VirtualPlant: A Software Platform to Support Systems Biology Research

VirtualPlant: A Software Platform to Support Systems Biology Research
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DOI:
10.1104/pp.109.147025
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发表时间:
2010-02-01
期刊:
影响因子:
7.4
通讯作者:
Gutierrez, Rodrigo A.
Gutierrez, Rodrigo A.
中科院分区:
生物学1区
文献类型:
--
作者:
Katari, Manpreet S.;Nowicki, Steve D.;Gutierrez, Rodrigo A.

文献摘要

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数据生成不再是推进生物学研究的限制因素。此外,数据整合、分析和解释已成为生物学家进行基因组研究日常面临的关键瓶颈和挑战。为了使生物学家能够从越来越多的基因组数据中得出可检验的假设,我们开发了 VirtualPlant 软件平台。 VirtualPlant 使科学家能够从系统生物学的角度可视化、集成和分析基因组数据。 VirtualPlant 集成了有关基因、蛋白质和分子之间已知和预测关系的全基因组数据,以及基因组规模的实验测量。 VirtualPlant 还提供可视化技术,以视觉格式呈现多变量信息,从而促进生物概念的提取。重要的是,VirtualPlant 可以帮助未受过计算机科学培训的生物学家挖掘基因列表、微阵列实验和基因网络,以解决植物生物学中的问题,例如:内部或外部扰动影响控制生长和发育过程的分子机制是什么?我们通过三个案例研究来说明 VirtualPlant 的使用,范围从查询感兴趣的基因到识别控制种子发育的基因网络和调控中心。虽然 VirtualPlant 软件是为了挖掘拟南芥(Arabidopsis thaliana)基因组数据而开发的,但其数据结构、算法和可视化工具是以与物种无关的方式设计的。 VirtualPlant 可在 www.virtualplant.org 上免费获取。
Data generation is no longer the limiting factor in advancing biological research. In addition, data integration, analysis, and interpretation have become key bottlenecks and challenges that biologists conducting genomic research face daily. To enable biologists to derive testable hypotheses from the increasing amount of genomic data, we have developed the VirtualPlant software platform. VirtualPlant enables scientists to visualize, integrate, and analyze genomic data from a systems biology perspective. VirtualPlant integrates genome-wide data concerning the known and predicted relationships among genes, proteins, and molecules, as well as genome-scale experimental measurements. VirtualPlant also provides visualization techniques that render multivariate information in visual formats that facilitate the extraction of biological concepts. Importantly, VirtualPlant helps biologists who are not trained in computer science to mine lists of genes, microarray experiments, and gene networks to address questions in plant biology, such as: What are the molecular mechanisms by which internal or external perturbations affect processes controlling growth and development? We illustrate the use of VirtualPlant with three case studies, ranging from querying a gene of interest to the identification of gene networks and regulatory hubs that control seed development. Whereas the VirtualPlant software was developed to mine Arabidopsis (Arabidopsis thaliana) genomic data, its data structures, algorithms, and visualization tools are designed in a species-independent way. VirtualPlant is freely available at www.virtualplant.org.