染色质
嘉雅宠物
核小体
增强子
染色体构象捕获
生物
微球菌核酸酶
I超敏感位点
遗传学
计算生物学
支架/基质附着区域
基因
染色质重塑
拟南芥
抄写(语言学)
组蛋白
细胞生物学
发起人
转录因子
基因表达
语言学
哲学
突变体
作者
Landi Sun,Jingru Zhou,Xiao Xu,Yi Liu,Ning Ma,Yutong Liu,Wenchao Nie,Ling Zou,Xing Wang Deng,Hang He
标识
DOI:10.1038/s41467-023-44347-z
摘要
Abstract Although chromatin organizations in plants have been dissected at the scales of compartments and topologically associating domain (TAD)-like domains, there remains a gap in resolving fine-scale structures. Here, we use Micro-C-XL, a high-throughput chromosome conformation capture (Hi-C)-based technology that involves micrococcal nuclease (instead of restriction enzymes) and long cross-linkers, to dissect single nucleosome-resolution chromatin organization in Arabidopsis . Insulation analysis reveals more than 14,000 boundaries, which mostly include chromatin accessibility, epigenetic modifications, and transcription factors. Micro-C-XL reveals associations between RNA Pols and local chromatin organizations, suggesting that gene transcription substantially contributes to the establishment of local chromatin domains. By perturbing Pol II both genetically and chemically at the gene level, we confirm its function in regulating chromatin organization. Visible loops and stripes are assigned to super-enhancers and their targeted genes, thus providing direct insights for the identification and mechanistic analysis of distal CREs and their working modes in plants. We further investigate possible factors regulating these chromatin loops. Subsequently, we expand Micro-C-XL to soybean and rice. In summary, we use Micro-C-XL for analyses of plants, which reveal fine-scale chromatin organization and enhancer-promoter loops and provide insights regarding three-dimensional genomes in plants.
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