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首页> 外文期刊>BMC Plant Biology >OPTIMAS-DW: A comprehensive transcriptomics, metabolomics, ionomics, proteomics and phenomics data resource for maize
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OPTIMAS-DW: A comprehensive transcriptomics, metabolomics, ionomics, proteomics and phenomics data resource for maize

机译:OPTIMAS-DW:玉米的综合转录组学,代谢组学,ionomics,蛋白质组学和表观学数据资源

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Background Maize is a major crop plant, grown for human and animal nutrition, as well as a renewable resource for bioenergy. When looking at the problems of limited fossil fuels, the growth of the world’s population or the world’s climate change, it is important to find ways to increase the yield and biomass of maize and to study how it reacts to specific abiotic and biotic stress situations. Within the OPTIMAS systems biology project maize plants were grown under a large set of controlled stress conditions, phenotypically characterised and plant material was harvested to analyse the effect of specific environmental conditions or developmental stages. Transcriptomic, metabolomic, ionomic and proteomic parameters were measured from the same plant material allowing the comparison of results across different omics domains. A data warehouse was developed to store experimental data as well as analysis results of the performed experiments. Description The OPTIMAS Data Warehouse (OPTIMAS-DW) is a comprehensive data collection for maize and integrates data from different data domains such as transcriptomics, metabolomics, ionomics, proteomics and phenomics. Within the OPTIMAS project, a 44K oligo chip was designed and annotated to describe the functions of the selected unigenes. Several treatment- and plant growth stage experiments were performed and measured data were filled into data templates and imported into the data warehouse by a Java based import tool. A web interface allows users to browse through all stored experiment data in OPTIMAS-DW including all data domains. Furthermore, the user can filter the data to extract information of particular interest. All data can be exported into different file formats for further data analysis and visualisation. The data analysis integrates data from different data domains and enables the user to find answers to different systems biology questions. Finally, maize specific pathway information is provided. Conclusions With OPTIMAS-DW a data warehouse for maize was established, which is able to handle different data domains, comprises several analysis results that will support researchers within their work and supports systems biological research in particular. The system is available at http://www.optimas-bioenergy.org/optimas_dw webcite .
机译:背景技术玉米是一种主要的农作物,为人类和动物营养而生长,也是生物能源的可再生资源。在研究有限的化石燃料,世界人口的增长或世界气候变化的问题时,重要的是找到增加玉米产量和生物量的方法,研究其对特定非生物和生物胁迫情况的反应。在OPTIMAS系统生物学项目中,玉米是在大量受控胁迫条件下生长的,具有表型特征,并收获了植物材料以分析特定环境条件或发育阶段的影响。从同一植物材料中测量转录组学,代谢组学,蛋白质组学和蛋白质组学参数,从而可以比较不同组学领域的结果。开发了一个数据仓库来存储实验数据以及所执行实验的分析结果。描述OPTIMAS数据仓库(OPTIMAS-DW)是用于玉米的全面数据收集,并集成了来自不同数据域的数据,例如转录组学,代谢组学,药物组学,蛋白质组学和表型学。在OPTIMAS项目中,设计并注释了一个44K寡核苷酸芯片,以描述所选单基因的功能。进行了多个处理和植物生长阶段的实验,并将测得的数据填充到数据模板中,并通过基于Java的导入工具将其导入到数据仓库中。网络界面允许用户浏览OPTIMAS-DW中所有存储的实验数据,包括所有数据域。此外,用户可以过滤数据以提取特别感兴趣的信息。可以将所有数据导出为不同的文件格式,以进行进一步的数据分析和可视化。数据分析集成了来自不同数据域的数据,并使用户能够找到不同系统生物学问题的答案。最后,提供了玉米特有的途径信息。结论利用OPTIMAS-DW建立了一个玉米数据仓库,该数据库能够处理不同的数据域,包括几个分析结果,这些结果将为研究人员提供支持,特别是系统生物学研究。该系统可从http://www.optimas-bioenergy.org/optimas_dw webcite获得。

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