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Updated: Aug 13, 2026

Production of Transgenic Xenopus laevis by Restriction Enzyme Mediated Integration and Nuclear Transplantation
Published on: August 21, 2010
Electroporation-mediated gene transfer in free-swimming embryonic Xenopus laevis
F F Eide1, S R Eisenberg, T A Sanders
1Department of Neurology, University of Chicago, 5841 S. Maryland Avenue, Chicago, IL 60637, USA. feide@neurology.bsd.uchicago.edu
Abstract:
Xenopus laevis are a rich resource for vertebrate embryology and cell biology. Transplantation and transgenesis have provided much information about the developmental mechanisms of embryogenesis and molecule function, however existing methods have faced limitations regarding either the precise localization of gene expression or flexibility in the timing of gene transfer. Here we have found that electroporation of tailbud (stage 29/30) embryos is a rapid and efficient method of combining cell-specific expression with variation in temporal delivery. At the low voltages required for electroporation, embryos resumed normal swimming behavior and development. We conclude that electroporation has wide experimental application to Xenopus developmental and cell biology.

