Institute of Experimental Botany of the Czech Academy of Sciences, Centre of the Region Haná for Biotechnological and Agricultural Research, Olomouc, Czech Republic.
Methods Mol Biol. 2023;2672:485-500. doi: 10.1007/978-1-0716-3226-0_29.
Despite more than a century of intensive study of mitotic chromosomes, their three-dimensional organization remains enigmatic. The last decade established Hi-C as a method of choice for study of spatial genome-wide interactions. Although its utilization has been focused mainly on studying genomic interactions in interphase nuclei, the method can be also successfully applied to study 3D architecture and genome folding in mitotic chromosomes. However, obtaining sufficient number of mitotic chromosomes as an input material and effective coupling with Hi-C method is challenging in plant species. An elegant way to overcome hindrances with obtaining a pure mitotic chromosome fraction is their isolation via flow cytometric sorting. This chapter presents a protocol describing plant sample preparation for chromosome conformation studies, for flow-sorting of plant mitotic metaphase chromosomes and for the Hi-C procedure.
尽管对有丝分裂染色体进行了一个多世纪的深入研究,但它们的三维结构仍然是一个谜。过去十年,Hi-C 技术已成为研究空间全基因组相互作用的首选方法。尽管它的应用主要集中在研究间期核内的基因组相互作用,但该方法也可以成功地应用于有丝分裂染色体的三维结构和基因组折叠的研究。然而,在植物物种中,获得足够数量的有丝分裂染色体作为输入材料并与 Hi-C 方法有效结合是具有挑战性的。克服获得纯有丝分裂染色体部分的障碍的一种巧妙方法是通过流式细胞分选对其进行分离。本章介绍了一种描述植物样品制备用于染色体构象研究的方案,包括植物有丝分裂中期染色体的流式分选和 Hi-C 程序。