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Enoki, Winter Mushroom · 2017 · Journal Article

High relevance

Highly-efficient liposome-mediated transformation system for the basidiomycetous fungus Flammulina velutipes

Flammulina velutipes

Immune support
SpeciesEnoki, Winter Mushroom
JournalThe Journal of general and applied microbiology
Year2017

Key points

  • Flammulina velutipes is a well-known edible mushroom cultivated all over the world
  • In this study, we report a liposome-mediated transformation (LMT) system for the genetic transformation of F. velutipes
  • Using the LMT system, we obtained 82 ± 4 stable F. velutipes transformants per 10 5 protoplasts, which is a clear increase in transformation frequency compared to the other methods used
  • Furthermore, we used this method to transfer the laccase gene into F. velutipes and found that the transcriptional level and enzymatic activity increased in these transformants
  • Mitotic stability analysis showed that all of the selected transformants remained mitotically stable, even after five successive rounds of sub-culturing
  • These results demonstrate a new transgenic approach that will facilitate F. velutipes research

Metadata-grounded summary

Citation abstract

Flammulina velutipes is a well-known edible mushroom cultivated all over the world. However, because of the low transformation frequency, the expensive instruments required, and the complicated, time-consuming procedures necessary, there is insufficient genetic research on F. velutipes. In this study, we report a liposome-mediated transformation (LMT) system for the genetic transformation of F. velutipes. Using the LMT system, we obtained 82 ± 4 stable F. velutipes transformants per 10 5 protoplasts, which is a clear increase in transformation frequency compared to the other methods used. We were able to detect the expression of an EGFP reporter gene in the F. velutipes transformants using fluorescence imaging assays. Furthermore, we used this method to transfer the laccase gene into F. velutipes and found that the transcriptional level and enzymatic activity increased in these transformants. Mitotic stability analysis showed that all of the selected transformants remained mitotically stable, even after five successive rounds of sub-culturing. These results demonstrate a new transgenic approach that will facilitate F. velutipes research.

Citation

Shi L, Chen D, Xu C, Ren A, Yu H, Zhao M (2017). Highly-efficient liposome-mediated transformation system for the basidiomycetous fungus Flammulina velutipes. The Journal of general and applied microbiology https://doi.org/10.2323/jgam.2016.10.003 PMID: 28484117

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