Live imaging of glial cell migration in the Drosophila eye imaginal disc.

Abstract

Glial cells of both vertebrate and invertebrate organisms must migrate to final target regions in order to ensheath and support associated neurons. While recent progress has been made to describe the live migration of glial cells in the developing pupal wing (1), studies of Drosophila glial cell migration have typically involved the examination of fixed tissue. Live microscopic analysis of motile cells offers the ability to examine cellular behavior throughout the migratory process, including determining the rate of and changes in direction of growth. Paired with use of genetic tools, live imaging can be used to determine more precise roles for specific genes in the process of development. Previous work by Silies et al. (2) has described the migration of glia originating from the optic stalk, a structure that connects the developing eye and brain, into the eye imaginal disc in fixed tissue. Here we outline a protocol for examining the live migration of glial cells into the Drosophila eye imaginal disc. We take advantage of a Drosophila line that expresses GFP in developing glia to follow glial cell progression in wild type and in mutant animals.

DOI: 10.3791/1155

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@article{Cafferty2009LiveIO, title={Live imaging of glial cell migration in the Drosophila eye imaginal disc.}, author={Patrick W Cafferty and Xiaojun Xie and Kristen Browne and Vanessa J Auld}, journal={Journal of visualized experiments : JoVE}, year={2009}, volume={29} }