High-resolution three-dimensional reconstruction of a whole yeast cell using focused-ion beam scanning electron microscopy

Author:

Wei Dongguang1,Jacobs Scott2,Modla Shannon2,Zhang Shuang3,Young Carissa L.4,Cirino Robert2,Caplan Jeffrey2,Czymmek Kirk25

Affiliation:

1. Carl Zeiss Microscopy, LLC. One Zeiss Drive Thornwood, NY, USA

2. UD Bio-Imaging Center, Delaware Biotechnology Institute, University of Delaware, 15 Innovation Way, Newark, DE, USA

3. Visualization Sciences Group, 15 New England Executive Park, Burlington, MA, USA

4. Department of Chemical and Biomolecular Engineering, University of Delaware, 150 Academy Street, Newark, DE, USA

5. Department of Biological Sciences, University of Delaware, 330 Wolf Hall, Newark, DE, USA

Abstract

We developed an approach for focused gallium-ion beam scanning electron microscopy with energy filtered detection of backscattered electrons to create near isometric voxels for high-resolution whole cell visualization. Specifically, this method allowed us to create three-dimensional volumes of high-pressure frozen, freeze-substituted Saccharomyces cerevisiae yeast cells with pixel resolutions down to 3 nm/pixel in x, y, and z, supported by both empirical data and Monte Carlo simulations. As a result, we were able to segment and quantify data sets of numerous targeted subcellular structures/organelles at high-resolution, including the volume, volume percentage, and surface area of the endoplasmic reticulum, cell wall, vacuoles, and mitochondria from an entire cell. Sites of mitochondrial and endoplasmic reticulum interconnectivity were readily identified in rendered data sets. The ability to visualize, segment, and quantify entire eukaryotic cells at high-resolution (potentially sub-5 nanometers isotropic voxels) will provide new perspectives and insights of the inner workings of cells.

Publisher

Future Science Ltd

Subject

General Biochemistry, Genetics and Molecular Biology,Biotechnology

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