Dictyostelium discoideum transformation by oscillating electric field electroporation

Dictyostelium discoideum has been used as a genetically tractable model organism to study many biological phenomena. High-efficiency transformation is a prerequisite for successful genetic screens such as mutant complementation, identification of suppressor genes, or insertional mutagenesis. Althoug...

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Main Authors: Laeticia Alibaud, Pierre Cosson, Mohammed Benghezal
Format: Article
Language:English
Published: Taylor & Francis Group 2003-07-01
Series:BioTechniques
Online Access:https://www.future-science.com/doi/10.2144/03351st03
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author Laeticia Alibaud
Pierre Cosson
Mohammed Benghezal
author_facet Laeticia Alibaud
Pierre Cosson
Mohammed Benghezal
author_sort Laeticia Alibaud
collection DOAJ
description Dictyostelium discoideum has been used as a genetically tractable model organism to study many biological phenomena. High-efficiency transformation is a prerequisite for successful genetic screens such as mutant complementation, identification of suppressor genes, or insertional mutagenesis. Although exponential decay electroporation is the standard transformation technique for D. discoideum, its efficiency is relatively low and its reproducibility is weak. Here we optimized the oscillating electroporation technique for D. discoideum transformation and compared it to the exponential decay electroporation. A 20-fold increase in the efficiency was reproducibly achieved. This alternative electroporation technique should facilitate future genetic approaches in D. discoideum.
format Article
id doaj-art-5db0c57c446c43cd978f6544aa54e91a
institution OA Journals
issn 0736-6205
1940-9818
language English
publishDate 2003-07-01
publisher Taylor & Francis Group
record_format Article
series BioTechniques
spelling doaj-art-5db0c57c446c43cd978f6544aa54e91a2025-08-20T02:25:57ZengTaylor & Francis GroupBioTechniques0736-62051940-98182003-07-01351788310.2144/03351st03Dictyostelium discoideum transformation by oscillating electric field electroporationLaeticia Alibaud0Pierre Cosson1Mohammed Benghezal21Université de Genève, Switzerland1Université de Genève, Switzerland2Athelas SA, Geneva, SwitzerlandDictyostelium discoideum has been used as a genetically tractable model organism to study many biological phenomena. High-efficiency transformation is a prerequisite for successful genetic screens such as mutant complementation, identification of suppressor genes, or insertional mutagenesis. Although exponential decay electroporation is the standard transformation technique for D. discoideum, its efficiency is relatively low and its reproducibility is weak. Here we optimized the oscillating electroporation technique for D. discoideum transformation and compared it to the exponential decay electroporation. A 20-fold increase in the efficiency was reproducibly achieved. This alternative electroporation technique should facilitate future genetic approaches in D. discoideum.https://www.future-science.com/doi/10.2144/03351st03
spellingShingle Laeticia Alibaud
Pierre Cosson
Mohammed Benghezal
Dictyostelium discoideum transformation by oscillating electric field electroporation
BioTechniques
title Dictyostelium discoideum transformation by oscillating electric field electroporation
title_full Dictyostelium discoideum transformation by oscillating electric field electroporation
title_fullStr Dictyostelium discoideum transformation by oscillating electric field electroporation
title_full_unstemmed Dictyostelium discoideum transformation by oscillating electric field electroporation
title_short Dictyostelium discoideum transformation by oscillating electric field electroporation
title_sort dictyostelium discoideum transformation by oscillating electric field electroporation
url https://www.future-science.com/doi/10.2144/03351st03
work_keys_str_mv AT laeticiaalibaud dictyosteliumdiscoideumtransformationbyoscillatingelectricfieldelectroporation
AT pierrecosson dictyosteliumdiscoideumtransformationbyoscillatingelectricfieldelectroporation
AT mohammedbenghezal dictyosteliumdiscoideumtransformationbyoscillatingelectricfieldelectroporation