Department of Cell & Developmental Biology, John Innes Centre, Norwich Research Park, Norwich, NR4 7UH UK.
Plant Methods. 2015 Mar 22;11:22. doi: 10.1186/s13007-015-0065-7. eCollection 2015.
Recent developments in both microscopy and fluorescent protein technologies have made live imaging a powerful tool for the study of plant cells. However, the complications of keeping plant material alive during a long duration experiment while maintaining maximum resolution has limited the use of these methods.
Here, we describe an imaging chamber designed to overcome these limitations, which is flexible enough to support a range of sizes of plant materials. We were able use confocal microscopy to follow growth and development of plant cells and tissues over several days. The chamber design is based on a perfusion system, so that the addition of drugs and other experimental treatments are also possible.
In this article we present a design of imaging chamber that makes it possible to image plant material with high resolution for extended periods of time.
显微镜和荧光蛋白技术的最新发展使得活体成像成为研究植物细胞的有力工具。然而,在长时间实验中保持植物材料存活并保持最大分辨率的复杂性限制了这些方法的使用。
在这里,我们描述了一种成像室的设计,旨在克服这些限制,该设计足够灵活,可以支持多种尺寸的植物材料。我们能够使用共聚焦显微镜在几天内跟踪植物细胞和组织的生长和发育。该室设计基于灌注系统,因此也可以添加药物和其他实验处理。
在本文中,我们提出了一种成像室的设计,使得长时间以高分辨率对植物材料进行成像成为可能。