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Appressorium-localized NADPH oxidase B is essential for aggressiveness and pathogenicity in the host-specific, toxin-producing fungus Alternaria alternata Japanese pear pathotype.
- Source :
-
Molecular plant pathology [Mol Plant Pathol] 2013 May; Vol. 14 (4), pp. 365-78. Date of Electronic Publication: 2012 Dec 28. - Publication Year :
- 2013
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Abstract
- Black spot disease, Alternaria alternata Japanese pear pathotype, produces the host-specific toxin AK-toxin, an important pathogenicity factor. Previously, we have found that hydrogen peroxide is produced in the hyphal cell wall at the plant-pathogen interaction site, suggesting that the fungal reactive oxygen species (ROS) generation machinery is important for pathogenicity. In this study, we identified two NADPH oxidase (NoxA and NoxB) genes and produced nox disruption mutants. ΔnoxA and ΔnoxB disruption mutants showed increased hyphal branching and spore production per unit area. Surprisingly, only the ΔnoxB disruption mutant compromised disease symptoms. A fluorescent protein reporter assay revealed that only NoxB localized at the appressoria during pear leaf infection. In contrast, both NoxA and NoxB were highly expressed on the cellulose membrane, and these Nox proteins were also localized at the appressoria. In the ΔnoxB disruption mutant, we could not detect any necrotic lesions caused by AK-toxin. Moreover, the ΔnoxB disruption mutant did not induce papilla formation on pear leaves. Ultrastructural analysis revealed that the ΔnoxB disruption mutant also did not penetrate the cuticle layer. Moreover, ROS generation was not essential for penetration, suggesting that NoxB may have an unknown function in penetration. Taken together, our results suggest that NoxB is essential for aggressiveness and basal pathogenicity in A. alternata.<br /> (© 2012 BSPP AND BLACKWELL PUBLISHING LTD.)
- Subjects :
- 3,3'-Diaminobenzidine metabolism
Alternaria genetics
Alternaria ultrastructure
Cloning, Molecular
Gene Expression Profiling
Gene Expression Regulation, Fungal
Genes, Fungal genetics
Humans
Hydrogen Peroxide metabolism
Japan
Mutation genetics
Mycelium growth & development
NADPH Oxidases genetics
Phenotype
Phylogeny
Plant Diseases microbiology
Plant Leaves microbiology
Plant Leaves ultrastructure
Protein Transport
Spores, Fungal ultrastructure
Alternaria enzymology
Alternaria pathogenicity
Host Specificity
Mycotoxins biosynthesis
NADPH Oxidases metabolism
Pyrus microbiology
Spores, Fungal enzymology
Subjects
Details
- Language :
- English
- ISSN :
- 1364-3703
- Volume :
- 14
- Issue :
- 4
- Database :
- MEDLINE
- Journal :
- Molecular plant pathology
- Publication Type :
- Academic Journal
- Accession number :
- 23279187
- Full Text :
- https://doi.org/10.1111/mpp.12013