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  4. Simple and efficient transgenesis with meganuclease constructs in zebrafish.
 
research article

Simple and efficient transgenesis with meganuclease constructs in zebrafish.

Soroldoni, D.
•
Hogan, B. M.
•
Oates, A. C.  
2009
Methods in molecular biology (Clifton, N.J.)

In the past, microinjection of plasmid DNA into early embryos represented the state of the art to generate transgenic zebrafish. However, this approach suffers significant drawbacks (mosaic distribution of the injected transgene, late transgene integration at high copy numbers, low transgenesis frequency), making the generation of transgenic lines a laborious task. Coinjection of I-SceI meganuclease with a reporter construct flanked by I-SceI sites overcomes these problems by earlier transgene integration into the host genome. Here, we provide an optimized protocol for I-SceI meganuclease-mediated transgenesis in zebrafish. This simple protocol provides a reliable method to transiently test tissue-specific reporter expression of meganuclease constructs in injected embryos (F0). Furthermore, it substantially facilitates the generation of multiple stable transgenic lines increasing transgenesis frequencies up to 45%, compared with 5% without I-SceI. The reliable reporter activity in F0 and the improved transgenesis frequency make this protocol a powerful tool for use in gain- and loss-of-function, cell tracing, and cell labeling experiments.

  • Details
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Type
research article
DOI
10.1007/978-1-60327-977-2_8
Scopus ID

2-s2.0-67649393374

Author(s)
Soroldoni, D.
Hogan, B. M.
Oates, A. C.  
Date Issued

2009

Published in
Methods in molecular biology (Clifton, N.J.)
Volume

546

Start page

117

End page

130

Subjects

animal

•

Animals

•

Article

•

Deoxyribonucleases

•

DNA

•

female

•

Genes

•

genetic engineering

•

Genetics

•

gene transfer

•

Gene Transfer Techniques

•

Germ-Line Mutation

•

green fluorescent protein

•

Green Fluorescent Proteins

•

male

•

metabolism

•

Methodology

•

microinjection

•

Microinjections

•

Mutation

•

prenatal development

•

Reporter

•

reporter gene

•

Saccharomyces cerevisiae protein

•

Saccharomyces cerevisiae Proteins

•

SCEI protein

•

S cerevisiae

•

Type II Site-Specific

•

type II site specific deoxyribonuclease

•

zebra fish

•

zebrafish

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
UPOATES  
Available on Infoscience
May 30, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/137773
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