A Lifeact-EGFP quail for studying actin dynamics in vivo

Author:

Alvarez Yanina D.1ORCID,van der Spuy Marise1ORCID,Wang Jian Xiong1ORCID,Noordstra Ivar1ORCID,Tan Siew Zhuan1ORCID,Carroll Murron1ORCID,Yap Alpha S.1ORCID,Serralbo Olivier2ORCID,White Melanie D.13ORCID

Affiliation:

1. The University of Queensland 1 Institute for Molecular Bioscience, , Brisbane, Australia

2. Commonwealth Scientific and Industrial Research (CSIRO) Health and Biosecurity 2 , Geelong, Australia

3. 3School of Biomedical Sciences, The University of Queensland, Brisbane, Australia

Abstract

Here, we report the generation of a transgenic Lifeact–EGFP quail line for the investigation of actin organization and dynamics during morphogenesis in vivo. This transgenic avian line allows for the high-resolution visualization of actin structures within the living embryo, from the subcellular filaments that guide cell shape to the supracellular assemblies that coordinate movements across tissues. The unique suitability of avian embryos to live imaging facilitates the investigation of previously intractable processes during embryogenesis. Using high-resolution live imaging approaches, we present the dynamic behaviors and morphologies of cellular protrusions in different tissue contexts. Furthermore, through the integration of live imaging with computational segmentation, we visualize cells undergoing apical constriction and large-scale actin structures such as multicellular rosettes within the neuroepithelium. These findings not only enhance our understanding of tissue morphogenesis but also demonstrate the utility of the Lifeact–EGFP transgenic quail as a new model system for live in vivo investigations of the actin cytoskeleton.

Funder

Australian Cancer Research Foundation

Australian Research Council

National Health and Medical Research Council of Australia

European Molecular Biology Organization

Publisher

Rockefeller University Press

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