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利用三维结构光照明显微镜对胞间连丝进行超分辨率成像。

Super-resolution imaging of plasmodesmata using three-dimensional structured illumination microscopy.

机构信息

Institute of Molecular Plant Sciences, University of Edinburgh, Edinburgh EH9 3JR, United Kingdom.

出版信息

Plant Physiol. 2010 Aug;153(4):1453-63. doi: 10.1104/pp.110.157941. Epub 2010 May 27.

Abstract

We used three-dimensional structured illumination microscopy (3D-SIM) to obtain subdiffraction ("super-resolution") images of plasmodesmata (PD) expressing a green fluorescent protein-tagged viral movement protein (MP) in tobacco (Nicotiana tabacum). In leaf parenchyma cells, we were able to resolve individual components of PD (neck and central cavities) at twice the resolution of a confocal microscope. Within the phloem, MP-green fluorescent protein filaments extended outward from the specialized pore-PD that connect sieve elements (SEs) with their companion cells (CCs) along the tubular sieve element reticulum (SER). The SER was shown to interconnect individual pore-PD at the SE-CC interface. 3D-SIM resolved fine (less than 100 nm) endoplasmic reticulum threads running into individual pore-PD as well as strands that crossed sieve plate pores, structurally linking SEs within a file. Our data reveal that MP entering the SE from the CC may remain associated with the SER. Fluorescence recovery after photobleaching experiments revealed that this MP pool is relatively immobile compared with the membrane probe 3,3'-dihexyloxacarbocyanine iodide, suggesting that MP may become sequestered by the SER once it has entered the SE. The advent of 3D-SIM offers considerable potential in the subdiffraction imaging of plant cells, bridging an important gap between confocal and electron microscopy.

摘要

我们使用三维结构照明显微镜(3D-SIM)来获取表达绿色荧光蛋白标记病毒运动蛋白(MP)的质膜通道(PD)的亚衍射(“超分辨率”)图像,这些 PD 存在于烟草(Nicotiana tabacum)中。在叶肉细胞中,我们能够以两倍于共聚焦显微镜的分辨率解析 PD(颈部和中央腔)的单个组件。在韧皮部中,MP-绿色荧光蛋白丝从与筛管(SEs)相连的特化孔-PD 向外延伸,其与伴胞(CCs)沿着管状筛管网(SER)相连。SER 被证明在 SE-CC 界面处相互连接单个孔-PD。3D-SIM 解析了精细的(小于 100nm)内质网线程,这些线程进入单个孔-PD 以及穿过筛板孔的链,在文件内结构上连接 SEs。我们的数据表明,从 CC 进入 SE 的 MP 可能仍然与 SER 相关联。光漂白后荧光恢复实验表明,与膜探针 3,3'-二己氧基氧杂羰花青碘化物相比,该 MP 池相对不活跃,这表明一旦 MP 进入 SE,它可能被 SER 隔离。3D-SIM 的出现为植物细胞的亚衍射成像提供了巨大的潜力,弥合了共聚焦和电子显微镜之间的重要差距。

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