Yugi
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引用次数: 0

摘要

生化网络可视化是omics 数据机理解释的基本技术之一。特别是最近在多组学测量和分析方面取得的进展,要求开发能涵盖多种 omics 数据的可视化方法。2.5 维可视化(2.5D 可视化)是堆叠 X-Y 平面的等距视图,是在每个堆叠的组学层上绘制生化网络传统布局的背景下解读多组学/跨组学数据的便捷方法。然而,跨组学网络的 2.5D 可视化是一种最先进的方法,主要依赖于耗时的人工绘制。在这里,我们提出了一个 R Bioconductor 软件包 "transomics2cytoscape",用于 2.5D 跨组学网络的自动可视化。我们证实,transomics2cytoscape 可用于在几分钟内对已发表论文中的跨组学网络进行快速可视化。Transomics2cytoscape 可以根据多组学/跨组学数据分析的进展,频繁更新/重绘跨组学网络,从而在每个研究步骤中对多组学数据进行基于网络的解读。transomics2cytoscape 的源代码可从 https://github.com/ecell/transomics2cytoscape 网站获取。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Transomics2cytoscape: an automated software for interpretable 2.5-dimensional visualization of trans-omic networks

Transomics2cytoscape: an automated software for interpretable 2.5-dimensional visualization of trans-omic networks

Biochemical network visualization is one of the essential technologies for mechanistic interpretation of omics data. In particular, recent advances in multi-omics measurement and analysis require the development of visualization methods that encompass multiple omics data. Visualization in 2.5 dimension (2.5D visualization), which is an isometric view of stacked X-Y planes, is a convenient way to interpret multi-omics/trans-omics data in the context of the conventional layouts of biochemical networks drawn on each of the stacked omics layers. However, 2.5D visualization of trans-omics networks is a state-of-the-art method that primarily relies on time-consuming human efforts involving manual drawing. Here, we present an R Bioconductor package ‘transomics2cytoscape’ for automated visualization of 2.5D trans-omics networks. We confirmed that transomics2cytoscape could be used for rapid visualization of trans-omics networks presented in published papers within a few minutes. Transomics2cytoscape allows for frequent update/redrawing of trans-omics networks in line with the progress in multi-omics/trans-omics data analysis, thereby enabling network-based interpretation of multi-omics data at each research step. The transomics2cytoscape source code is available at https://github.com/ecell/transomics2cytoscape.

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来源期刊
NPJ Systems Biology and Applications
NPJ Systems Biology and Applications Mathematics-Applied Mathematics
CiteScore
5.80
自引率
0.00%
发文量
46
审稿时长
8 weeks
期刊介绍: npj Systems Biology and Applications is an online Open Access journal dedicated to publishing the premier research that takes a systems-oriented approach. The journal aims to provide a forum for the presentation of articles that help define this nascent field, as well as those that apply the advances to wider fields. We encourage studies that integrate, or aid the integration of, data, analyses and insight from molecules to organisms and broader systems. Important areas of interest include not only fundamental biological systems and drug discovery, but also applications to health, medical practice and implementation, big data, biotechnology, food science, human behaviour, broader biological systems and industrial applications of systems biology. We encourage all approaches, including network biology, application of control theory to biological systems, computational modelling and analysis, comprehensive and/or high-content measurements, theoretical, analytical and computational studies of system-level properties of biological systems and computational/software/data platforms enabling such studies.
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