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Super-resolution imaging with Pontamine Fast Scarlet 4BS enables direct visualization of cellulose orientation and cell connection architecture in onion epidermis cells

机译:使用Pontamine Fast Scarlet 4BS进行超分辨率成像可直接可视化洋葱表皮细胞中的纤维素方向和细胞连接结构

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摘要

BackgroundIn plants, a complex cell wall protects cells and defines their shape. Cellulose fibrils form a multilayered network inside the cell-wall matrix that plays a direct role in controlling cell expansion. Resolving the structure of this network will allow us to comprehend the relationship of cellulose fibril orientation and growth.The fluorescent dye Pontamine Fast Scarlet 4BS (PFS) was shown to stain cellulose with high specificity and could be used to visualize cellulose bundles in cell walls of Arabidopsis root epidermal cells with confocal microscopy. The resolution limit of confocal microscopy of some 200 nm in xy and 550 nm in z for green light, restricts the direct visualization of cellulose to relatively large bundles, whereas the structure of cellulose microfibrils with their diameter below 10 nm remains unresolved. Over the last decade, several so-called super-resolution microscopy approaches have been developed; in this paper we explore the potential of such approaches for the direct visualization of cellulose.
机译:背景技术在植物中,复杂的细胞壁可以保护细胞并确定其形状。纤维素原纤维在细胞壁基质内部形成多层网络,在控制细胞扩增中起直接作用。解析该网络的结构将使我们能够理解纤维素原纤维取向与生长的关系。荧光染料Pontamine Fast Scarlet 4BS(PFS)被证明可以高度染色纤维素,可用于可视化纤维素细胞壁中的纤维素束。共聚焦显微镜检查拟南芥根表皮细胞。共焦显微镜的分辨极限在xy处为200 nm,在z处为550 nm对绿光,将纤维素的直接可视化限制在相对较大的束中,而直径小于10 nm的纤维素微纤维的结构仍未解决。在过去的十年中,已经开发了几种所谓的超分辨率显微镜方法。在本文中,我们探索了这种方法对纤维素直接可视化的潜力。

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