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17个小鼠基因组转录组调控区域序列变异的比较。

Comparison of sequence variants in transcriptomic control regions across 17 mouse genomes.

作者信息

Nguyen Cao, Baten Abdul, Morahan Grant

机构信息

Centre for Diabetes Research, The Western Australian Institute for Medical Research, Western Australia, Australia, Centre of Medical Research, University of Western Australia, Perth, Western Australia, Australia and Southern Cross Plant Science, Southern Cross University, Lismore, New South Wales, Australia.

出版信息

Database (Oxford). 2014 Mar 18;2014:bau020. doi: 10.1093/database/bau020. Print 2014.

Abstract

The laboratory mouse is the most widely used mammalian model organism in biomedical research, so a thorough annotation of functional variation in the mouse genome would be of significant value. In this study, we compared sequence variation in a comprehensive list of functional elements (e.g. promoters, enhancers and CTCF binding sites) across 17 inbred mouse strains. Sequences were derived for ∼300,000 functional elements experimentally identified by the mouse ENCODE project as regulating gene expression in 19 different tissue sources. We aligned sequences for each predicted cis-regulatory element to genomes of 17 mouse strains. This yielded a database comprising ∼5 million aligned sequences, allowing interrogation of sequence variation of functional elements for each of the 19 tissues/cell types in commonly used mouse strains. We also developed an online tool to visualize the genome around each predicted cis-regulatory element in each tissue context and which allows efficient comparison of variation between any two sets of strains. This will be particularly useful in the context of the Collaborative Cross (CC), which was conceived as a powerful new systems genetics resource to accelerate gene discovery. Comprising a large number of inbred strains derived from eight genetically diverse founders, the CC offers rapid mapping and identification of genes that mediate complex traits. We show that, among the 17 sequenced strains, the set of CC founder strains captures the most variability in the ENCODE elements, further emphasizing the value of this resource. Database URL: www.sysgen.org/ecco.

摘要

实验室小鼠是生物医学研究中使用最广泛的哺乳动物模式生物,因此对小鼠基因组中的功能变异进行全面注释将具有重要价值。在本研究中,我们比较了17个近交系小鼠品系中一系列功能元件(如启动子、增强子和CTCF结合位点)的序列变异。序列来自小鼠ENCODE项目通过实验鉴定的约30万个功能元件,这些元件在19种不同组织来源中调控基因表达。我们将每个预测的顺式调控元件的序列与17个小鼠品系的基因组进行比对。这产生了一个包含约500万个比对序列的数据库,可用于查询常用小鼠品系中19种组织/细胞类型中每个功能元件的序列变异。我们还开发了一个在线工具,以可视化每个组织环境中每个预测的顺式调控元件周围的基因组,并允许高效比较任意两组品系之间的变异。这在协作杂交(CC)的背景下将特别有用,CC被设想为一种强大的新系统遗传学资源,用于加速基因发现。CC由来自八个遗传多样的奠基者的大量近交系组成,可快速定位和鉴定介导复杂性状的基因。我们表明,在17个测序品系中,CC奠基者品系组在ENCODE元件中捕获了最多的变异性,进一步强调了该资源的价值。数据库网址:www.sysgen.org/ecco。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dc5/3958616/920d8631efd1/bau020f1.jpg

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