首页> 美国卫生研究院文献>Frontiers in Plant Science >An update: improvements in imaging perfluorocarbon-mounted plant leaves with implications for studies of plant pathology physiology development and cell biology
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An update: improvements in imaging perfluorocarbon-mounted plant leaves with implications for studies of plant pathology physiology development and cell biology

机译:最新动态:全氟化碳固定植物叶片成像的改进对植物病理学生理学发育和细胞生物学的研究具有重要意义

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摘要

Plant leaves are optically complex, which makes them difficult to image by light microscopy. Careful sample preparation is therefore required to enable researchers to maximize the information gained from advances in fluorescent protein labeling, cell dyes and innovations in microscope technologies and techniques. We have previously shown that mounting leaves in the non-toxic, non-fluorescent perfluorocarbon (PFC), perfluorodecalin (PFD) enhances the optical properties of the leaf with minimal impact on physiology. Here, we assess the use of the PFCs, PFD, and perfluoroperhydrophenanthrene (PP11) for in vivo plant leaf imaging using four advanced modes of microscopy: laser scanning confocal microscopy (LSCM), two-photon fluorescence microscopy, second harmonic generation microscopy, and stimulated Raman scattering (SRS) microscopy. For every mode of imaging tested, we observed an improved signal when leaves were mounted in PFD or in PP11, compared to mounting the samples in water. Using an image analysis technique based on autocorrelation to quantitatively assess LSCM image deterioration with depth, we show that PP11 outperformed PFD as a mounting medium by enabling the acquisition of clearer images deeper into the tissue. In addition, we show that SRS microscopy can be used to image PFCs directly in the mesophyll and thereby easily delimit the “negative space” within a leaf, which may have important implications for studies of leaf development. Direct comparison of on and off resonance SRS micrographs show that PFCs do not to form intracellular aggregates in live plants. We conclude that the application of PFCs as mounting media substantially increases advanced microscopy image quality of living mesophyll and leaf vascular bundle cells.
机译:植物的叶子在光学上很复杂,这使得它们很难通过光学显微镜成像。因此,需要精心准备样品,以使研究人员能够最大程度地利用荧光蛋白标记,细胞染料以及显微镜技术的创新所获得的信息。先前我们已经证明,将叶片安装在无毒,无荧光的全氟化碳(PFC),全氟十氢化萘(PFD)中可以增强叶片的光学特性,而对生理的影响却很小。在这里,我们使用四种先进的显微镜技术评估了PFC,PFD和全氟过氢菲(PP11)在体内植物叶片成像中的使用:激光扫描共聚焦显微镜(LSCM),双光子荧光显微镜,二次谐波产生显微镜和激发拉曼散射(SRS)显微镜。对于每种测试成像模式,与将样本安装在水中相比,当将叶子安装在PFD或PP11中时,我们观察到了改善的信号。使用基于自相关的图像分析技术定量评估随深度的LSCM图像劣化,我们显示PP11通过获取更深的组织更清晰的图像,胜过PFD作为固定介质。此外,我们表明SRS显微镜可用于直接在叶肉中成像PFC,从而轻松界定叶片内的“负空间”,这可能对叶片发育的研究具有重要意义。开和关共振SRS显微照片的直接比较表明,PFC不会在活植物中形成细胞内聚集体。我们得出的结论是,PFCs作为封固剂的应用大大提高了活的叶肉和叶血管束细胞的高级显微图像质量。

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