A putative transcription factor MYT1 is required for female fertility in the ascomycete Gibberella zeae.

Gibberella zeae is an important pathogen of major cereal crops. The fungus produces ascospores that forcibly discharge from mature fruiting bodies, which serve as the primary inocula for disease epidemics. In this study, we characterized an insertional mutant Z39P105 with a defect in sexual developm...

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Main Authors: Yang Lin, Hokyoung Son, Jungkwan Lee, Kyunghun Min, Gyung Ja Choi, Jin-Cheol Kim, Yin-Won Lee
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3184970?pdf=render
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spelling doaj-1c4ecd83828547fd9d7a43cfe8f213352020-11-25T01:14:59ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-01610e2558610.1371/journal.pone.0025586A putative transcription factor MYT1 is required for female fertility in the ascomycete Gibberella zeae.Yang LinHokyoung SonJungkwan LeeKyunghun MinGyung Ja ChoiJin-Cheol KimYin-Won LeeGibberella zeae is an important pathogen of major cereal crops. The fungus produces ascospores that forcibly discharge from mature fruiting bodies, which serve as the primary inocula for disease epidemics. In this study, we characterized an insertional mutant Z39P105 with a defect in sexual development and identified a gene encoding a putative transcription factor designated as MYT1. This gene contains a Myb DNA-binding domain and is conserved in the subphylum Pezizomycotina of Ascomycota. The MYT1 protein fused with green fluorescence protein localized in nuclei, which supports its role as a transcriptional regulator. The MYT1 deletion mutant showed similar phenotypes to the wild-type strain in vegetative growth, conidia production and germination, virulence, and mycotoxin production, but had defect in female fertility. A mutant overexpressing MYT1 showed earlier germination, faster mycelia growth, and reduced mycotoxin production compared to the wild-type strain, suggesting that improper MYT1 expression affects the expression of genes involved in the cell cycle and secondary metabolite production. This study is the first to characterize a transcription factor containing a Myb DNA-binding domain that is specific to sexual development in G. zeae.http://europepmc.org/articles/PMC3184970?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Yang Lin
Hokyoung Son
Jungkwan Lee
Kyunghun Min
Gyung Ja Choi
Jin-Cheol Kim
Yin-Won Lee
spellingShingle Yang Lin
Hokyoung Son
Jungkwan Lee
Kyunghun Min
Gyung Ja Choi
Jin-Cheol Kim
Yin-Won Lee
A putative transcription factor MYT1 is required for female fertility in the ascomycete Gibberella zeae.
PLoS ONE
author_facet Yang Lin
Hokyoung Son
Jungkwan Lee
Kyunghun Min
Gyung Ja Choi
Jin-Cheol Kim
Yin-Won Lee
author_sort Yang Lin
title A putative transcription factor MYT1 is required for female fertility in the ascomycete Gibberella zeae.
title_short A putative transcription factor MYT1 is required for female fertility in the ascomycete Gibberella zeae.
title_full A putative transcription factor MYT1 is required for female fertility in the ascomycete Gibberella zeae.
title_fullStr A putative transcription factor MYT1 is required for female fertility in the ascomycete Gibberella zeae.
title_full_unstemmed A putative transcription factor MYT1 is required for female fertility in the ascomycete Gibberella zeae.
title_sort putative transcription factor myt1 is required for female fertility in the ascomycete gibberella zeae.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description Gibberella zeae is an important pathogen of major cereal crops. The fungus produces ascospores that forcibly discharge from mature fruiting bodies, which serve as the primary inocula for disease epidemics. In this study, we characterized an insertional mutant Z39P105 with a defect in sexual development and identified a gene encoding a putative transcription factor designated as MYT1. This gene contains a Myb DNA-binding domain and is conserved in the subphylum Pezizomycotina of Ascomycota. The MYT1 protein fused with green fluorescence protein localized in nuclei, which supports its role as a transcriptional regulator. The MYT1 deletion mutant showed similar phenotypes to the wild-type strain in vegetative growth, conidia production and germination, virulence, and mycotoxin production, but had defect in female fertility. A mutant overexpressing MYT1 showed earlier germination, faster mycelia growth, and reduced mycotoxin production compared to the wild-type strain, suggesting that improper MYT1 expression affects the expression of genes involved in the cell cycle and secondary metabolite production. This study is the first to characterize a transcription factor containing a Myb DNA-binding domain that is specific to sexual development in G. zeae.
url http://europepmc.org/articles/PMC3184970?pdf=render
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