Gutzat Ruben, Mittelsten Scheid Ortrun
Gregor Mendel Institute of Molecular Plant Biology, Austrian Academy of Sciences, Vienna BioCenter (VBC), Vienna, Austria.
Methods Mol Biol. 2020;2093:95-105. doi: 10.1007/978-1-0716-0179-2_7.
The application of fluorescent tags to generate cell type-specific translational and transcriptional reporter lines is routine in plants, but separation of different cell types for downstream analyses is hampered by the presence of cell walls and tight connections between cells. Enzymatic removal of cell walls induces a wound response, dedifferentiation, or reprogramming of the resulting protoplasts. Their osmotic and mechanical instability and their large size range are challenging for FACS, a flow -sorting procedure based on differential expression of fluorescent tags. In contrast, plant nuclei are relatively robust and easy to isolate. Here, we describe a protocol for fluorescence-activated nuclear sorting (FANS) that allows efficient purification of very few fluorescence-tagged nuclei from a large background of non-labeled tissue. Purified nuclei are suitable for genome, epigenome, transcriptome, or proteome analyses. We describe in detail how to analyze nuclear RNA and DNA methylation from sorted nuclei representing the limited number of stem cells in the shoot apical meristem of Arabidopsis.
在植物中,应用荧光标签来生成细胞类型特异性的翻译和转录报告系是常规操作,但由于细胞壁的存在以及细胞间紧密连接,阻碍了用于下游分析的不同细胞类型的分离。酶解去除细胞壁会诱导所产生原生质体的伤口反应、去分化或重编程。它们的渗透和机械不稳定性以及较大的尺寸范围,对于基于荧光标签差异表达的流式细胞分选(FACS)这种流式分选程序来说是个挑战。相比之下,植物细胞核相对健壮且易于分离。在此,我们描述了一种荧光激活核分选(FANS)方案,该方案能够从大量未标记组织的背景中高效纯化出极少的荧光标记细胞核。纯化后的细胞核适用于基因组、表观基因组、转录组或蛋白质组分析。我们详细描述了如何分析来自代表拟南芥茎尖分生组织中有限数量干细胞的分选细胞核的核RNA和DNA甲基化。