The Wor1-like protein Fgp1 regulates pathogenicity, toxin synthesis and reproduction in the phytopathogenic fungus Fusarium graminearum.
Author(s)
Jonkers, W
Dong, Y
Broz, K
Kistler, HC
Type
Journal Article
Abstract
WOR1 is a gene for a conserved fungal regulatory protein controlling the dimorphic switch and pathogenicity determents in Candida albicans and its ortholog in the plant pathogen Fusarium oxysporum, called SGE1, is required for pathogenicity and expression of key plant effector proteins. F. graminearum, an important pathogen of cereals, is not known to employ switching and no effector proteins from F. graminearum have been found to date that are required for infection. In this study, the potential role of the WOR1-like gene in pathogenesis was tested in this toxigenic fungus. Deletion of the WOR1 ortholog (called FGP1) in F. graminearum results in greatly reduced pathogenicity and loss of trichothecene toxin accumulation in infected wheat plants and in vitro. The loss of toxin accumulation alone may be sufficient to explain the loss of pathogenicity to wheat. Under toxin-inducing conditions, expression of genes for trichothecene biosynthesis and many other genes are not detected or detected at lower levels in Δfgp1 strains. FGP1 is also involved in the developmental processes of conidium formation and sexual reproduction and modulates a morphological change that accompanies mycotoxin production in vitro. The Wor1-like proteins in Fusarium species have highly conserved N-terminal regions and remarkably divergent C-termini. Interchanging the N- and C- terminal portions of proteins from F. oxysporum and F. graminearum resulted in partial to complete loss of function. Wor1-like proteins are conserved but have evolved to regulate pathogenicity in a range of fungi, likely by adaptations to the C-terminal portion of the protein.
Date Issued
2012
Date Acceptance
2012-04-16
Citation
PLOS Pathogens, 2012, 8 (5)
ISSN
1553-7366
Publisher
Public Library of Science
Journal / Book Title
PLOS Pathogens
Volume
8
Issue
5
Copyright Statement
This is an open-access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for
any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication.
any lawful purpose. The work is made available under the Creative Commons CC0 public domain dedication.
License URL
Identifier
PII: PPATHOGENS-D-12-00102
Subjects
Amino Acid Sequence
Conserved Sequence
Food Contamination
Fungal Proteins
Fusariosis
Fusarium
Gene Expression Regulation, Fungal
Gene Silencing
Genes, Fungal
Host-Pathogen Interactions
Molecular Sequence Data
Mycotoxins
Reproduction
Sequence Analysis, Protein
Species Specificity
Spores, Fungal
Triticum
Publication Status
Published
Article Number
e1002724