Makai Diána, Mihók Edit, Polgári Dávid, Cseh András, Lenykó-Thegze Andrea, Sepsi Adél, Sági László
Centre for Agricultural Research, Eötvös Loránd Research Network, Martonvásár, 2462, Hungary.
Doctoral School of Plant Sciences, Hungarian University of Agriculture and Life Sciences, Gödöllő, 2100, Hungary.
Plant Methods. 2023 Aug 8;19(1):80. doi: 10.1186/s13007-023-01061-7.
Though multicolour labelling methods allow the routine detection of a wide range of fluorescent (immuno)probe types in molecular cytogenetics, combined applications for the simultaneous in situ detection of proteins and nucleic acids are still sporadic in plant cell biology. A major bottleneck has been the availability of high-quality plant nuclei with a balance between preservation of 3D ultrastructure and maintaining immunoreactivity. The aim of this study was to develop a quick and reliable procedure to prepare plant nuclei suitable for various combinations of immunolabelling and fluorescence in situ hybridisation methods (immunoFISH-GISH).
The mechanical removal of the cell wall and cytoplasm, instead of enzymatic degradation, resulted in a gentle, yet effective, cell permeabilisation. Rather than manually releasing the nuclei from the fixed tissues, the procedure involves in-solution cell handling throughout the fixation and the preparation steps as ended with pipetting the pure nuclei suspension onto microscope slides. The optimisation of several critical steps is described in detail. Finally, the procedure is shown to be compatible with immunolabelling, FISH and GISH as well as their simultaneous combinations.
A simple plant cell nuclei preparation procedure was developed for combined immunolabelling-in situ hybridisation methods. The main and critical elements of the procedure are: a short period of fixation, incorporation of detergents to facilitate the fixation of tissues and the penetration of probes, tissue grinding to eliminate unwanted cell components, and an optimal buffer to handle nuclei. The procedure is time efficient and is easily transferable without prior expertise.
尽管多色标记方法可在分子细胞遗传学中常规检测多种荧光(免疫)探针类型,但蛋白质和核酸同时原位检测的联合应用在植物细胞生物学中仍较为零散。一个主要瓶颈是缺乏高质量的植物细胞核,难以在保持三维超微结构和维持免疫反应性之间取得平衡。本研究的目的是开发一种快速可靠的程序,以制备适用于免疫标记和荧光原位杂交方法(免疫荧光原位杂交-基因组原位杂交)各种组合的植物细胞核。
采用机械去除细胞壁和细胞质,而非酶解,实现了温和而有效的细胞通透化。该程序并非手动从固定组织中释放细胞核,而是在整个固定和制备步骤中进行溶液内细胞处理,最后将纯细胞核悬液移液到载玻片上。详细描述了几个关键步骤的优化。最后,该程序被证明与免疫标记、荧光原位杂交和基因组原位杂交及其同时组合兼容。
开发了一种用于联合免疫标记-原位杂交方法的简单植物细胞核制备程序。该程序的主要关键要素包括:短时间固定、加入去污剂以促进组织固定和探针穿透、组织研磨以去除不需要的细胞成分,以及用于处理细胞核的最佳缓冲液。该程序省时高效,无需专业知识即可轻松转移。