Related Experiment Video
Updated: Sep 4, 2025

Introducing a Gene Knockout Directly Into the Amastigote Stage of Trypanosoma cruzi Using the CRISPR/Cas9 System
Published on: July 31, 2019
A joint PCR-based gene-targeting method using electroporation in the pathogenic fungus Trichosporon asahii
Yasuhiko Matsumoto1, Tae Nagamachi2, Asami Yoshikawa2
1Department of Microbiology, Meiji Pharmaceutical University, 2-522-1, Noshio, Kiyose, Tokyo, 204-8588, Japan. ymatsumoto@my-pharm.ac.jp.
Abstract:
Trichosporon asahii is a pathogenic fungus that causes deep-seated fungal infections in immunocompromised patients. Established methods for generating gene-deficient T. asahii mutants exist, but the frequency of obtaining transformants by electroporation remains low. In the present study, we optimized the conditions for gene transfer by electroporation using a ku70 gene-deficient mutant with high recombination efficiency. Introducing a DNA fragment by electroporation into T. asahii cells on Sabouraud dextrose agar to generate a cnb1 gene-deficient mutant and incubating for 1 day led to the growth of approximately 100 transformants. When the incubation period was extended to 2 days or 5 days, however, only 2 or no transformants, respectively, were grown. The highest number of transformants was grown by electroporation when a square wave at 1.8 kV (9 kV/cm) was applied for 5 ms. In addition, the number of transformants increased with an increase in the length of the homologous region, and transformants did not grow when the homologous region was less than 500 base pairs. A DNA fragment was produced for deletion of the cnb1 gene by joint PCR, and the cnb1 gene-deficient mutant was obtained by introducing the DNA fragment by electroporation. These results indicate that DNA fragments produced by joint PCR can be used to generate gene-deficient mutants of T. asahii through gene transfer by electroporation.
Insights
Optimizing electroporation conditions significantly improved gene transfer efficiency in Trichosporon asahii (T. asahii), a pathogenic fungus. This advancement facilitates the creation of gene-deficient mutants for studying fungal infections in immunocompromised patients.
Area of Science:
- Medical Mycology
- Molecular Biology
- Fungal Genetics
Background:
- Trichosporon asahii causes deep-seated infections in immunocompromised individuals.
- Existing methods for generating gene-deficient T. asahii mutants have low transformation frequencies via electroporation.
Purpose of the Study:
- To optimize gene transfer conditions for electroporation in T. asahii.
- To improve the efficiency of generating gene-deficient T. asahii mutants.
Main Methods:
- Electroporation optimization using a ku70 gene-deficient mutant.
- Optimization of incubation time, electrical parameters (1.8 kV, 5 ms square wave), and homologous region length (>500 bp).
- Generation of a cnb1 gene-deficient mutant using joint PCR-amplified DNA fragments.
Main Results:
- Approximately 100 transformants were obtained after 1 day of incubation, with significantly fewer after 2 or 5 days.
- Optimal electroporation involved a square wave at 1.8 kV (9 kV/cm) for 5 ms.
- Transformation efficiency increased with homologous region length, requiring at least 500 base pairs.
Conclusions:
- Optimized electroporation protocols enhance gene transfer efficiency in T. asahii.
- Joint PCR-generated DNA fragments are effective for creating gene-deficient T. asahii mutants.
- Improved mutant generation aids research into T. asahii pathogenesis and antifungal strategies.

