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Braz. j. microbiol ; 44(4): 1241-1250, Oct.-Dec. 2013. ilus, graf, tab
Article in English | LILACS | ID: lil-705264

ABSTRACT

The mitogen-activated protein (MAP) kinase pathways has been implicated in the pathogenicity of various pathogenic fungi and plays important roles in regulating pathogenicity-related morphogenesis. This work describes the isolation and characterization of MAP kinase gene, Cgl-SLT2, from Colletotrichum gloeosporioides. A DNA sequence, including 1,633 bp of Cgl-SLT2 open-reading frame and its promoter and terminator regions, was isolated via DNA walking and cloned. To analyze gene function, a gene disruption cassette containing hygromycin-resistant gene was constructed, and Cgl-SLT2 was inactivated via gene deletion. Analysis on Cgl-slt2 mutant revealed a defect in vegetative growth and sporulation as compared to the wild-type strain. When grown under nutrient-limiting conditions, hyperbranched hyphal morphology was observed in the mutant. Conidia induction for germination on rubber wax-coated hard surfaces revealed no differences in the percentage of conidial germination between the wild-type and Cgl-slt2 mutant. However, the percentage of appressorium formation in the mutant was greatly reduced. Bipolar germination in the mutant was higher than in the wild-type at 8-h post-induction. A pathogenicity assay revealed that the mutant was unable to infect either wounded or unwounded mangoes. These results suggest that the Cgl-SLT2 MAP kinase is required for C. gloeosporioides conidiation, polarized growth, appressorium formation and pathogenicity.


Subject(s)
Colletotrichum/growth & development , Colletotrichum/pathogenicity , Fungal Proteins/metabolism , Mitogen-Activated Protein Kinases/metabolism , Spores, Fungal/growth & development , Cloning, Molecular , DNA, Fungal/chemistry , DNA, Fungal/genetics , Fungal Proteins/genetics , Gene Deletion , Hyphae/growth & development , Molecular Sequence Data , Mutagenesis, Insertional , Mangifera/microbiology , Mitogen-Activated Protein Kinases/genetics , Open Reading Frames , Promoter Regions, Genetic , Plant Diseases/microbiology , Sequence Analysis, DNA , Virulence
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