
Application of promoter trapping based on transformation in Magnaporthe grisea is reported in this paper. Two promoter-trapping vectors, designated as pCBGFP and pEGFPHPH, were constructed and transformed into protoplasts of M. grisea. A library of 1,077 transformants resistant to hygromycin B was generated. Of which, 448 transformants were found to express eGFP gene in different structures of M. grisea. Three transformants grew slowly, 5 transformants decreased in conidiation and 7 transformants reduced in pathogenicity greatly among these 448 transformants. Eleven transformants were checked by genomic southern blot randomly, and 9 of which were single-copy insertions. The promoter trapping technique has been applied successfully in M. grisea and can be used as a tool for functional genomic analysis.
Fungal Proteins, Magnaporthe, Genes, Reporter, Gene Expression Regulation, Fungal, Genetic Vectors, Green Fluorescent Proteins, Promoter Regions, Genetic, Protein Engineering, Recombinant Proteins
Fungal Proteins, Magnaporthe, Genes, Reporter, Gene Expression Regulation, Fungal, Genetic Vectors, Green Fluorescent Proteins, Promoter Regions, Genetic, Protein Engineering, Recombinant Proteins
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