Cellular Imaging Laboratory, Biological Research Center, Hungarian Academy of Sciences, Temesvári krt 62, 6726 Szeged, Hungary.
Plant Methods. 2010 Jan 28;6(1):5. doi: 10.1186/1746-4811-6-5.
Progress in plant cell cycle research is highly dependent on reliable methods for detection of cells replicating DNA. Frequency of S-phase cells (cells in DNA synthesis phase) is a basic parameter in studies on the control of cell division cycle and the developmental events of plant cells. Here we extend the microscopy and flow cytometry applications of the recently developed EdU (5-ethynyl-2'-deoxyuridine)-based S-phase assay to various plant species and tissues. We demonstrate that the presented protocols insure the improved preservation of cell and tissue structure and allow significant reduction in assay duration. In comparison with the frequently used detection of bromodeoxyuridine (BrdU) and tritiated-thymidine incorporation, this new methodology offers several advantages as we discuss here.
Applications of EdU-based S-phase assay in microscopy and flow cytometry are presented by using cultured cells of alfalfa, Arabidopsis, grape, maize, rice and tobacco. We present the advantages of EdU assay as compared to BrdU-based replication assay and demonstrate that EdU assay -which does not require plant cell wall digestion or DNA denaturation steps, offers reduced assay duration and better preservation of cellular, nuclear and chromosomal morphologies. We have also shown that fast and efficient EdU assay can also be an efficient tool for dual parameter flow cytometry analysis and for quantitative assessment of replication in thick root samples of rice.
In plant cell cycle studies, EdU-based S-phase detection offers a superior alternative to the existing S-phase assays. EdU method is reliable, versatile, fast, simple and non-radioactive and it can be readily applied to many different plant systems.
植物细胞周期研究的进展高度依赖于可靠的方法来检测正在复制 DNA 的细胞。S 期细胞(处于 DNA 合成阶段的细胞)的频率是研究细胞分裂周期控制和植物细胞发育事件的基本参数。在这里,我们将最近开发的基于 EdU(5-乙炔基-2'-脱氧尿苷)的 S 期测定法的显微镜和流式细胞术应用扩展到各种植物物种和组织。我们证明,所提出的方案可确保改善细胞和组织结构的保存,并显著缩短测定时间。与经常使用的溴脱氧尿苷(BrdU)和氚标记胸腺嘧啶掺入检测相比,我们在这里讨论了这种新方法的几个优点。
通过使用紫花苜蓿、拟南芥、葡萄、玉米、水稻和烟草的培养细胞,展示了基于 EdU 的 S 期测定法在显微镜和流式细胞术方面的应用。我们比较了 EdU 测定法与基于 BrdU 的复制测定法的优势,并证明 EdU 测定法——不需要植物细胞壁消化或 DNA 变性步骤,提供了缩短的测定时间和更好的细胞、核和染色体形态保存。我们还表明,快速高效的 EdU 测定法也可以成为双参数流式细胞术分析和定量评估水稻厚根样品中复制的有效工具。
在植物细胞周期研究中,基于 EdU 的 S 期检测为现有的 S 期测定法提供了一个更好的替代方法。EdU 方法可靠、通用、快速、简单且非放射性,可轻松应用于许多不同的植物系统。