Thibivilliers Sandra B, Anderson Dirk K, Libault Marc Y
Department of Agronomy and Horticulture, Centre for Plant Science Innovation, Center for Root and Rhizobiome Innovation, University of Nebraska-Lincoln, Lincoln, NE, USA.
Flow Cytometry Service Center, Center for Biotechnology, University of Nebraska-Lincoln, Lincoln, Nebraska, USA.
Bio Protoc. 2021 Dec 5;11(23):e4240. doi: 10.21769/BioProtoc.4240.
Gene expression depends on the binding of transcription factors with DNA regulatory sequences. The level of accessibility for these sequences varies between cells and cell types. Until recently, using the Tn5 assay for transposase-accessible chromatin for sequencing (ATAC-seq) technology allowed assessing the profiles of chromatin from an entire organ or, when coupled with the isolation of nuclei tagged in specific cell types (INTACT) method, from a cell-type. Recently, ATAC-seq experiments were conducted at the level of individual plant nuclei. Applying single nuclei ATAC-seq (sNucATAC-seq) technology to thousands of individual cells revealed more finely tuned profiles of chromatin accessibility. In this manuscript, we describe a method to isolate nuclei fom plant roots and green tissues, permeabilize the nuclear membrane using detergent to allow the penetration of the Tn5 transposase, and re-suspend them in a nuclei resuspension buffer compatible with the construction of sNucATAC-seq libraries using the 10× Genomic's Chromium technology. This protocol was successfully applied on and root nuclei.
基因表达取决于转录因子与DNA调控序列的结合。这些序列的可及性水平在不同细胞和细胞类型之间有所不同。直到最近,使用转座酶可及染色质测序(ATAC-seq)技术的Tn5分析能够评估整个器官的染色质图谱,或者当与特定细胞类型标记核分离(INTACT)方法结合使用时,能够评估特定细胞类型的染色质图谱。最近,ATAC-seq实验是在单个植物细胞核水平上进行的。将单核ATAC-seq(sNucATAC-seq)技术应用于数千个单个细胞,揭示了更精细的染色质可及性图谱。在本手稿中,我们描述了一种从植物根和绿色组织中分离细胞核的方法,使用去污剂使核膜通透以允许Tn5转座酶进入,并将它们重悬于与使用10×基因组公司的铬技术构建sNucATAC-seq文库兼容的细胞核重悬缓冲液中。该方案已成功应用于 和 根细胞核。