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使用共表达浏览器COB在不同玉米转录组中发现功能模块。

Discovering functional modules across diverse maize transcriptomes using COB, the Co-expression Browser.

作者信息

Schaefer Robert J, Briskine Roman, Springer Nathan M, Myers Chad L

机构信息

Biomedical Informatics and Computational Biology Graduate Program, University of Minnesota Rochester, Rochester, Minnesota, United States of America.

Department of Computer Science and Engineering, University of Minnesota, Minneapolis, Minnesota, United States of America.

出版信息

PLoS One. 2014 Jun 12;9(6):e99193. doi: 10.1371/journal.pone.0099193. eCollection 2014.

Abstract

Tools that provide improved ability to relate genotype to phenotype have the potential to accelerate breeding for desired traits and to improve our understanding of the molecular variants that underlie phenotypes. The availability of large-scale gene expression profiles in maize provides an opportunity to advance our understanding of complex traits in this agronomically important species. We built co-expression networks based on genome-wide expression data from a variety of maize accessions as well as an atlas of different tissues and developmental stages. We demonstrate that these networks reveal clusters of genes that are enriched for known biological function and contain extensive structure which has yet to be characterized. Furthermore, we found that co-expression networks derived from developmental or tissue atlases as compared to expression variation across diverse accessions capture unique functions. To provide convenient access to these networks, we developed a public, web-based Co-expression Browser (COB), which enables interactive queries of the genome-wide networks. We illustrate the utility of this system through two specific use cases: one in which gene-centric queries are used to provide functional context for previously characterized metabolic pathways, and a second where lists of genes produced by mapping studies are further resolved and validated using co-expression networks.

摘要

能够增强将基因型与表型关联起来的能力的工具,有可能加速对所需性状的育种,并增进我们对构成表型基础的分子变异的理解。玉米中大规模基因表达谱的可得性为推进我们对这个在农业上具有重要意义的物种复杂性状的理解提供了一个契机。我们基于来自多种玉米种质以及不同组织和发育阶段图谱的全基因组表达数据构建了共表达网络。我们证明这些网络揭示了富含已知生物学功能且包含尚未被表征的广泛结构的基因簇。此外,我们发现与跨不同种质的表达变异相比,源自发育或组织图谱的共表达网络捕获了独特的功能。为了方便访问这些网络,我们开发了一个基于网络的公共共表达浏览器(COB),它能够对全基因组网络进行交互式查询。我们通过两个具体的用例说明了这个系统的实用性:一个是使用以基因为中心的查询为先前表征的代谢途径提供功能背景,另一个是通过共表达网络进一步解析和验证图谱研究产生的基因列表。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c41/4055606/e971be9534ef/pone.0099193.g001.jpg

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