Suppr超能文献

基因组即地理:利用地理信息系统技术构建交互式基因组特征图谱。

Genomes as geography: using GIS technology to build interactive genome feature maps.

作者信息

Dolan Mary E, Holden Constance C, Beard M Kate, Bult Carol J

机构信息

National Center for Geographic Information and Analysis, University of Maine, Orono, ME 04469, USA.

出版信息

BMC Bioinformatics. 2006 Sep 19;7:416. doi: 10.1186/1471-2105-7-416.

Abstract

BACKGROUND

Many commonly used genome browsers display sequence annotations and related attributes as horizontal data tracks that can be toggled on and off according to user preferences. Most genome browsers use only simple keyword searches and limit the display of detailed annotations to one chromosomal region of the genome at a time. We have employed concepts, methodologies, and tools that were developed for the display of geographic data to develop a Genome Spatial Information System (GenoSIS) for displaying genomes spatially, and interacting with genome annotations and related attribute data. In contrast to the paradigm of horizontally stacked data tracks used by most genome browsers, GenoSIS uses the concept of registered spatial layers composed of spatial objects for integrated display of diverse data. In addition to basic keyword searches, GenoSIS supports complex queries, including spatial queries, and dynamically generates genome maps. Our adaptation of the geographic information system (GIS) model in a genome context supports spatial representation of genome features at multiple scales with a versatile and expressive query capability beyond that supported by existing genome browsers.

RESULTS

We implemented an interactive genome sequence feature map for the mouse genome in GenoSIS, an application that uses ArcGIS, a commercially available GIS software system. The genome features and their attributes are represented as spatial objects and data layers that can be toggled on and off according to user preferences or displayed selectively in response to user queries. GenoSIS supports the generation of custom genome maps in response to complex queries about genome features based on both their attributes and locations. Our example application of GenoSIS to the mouse genome demonstrates the powerful visualization and query capability of mature GIS technology applied in a novel domain.

CONCLUSION

Mapping tools developed specifically for geographic data can be exploited to display, explore and interact with genome data. The approach we describe here is organism independent and is equally useful for linear and circular chromosomes. One of the unique capabilities of GenoSIS compared to existing genome browsers is the capacity to generate genome feature maps dynamically in response to complex attribute and spatial queries.

摘要

背景

许多常用的基因组浏览器将序列注释和相关属性显示为水平数据轨道,可根据用户偏好进行切换显示或隐藏。大多数基因组浏览器仅使用简单的关键词搜索,并且一次仅将详细注释的显示限制在基因组的一个染色体区域。我们采用了为地理数据显示而开发的概念、方法和工具,来开发一个基因组空间信息系统(GenoSIS),用于在空间上显示基因组,并与基因组注释及相关属性数据进行交互。与大多数基因组浏览器使用的水平堆叠数据轨道范式不同,GenoSIS使用由空间对象组成的注册空间层概念来综合显示各种数据。除了基本的关键词搜索外,GenoSIS还支持复杂查询,包括空间查询,并动态生成基因组图谱。我们在基因组环境中对地理信息系统(GIS)模型的改编,支持在多个尺度上对基因组特征进行空间表示,具有比现有基因组浏览器更通用和更具表现力的查询能力。

结果

我们在GenoSIS中为小鼠基因组实现了一个交互式基因组序列特征图谱,该应用程序使用了商业可用的GIS软件系统ArcGIS。基因组特征及其属性被表示为空间对象和数据层,可根据用户偏好进行切换显示或隐藏,或根据用户查询进行选择性显示。GenoSIS支持根据基因组特征的属性和位置的复杂查询生成定制的基因组图谱。我们将GenoSIS应用于小鼠基因组的示例应用,展示了成熟的GIS技术在新领域中强大的可视化和查询能力。

结论

专门为地理数据开发的映射工具可用于显示、探索基因组数据并与之交互。我们在此描述的方法不依赖于生物体,对线性和环状染色体同样有用。与现有基因组浏览器相比,GenoSIS的独特能力之一是能够响应复杂的属性和空间查询动态生成基因组特征图谱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2751/1599760/5032d2776597/1471-2105-7-416-1.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验