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拟南芥中不同类型染色质相互作用的全基因组分析

Genome-Wide Analysis of the Distinct Types of Chromatin Interactions in Arabidopsis thaliana.

作者信息

Wang Jingjing, Zhou Yincong, Li Xue, Meng Xianwen, Fan Miao, Chen Hongjun, Xue Jitong, Chen Ming

机构信息

Department of Bioinformatics, The State Key Laboratory of Plant Physiology and Biochemistry, Institute of Plant Science, PR China.

James D. Watson Institute of Genome Sciences, Zhejiang University, Hangzhou, PR China.

出版信息

Plant Cell Physiol. 2017 Jan 1;58(1):57-70. doi: 10.1093/pcp/pcw194.

Abstract

The three-dimensional shapes of chromosomes regulate gene expression and genome function. Our knowledge of the role of chromatin interaction is evolving rapidly. Here, we present a study of global chromatin interaction patterns in Arabidopsis thaliana. High-throughput experimental techniques have been developed to map long-range interactions within chromatin. We have integrated data from multiple experimental sources including Hi-C, BS-seq, ChIP-chip and ChIP-seq data for 17 epigenetic marks and 35 transcription factors. We identified seven groups of interacting loci, which can be distinguished by their epigenetic profiles. Furthermore, the seven groups of interacting loci can be divided into three types of chromatin linkages based on expression status. We observed that two interacting loci sometimes share common epigenetic and transcription factor-binding profiles. Different groups of loci display very different relationships between epigenetic marks and the binding of transcription factors. Distinctive types of chromatin linkages exhibit different gene expression profiles. Our study unveils an entirely unexplored regulatory interaction, linking epigenetic profiles, transcription factor binding and the three-dimensional spatial organization of the Arabidopsis nuclear genome.

摘要

染色体的三维形状调节基因表达和基因组功能。我们对染色质相互作用作用的认识正在迅速发展。在此,我们展示了一项对拟南芥中全局染色质相互作用模式的研究。已开发出高通量实验技术来绘制染色质内的长程相互作用。我们整合了来自多个实验来源的数据,包括Hi-C、BS-seq、ChIP-chip以及针对17种表观遗传标记和35种转录因子的ChIP-seq数据。我们鉴定出七组相互作用位点,它们可通过其表观遗传特征加以区分。此外,基于表达状态,这七组相互作用位点可分为三种类型的染色质连接。我们观察到两个相互作用位点有时共享共同的表观遗传和转录因子结合特征。不同组的位点在表观遗传标记与转录因子结合之间表现出非常不同的关系。独特类型的染色质连接呈现出不同的基因表达谱。我们的研究揭示了一种完全未被探索的调控相互作用,它将表观遗传特征、转录因子结合与拟南芥核基因组的三维空间组织联系起来。

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