PUBLICATION

Rapid BAC selection for tol2-mediated transgenesis in zebrafish

Authors
Bussmann, J., and Schulte-Merker, S.
ID
ZDB-PUB-110901-12
Date
2011
Source
Development (Cambridge, England)   138(19): 4327-32 (Journal)
Registered Authors
Bussmann, Jeroen, Schulte-Merker, Stefan
Keywords
none
MeSH Terms
  • Bacterial Proteins/metabolism
  • Animals
  • Genetic Vectors
  • Chromosomes, Artificial, Bacterial/genetics*
  • In Situ Hybridization
  • DNA Primers/genetics
  • Escherichia coli/metabolism
  • Transgenes
  • Transposases/metabolism*
  • Genetic Techniques*
  • Zebrafish/genetics*
  • Recombination, Genetic
  • Luminescent Proteins/metabolism
  • Green Fluorescent Proteins/metabolism
  • RNA, Messenger/metabolism*
  • Polymerase Chain Reaction
(all 16)
PubMed
21865323 Full text @ Development
Abstract

The generation of zebrafish transgenic lines that express specific fluorophores in a cell- or tissue-specific manner is an important technique that takes full advantage of the optical clarity of the embryo. Identifying promoter fragments that faithfully recapitulate endogenous expression patterns and levels is often difficult and using large genomic DNA fragments, such as bacterial artificial chromosomes (BACs), makes the process of transgenesis less reliable. Here we provide a detailed protocol that allows for BAC selection and subsequent rapid modification through recombineering in Escherichia coli, resulting in BACs that can be injected into zebrafish embryos and, aided by tol2-mediated transgenesis, reliably yield stable transgenic lines. A number of BACs can be prepared in parallel, and injection of the BACs containing CFP/YFP/RFP or Gal4 cassettes allows for immediate testing of whether a particular BAC will yield the desired result. Furthermore, since injected embryos often show widespread expression, recombineered BACs provide an alternative to two-color in situ hybridizations: BACs injected into embryos of a different transgenic reporter line thus enable in vivo colocalization studies. Using this protocol, we have generated 66 stable lines for 23 different genes, with an average transgenesis rate above 10%. Importantly, we provide evidence that BAC size shows no apparent correlation to the transgenesis rate achieved and that there are no severe position effects.

Genes / Markers
Figures
Figure Gallery (2 images)
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Expression
No data available
Phenotype
No data available
Mutations / Transgenics
Allele Construct Type Affected Genomic Region
hu5909TgTransgenic Insertion
    hu5910TgTransgenic Insertion
      hu7009TgTransgenic Insertion
        mu101TgTransgenic Insertion
          mu102TgTransgenic Insertion
            mu105TgTransgenic Insertion
              nkuasgfp1aTgTransgenic Insertion
                s916TgTransgenic Insertion
                  zf132TgTransgenic Insertion
                    zf335TgTransgenic Insertion
                      1 - 10 of 14
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                      Human Disease / Model
                      No data available
                      Sequence Targeting Reagents
                      No data available
                      Fish
                      Antibodies
                      No data available
                      Orthology
                      No data available
                      Engineered Foreign Genes
                      Marker Marker Type Name
                      CitrineEFGCitrine
                      EGFPEFGEGFP
                      GAL4FFEFGGAL4FF
                      GFPEFGGFP
                      mCherryEFGmCherry
                      1 - 5 of 5
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                      Mapping
                      No data available