Premise Fluorescence microscopy is an effective tool for viewing plant internal anatomy. However, using fluorescent antibodies or labels hinders throughput. We present a minimal protocol that takes advantage of inherent autofluorescence and aldehyde‐induced fluorescence in plant cellular and subcellular structures to markedly increase throughput in cellular and ultrastructural visualization. Methods and Results Twelve species distributed across the plant phylogeny were each subjected to five fixative treatments: 1% paraformaldehyde and 2% glutaraldehyde, 2% paraformaldehyde, 2% glutaraldehyde, formalin‐acid‐alcohol (FAA), and 70% ethanol. Samples were prepared by embedding and mechanically sectioning or via whole mount. A confocal laser sca...
International audienceThe study of the organ structure of plants and understanding their physiologic...
In a biorefinery plant diagram, a grinding step is usually the prerequisite for biological conversio...
Lignocellulosic biomass is a complex network of polymers making up the cell walls of plants. It repr...
Higher plant function is contingent upon the complex three-dimensional (3D) architecture of plant ti...
Clearing techniques eliminate factors that interfere with microscopic observation, including light s...
Auto-fluorescence emission of plant tissues can be a powerful reporter on plant biochemistry and phy...
Automated identification and quantification of algae in microscopic images is a tool that allows hig...
One of the key questions in understanding plant development is how single cells behave in a larger c...
Autofluorescent molecules are abundant in plant cells and spectral images offer means for analyzing ...
In this study, we have developed a robust cryohistological method that allows imaging of virtually a...
Fluorescent proteins (FPs) were developed for live-cell imaging and have revolutionized cell biology...
A wide array of free-hand-sectioning-based optical microscopy techniques that are simple, safe, and ...
A substantial number of elegant experimental approaches have been developed to image the distributio...
Combining optical properties with a limited choice of fluorophores turns single-molecule imaging in ...
One of the key questions in understanding plant development is how single cells behave in a larger c...
International audienceThe study of the organ structure of plants and understanding their physiologic...
In a biorefinery plant diagram, a grinding step is usually the prerequisite for biological conversio...
Lignocellulosic biomass is a complex network of polymers making up the cell walls of plants. It repr...
Higher plant function is contingent upon the complex three-dimensional (3D) architecture of plant ti...
Clearing techniques eliminate factors that interfere with microscopic observation, including light s...
Auto-fluorescence emission of plant tissues can be a powerful reporter on plant biochemistry and phy...
Automated identification and quantification of algae in microscopic images is a tool that allows hig...
One of the key questions in understanding plant development is how single cells behave in a larger c...
Autofluorescent molecules are abundant in plant cells and spectral images offer means for analyzing ...
In this study, we have developed a robust cryohistological method that allows imaging of virtually a...
Fluorescent proteins (FPs) were developed for live-cell imaging and have revolutionized cell biology...
A wide array of free-hand-sectioning-based optical microscopy techniques that are simple, safe, and ...
A substantial number of elegant experimental approaches have been developed to image the distributio...
Combining optical properties with a limited choice of fluorophores turns single-molecule imaging in ...
One of the key questions in understanding plant development is how single cells behave in a larger c...
International audienceThe study of the organ structure of plants and understanding their physiologic...
In a biorefinery plant diagram, a grinding step is usually the prerequisite for biological conversio...
Lignocellulosic biomass is a complex network of polymers making up the cell walls of plants. It repr...