Grob Stefan, Grossniklaus Ueli
Department of Plant and Microbial Biology & Zurich-Basel Plant Science Center, University of Zurich, Zollikerstrasse 107, 8008, Zurich, Switzerland.
Bayer CropScience AG, Alfred-Nobel-Straße 50, 40789, Monheim am Rhein, Germany.
Methods Mol Biol. 2017;1456:15-32. doi: 10.1007/978-1-4899-7708-3_2.
Nuclear organization and higher-order chromosome structure in interphase nuclei are thought to have important effects on fundamental biological processes, including chromosome condensation, replication, and transcription. Until recently, however, nuclear organization could only be analyzed microscopically. The development of chromatin conformation capture (3C)-based techniques now allows a detailed look at chromosomal architecture from the level of individual loci to the entire genome. Here we provide a robust Hi-C protocol, allowing the analysis of nuclear organization in nuclei from different wild-type and mutant plant tissues. This method is quantitative and provides a highly efficient and comprehensive way to study chromatin organization during plant development, in response to different environmental stimuli, and in mutants disrupting a variety of processes, including epigenetic pathways regulating gene expression.
间期细胞核中的核组织和高阶染色体结构被认为对包括染色体凝聚、复制和转录在内的基本生物学过程具有重要影响。然而,直到最近,核组织还只能通过显微镜进行分析。基于染色质构象捕获(3C)技术的发展,现在能够从单个基因座水平到整个基因组详细观察染色体结构。在这里,我们提供了一个可靠的Hi-C方案,可用于分析来自不同野生型和突变型植物组织细胞核中的核组织。该方法是定量的,为研究植物发育过程中、对不同环境刺激的响应以及在破坏各种过程(包括调节基因表达的表观遗传途径)的突变体中的染色质组织提供了一种高效且全面的方法。