Cargando…

The Fungal Pathogen Moniliophthora perniciosa Has Genes Similar to Plant PR-1 That Are Highly Expressed during Its Interaction with Cacao

The widespread SCP/TAPS superfamily (SCP/Tpx-1/Ag5/PR-1/Sc7) has multiple biological functions, including roles in the immune response of plants and animals, development of male reproductive tract in mammals, venom activity in insects and reptiles and host invasion by parasitic worms. Plant Pathogen...

Descripción completa

Detalles Bibliográficos
Autores principales: Teixeira, Paulo J.P.L., Thomazella, Daniela P.T., Vidal, Ramon O., do Prado, Paula F.V., Reis, Osvaldo, Baroni, Renata M., Franco, Sulamita F., Mieczkowski, Piotr, Pereira, Gonçalo A.G., Mondego, Jorge M.C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3447762/
https://www.ncbi.nlm.nih.gov/pubmed/23029323
http://dx.doi.org/10.1371/journal.pone.0045929
_version_ 1782244158355800064
author Teixeira, Paulo J.P.L.
Thomazella, Daniela P.T.
Vidal, Ramon O.
do Prado, Paula F.V.
Reis, Osvaldo
Baroni, Renata M.
Franco, Sulamita F.
Mieczkowski, Piotr
Pereira, Gonçalo A.G.
Mondego, Jorge M.C.
author_facet Teixeira, Paulo J.P.L.
Thomazella, Daniela P.T.
Vidal, Ramon O.
do Prado, Paula F.V.
Reis, Osvaldo
Baroni, Renata M.
Franco, Sulamita F.
Mieczkowski, Piotr
Pereira, Gonçalo A.G.
Mondego, Jorge M.C.
author_sort Teixeira, Paulo J.P.L.
collection PubMed
description The widespread SCP/TAPS superfamily (SCP/Tpx-1/Ag5/PR-1/Sc7) has multiple biological functions, including roles in the immune response of plants and animals, development of male reproductive tract in mammals, venom activity in insects and reptiles and host invasion by parasitic worms. Plant Pathogenesis Related 1 (PR-1) proteins belong to this superfamily and have been characterized as markers of induced defense against pathogens. This work presents the characterization of eleven genes homologous to plant PR-1 genes, designated as MpPR-1, which were identified in the genome of Moniliophthora perniciosa, a basidiomycete fungus responsible for causing the devastating witches' broom disease in cacao. We describe gene structure, protein alignment and modeling analyses of the MpPR-1 family. Additionally, the expression profiles of MpPR-1 genes were assessed by qPCR in different stages throughout the fungal life cycle. A specific expression pattern was verified for each member of the MpPR-1 family in the conditions analyzed. Interestingly, some of them were highly and specifically expressed during the interaction of the fungus with cacao, suggesting a role for the MpPR-1 proteins in the infective process of this pathogen. Hypothetical functions assigned to members of the MpPR-1 family include neutralization of plant defenses, antimicrobial activity to avoid competitors and fruiting body physiology. This study provides strong evidence on the importance of PR-1-like genes for fungal virulence on plants.
format Online
Article
Text
id pubmed-3447762
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-34477622012-10-01 The Fungal Pathogen Moniliophthora perniciosa Has Genes Similar to Plant PR-1 That Are Highly Expressed during Its Interaction with Cacao Teixeira, Paulo J.P.L. Thomazella, Daniela P.T. Vidal, Ramon O. do Prado, Paula F.V. Reis, Osvaldo Baroni, Renata M. Franco, Sulamita F. Mieczkowski, Piotr Pereira, Gonçalo A.G. Mondego, Jorge M.C. PLoS One Research Article The widespread SCP/TAPS superfamily (SCP/Tpx-1/Ag5/PR-1/Sc7) has multiple biological functions, including roles in the immune response of plants and animals, development of male reproductive tract in mammals, venom activity in insects and reptiles and host invasion by parasitic worms. Plant Pathogenesis Related 1 (PR-1) proteins belong to this superfamily and have been characterized as markers of induced defense against pathogens. This work presents the characterization of eleven genes homologous to plant PR-1 genes, designated as MpPR-1, which were identified in the genome of Moniliophthora perniciosa, a basidiomycete fungus responsible for causing the devastating witches' broom disease in cacao. We describe gene structure, protein alignment and modeling analyses of the MpPR-1 family. Additionally, the expression profiles of MpPR-1 genes were assessed by qPCR in different stages throughout the fungal life cycle. A specific expression pattern was verified for each member of the MpPR-1 family in the conditions analyzed. Interestingly, some of them were highly and specifically expressed during the interaction of the fungus with cacao, suggesting a role for the MpPR-1 proteins in the infective process of this pathogen. Hypothetical functions assigned to members of the MpPR-1 family include neutralization of plant defenses, antimicrobial activity to avoid competitors and fruiting body physiology. This study provides strong evidence on the importance of PR-1-like genes for fungal virulence on plants. Public Library of Science 2012-09-20 /pmc/articles/PMC3447762/ /pubmed/23029323 http://dx.doi.org/10.1371/journal.pone.0045929 Text en © 2012 Teixeira et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Teixeira, Paulo J.P.L.
Thomazella, Daniela P.T.
Vidal, Ramon O.
do Prado, Paula F.V.
Reis, Osvaldo
Baroni, Renata M.
Franco, Sulamita F.
Mieczkowski, Piotr
Pereira, Gonçalo A.G.
Mondego, Jorge M.C.
The Fungal Pathogen Moniliophthora perniciosa Has Genes Similar to Plant PR-1 That Are Highly Expressed during Its Interaction with Cacao
title The Fungal Pathogen Moniliophthora perniciosa Has Genes Similar to Plant PR-1 That Are Highly Expressed during Its Interaction with Cacao
title_full The Fungal Pathogen Moniliophthora perniciosa Has Genes Similar to Plant PR-1 That Are Highly Expressed during Its Interaction with Cacao
title_fullStr The Fungal Pathogen Moniliophthora perniciosa Has Genes Similar to Plant PR-1 That Are Highly Expressed during Its Interaction with Cacao
title_full_unstemmed The Fungal Pathogen Moniliophthora perniciosa Has Genes Similar to Plant PR-1 That Are Highly Expressed during Its Interaction with Cacao
title_short The Fungal Pathogen Moniliophthora perniciosa Has Genes Similar to Plant PR-1 That Are Highly Expressed during Its Interaction with Cacao
title_sort fungal pathogen moniliophthora perniciosa has genes similar to plant pr-1 that are highly expressed during its interaction with cacao
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3447762/
https://www.ncbi.nlm.nih.gov/pubmed/23029323
http://dx.doi.org/10.1371/journal.pone.0045929
work_keys_str_mv AT teixeirapaulojpl thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT thomazelladanielapt thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT vidalramono thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT dopradopaulafv thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT reisosvaldo thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT baronirenatam thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT francosulamitaf thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT mieczkowskipiotr thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT pereiragoncaloag thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT mondegojorgemc thefungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT teixeirapaulojpl fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT thomazelladanielapt fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT vidalramono fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT dopradopaulafv fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT reisosvaldo fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT baronirenatam fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT francosulamitaf fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT mieczkowskipiotr fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT pereiragoncaloag fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao
AT mondegojorgemc fungalpathogenmoniliophthoraperniciosahasgenessimilartoplantpr1thatarehighlyexpressedduringitsinteractionwithcacao