Cargando…

The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae

Protein O-mannosylation is a type of O-glycosylation that is characterized by the addition of mannose residues to target proteins, and is initially catalyzed by evolutionarily conserved protein O-mannosyltransferases (PMTs). In this study, three members of PMT were identified in Magnaporthe oryzae,...

Descripción completa

Detalles Bibliográficos
Autores principales: Guo, Min, Tan, Leyong, Nie, Xiang, Zhu, Xiaolei, Pan, Yuemin, Gao, Zhimou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4852298/
https://www.ncbi.nlm.nih.gov/pubmed/27199956
http://dx.doi.org/10.3389/fmicb.2016.00630
_version_ 1782429918720688128
author Guo, Min
Tan, Leyong
Nie, Xiang
Zhu, Xiaolei
Pan, Yuemin
Gao, Zhimou
author_facet Guo, Min
Tan, Leyong
Nie, Xiang
Zhu, Xiaolei
Pan, Yuemin
Gao, Zhimou
author_sort Guo, Min
collection PubMed
description Protein O-mannosylation is a type of O-glycosylation that is characterized by the addition of mannose residues to target proteins, and is initially catalyzed by evolutionarily conserved protein O-mannosyltransferases (PMTs). In this study, three members of PMT were identified in Magnaporthe oryzae, and the pathogenic roles of MoPmt2, a member of PMT2 subfamily, were analyzed. We found that MoPmt2 is a homolog of Saccharomyces cerevisiae Pmt2 and could complement yeast Pmt2 function in resistance to CFW. Quantitative RT–PCR revealed that MoPmt2 is highly expressed during conidiation, and targeted disruption of MoPmt2 resulted in defects in conidiation and conidia morphology. The MoPmt2 mutants also showed a distinct reduction in fungal growth, which was associated with severe alterations in hyphal polarity. In addition, we found that the MoPmt2 mutants severely reduced virulence on both rice plants and barley leaves. The subsequent examination revealed that the fungal adhesion, conidial germination, CWI and invasive hyphae growth in host cells are responsible for defects on appressorium mediated penetration, and thus attenuated the pathogenicity of MoPmt2 mutants. Taken together, our results suggest that protein O-mannosyltransferase MoPmt2 plays essential roles in fungal growth and development, and is required for the full pathogenicity of M. oryzae.
format Online
Article
Text
id pubmed-4852298
institution National Center for Biotechnology Information
language English
publishDate 2016
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-48522982016-05-19 The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae Guo, Min Tan, Leyong Nie, Xiang Zhu, Xiaolei Pan, Yuemin Gao, Zhimou Front Microbiol Plant Science Protein O-mannosylation is a type of O-glycosylation that is characterized by the addition of mannose residues to target proteins, and is initially catalyzed by evolutionarily conserved protein O-mannosyltransferases (PMTs). In this study, three members of PMT were identified in Magnaporthe oryzae, and the pathogenic roles of MoPmt2, a member of PMT2 subfamily, were analyzed. We found that MoPmt2 is a homolog of Saccharomyces cerevisiae Pmt2 and could complement yeast Pmt2 function in resistance to CFW. Quantitative RT–PCR revealed that MoPmt2 is highly expressed during conidiation, and targeted disruption of MoPmt2 resulted in defects in conidiation and conidia morphology. The MoPmt2 mutants also showed a distinct reduction in fungal growth, which was associated with severe alterations in hyphal polarity. In addition, we found that the MoPmt2 mutants severely reduced virulence on both rice plants and barley leaves. The subsequent examination revealed that the fungal adhesion, conidial germination, CWI and invasive hyphae growth in host cells are responsible for defects on appressorium mediated penetration, and thus attenuated the pathogenicity of MoPmt2 mutants. Taken together, our results suggest that protein O-mannosyltransferase MoPmt2 plays essential roles in fungal growth and development, and is required for the full pathogenicity of M. oryzae. Frontiers Media S.A. 2016-05-02 /pmc/articles/PMC4852298/ /pubmed/27199956 http://dx.doi.org/10.3389/fmicb.2016.00630 Text en Copyright © 2016 Guo, Tan, Nie, Zhu, Pan and Gao. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Guo, Min
Tan, Leyong
Nie, Xiang
Zhu, Xiaolei
Pan, Yuemin
Gao, Zhimou
The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae
title The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae
title_full The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae
title_fullStr The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae
title_full_unstemmed The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae
title_short The Pmt2p-Mediated Protein O-Mannosylation Is Required for Morphogenesis, Adhesive Properties, Cell Wall Integrity and Full Virulence of Magnaporthe oryzae
title_sort pmt2p-mediated protein o-mannosylation is required for morphogenesis, adhesive properties, cell wall integrity and full virulence of magnaporthe oryzae
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4852298/
https://www.ncbi.nlm.nih.gov/pubmed/27199956
http://dx.doi.org/10.3389/fmicb.2016.00630
work_keys_str_mv AT guomin thepmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT tanleyong thepmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT niexiang thepmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT zhuxiaolei thepmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT panyuemin thepmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT gaozhimou thepmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT guomin pmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT tanleyong pmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT niexiang pmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT zhuxiaolei pmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT panyuemin pmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae
AT gaozhimou pmt2pmediatedproteinomannosylationisrequiredformorphogenesisadhesivepropertiescellwallintegrityandfullvirulenceofmagnaportheoryzae