Enoki, Winter Mushroom · 2010 · Brief Report
Medium relevanceHighly Efficient Electroporation-mediated Transformation into Edible Mushroom Flammulina velutipes.
Flammulina velutipes
Key points
- In this study, we developed an efficient electroporation-mediated transformation system featuring Flammulina velutipes
- The flammutoxin (ftx) gene of F. velutipes was isolated by reverse transcription-PCR. pFTXHg plasmid was constructed using the partial ftx gene (410 bp) along with the hygromycin B phosphotransferase gene (hygB) downstream of the glyceraldehydes-3-phosphate dehydrogenase (gpd) promoter
- The plasmid was transformed into protoplasts of monokaryotic strain 4019-20 of F. velutipes by electroporation
- High transformation efficiency was obtained with an electric-pulse of 1.25 kV/cm by using 177 transformants/µg of DNA in 1 × 10(7) protoplasts
- PCR and Southern blot hybridization indicated that a single copy of the plasmid DNA was inserted at different locations in the F. velutipes genome by non-homologous recombination
- Therefore, this transformation system could be used as a useful tool for gene function analysis of F. velutipes
Metadata-grounded summary
Citation abstract
In this study, we developed an efficient electroporation-mediated transformation system featuring Flammulina velutipes. The flammutoxin (ftx) gene of F. velutipes was isolated by reverse transcription-PCR. pFTXHg plasmid was constructed using the partial ftx gene (410 bp) along with the hygromycin B phosphotransferase gene (hygB) downstream of the glyceraldehydes-3-phosphate dehydrogenase (gpd) promoter. The plasmid was transformed into protoplasts of monokaryotic strain 4019-20 of F. velutipes by electroporation. High transformation efficiency was obtained with an electric-pulse of 1.25 kV/cm by using 177 transformants/µg of DNA in 1 × 10(7) protoplasts. PCR and Southern blot hybridization indicated that a single copy of the plasmid DNA was inserted at different locations in the F. velutipes genome by non-homologous recombination. Therefore, this transformation system could be used as a useful tool for gene function analysis of F. velutipes.
Citation
Kim JK, Park YJ, Kong WS, Kang HW (2010). Highly Efficient Electroporation-mediated Transformation into Edible Mushroom Flammulina velutipes. Mycobiology https://doi.org/10.4489/MYCO.2010.38.4.331 PMID: 23956676
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