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与活跃基因和异染色质相关的染色质环为转录调控塑造了水稻基因组结构。

Chromatin loops associated with active genes and heterochromatin shape rice genome architecture for transcriptional regulation.

机构信息

National Key Laboratory of Crop Genetic Improvement, Huazhong Agricultural University, 1 Shizishan Street, Hongshan District, Wuhan, 430070, Hubei, China.

Department of Resources and Environment, Henan University of Engineering, 1 Xianghe Road, Longhu Town, Zhengzhou, 451191, Henan, China.

出版信息

Nat Commun. 2019 Aug 13;10(1):3640. doi: 10.1038/s41467-019-11535-9.

Abstract

Insight into high-resolution three-dimensional genome organization and its effect on transcription remains largely elusive in plants. Here, using a long-read ChIA-PET approach, we map H3K4me3- and RNA polymerase II (RNAPII)-associated promoter-promoter interactions and H3K9me2-marked heterochromatin interactions at nucleotide/gene resolution in rice. The chromatin architecture is separated into different independent spatial interacting modules with distinct transcriptional potential and covers approximately 82% of the genome. Compared to inactive modules, active modules possess the majority of active loop genes with higher density and contribute to most of the transcriptional activity in rice. In addition, promoter-promoter interacting genes tend to be transcribed cooperatively. In contrast, the heterochromatin-mediated loops form relative stable structure domains in chromatin configuration. Furthermore, we examine the impact of genetic variation on chromatin interactions and transcription and identify a spatial correlation between the genetic regulation of eQTLs and e-traits. Thus, our results reveal hierarchical and modular 3D genome architecture for transcriptional regulation in rice.

摘要

在植物中,深入了解高分辨率三维基因组组织及其对转录的影响在很大程度上仍难以捉摸。在这里,我们使用长读长 ChIA-PET 方法,以核苷酸/基因分辨率在水稻中绘制 H3K4me3 和 RNA 聚合酶 II (RNAPII) 相关启动子-启动子相互作用和 H3K9me2 标记的异染色质相互作用。染色质结构被分离成具有不同转录潜力的不同独立空间相互作用模块,大约覆盖基因组的 82%。与非活性模块相比,活性模块具有更多的具有更高密度的活性环基因,并且对水稻中的大部分转录活性有贡献。此外,启动子-启动子相互作用的基因往往协同转录。相比之下,异染色质介导的环在染色质构象中形成相对稳定的结构域。此外,我们研究了遗传变异对染色质相互作用和转录的影响,并鉴定了 eQTLs 和 e-性状的遗传调控之间的空间相关性。因此,我们的结果揭示了水稻中转录调控的层次化和模块化三维基因组结构。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa2d/6692402/33040c7bf6bb/41467_2019_11535_Fig1_HTML.jpg

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