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Pseudocercospora fijiensis Conidial Germination Is Dominated by Pathogenicity Factors and Effectors

Conidia play a vital role in the survival and rapid spread of fungi. Many biological processes of conidia, such as adhesion, signal transduction, the regulation of oxidative stress, and autophagy, have been well studied. In contrast, the contribution of pathogenicity factors during the development o...

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Autores principales: Carreón-Anguiano, Karla Gisel, Gómez-Tah, Rufino, Pech-Balan, Efren, Ek-Hernández, Gemaly Elisama, De los Santos-Briones, César, Islas-Flores, Ignacio, Canto-Canché, Blondy
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10607838/
https://www.ncbi.nlm.nih.gov/pubmed/37888226
http://dx.doi.org/10.3390/jof9100970
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author Carreón-Anguiano, Karla Gisel
Gómez-Tah, Rufino
Pech-Balan, Efren
Ek-Hernández, Gemaly Elisama
De los Santos-Briones, César
Islas-Flores, Ignacio
Canto-Canché, Blondy
author_facet Carreón-Anguiano, Karla Gisel
Gómez-Tah, Rufino
Pech-Balan, Efren
Ek-Hernández, Gemaly Elisama
De los Santos-Briones, César
Islas-Flores, Ignacio
Canto-Canché, Blondy
author_sort Carreón-Anguiano, Karla Gisel
collection PubMed
description Conidia play a vital role in the survival and rapid spread of fungi. Many biological processes of conidia, such as adhesion, signal transduction, the regulation of oxidative stress, and autophagy, have been well studied. In contrast, the contribution of pathogenicity factors during the development of conidia in fungal phytopathogens has been poorly investigated. To date, few reports have centered on the pathogenicity functions of fungal phytopathogen conidia. Pseudocercospora fijiensis is a hemibiotrophic fungus and the causal agent of the black Sigatoka disease in bananas and plantains. Here, a conidial transcriptome of P. fijiensis was characterized computationally. Carbohydrates, amino acids, and lipid metabolisms presented the highest number of annotations in Gene Ontology. Common conidial functions were found, but interestingly, pathogenicity factors and effectors were also identified. Upon analysis of the resulting proteins against the Pathogen–Host Interaction (PHI) database, 754 hits were identified. WideEffHunter and EffHunter effector predictors identified 618 effectors, 265 of them were shared with the PHI database. A total of 1107 conidial functions devoted to pathogenesis were found after our analysis. Regarding the conidial effectorome, it was found to comprise 40 canonical and 578 non-canonical effectors. Effectorome characterization revealed that RXLR, LysM, and Y/F/WxC are the largest effector families in the P. fijiensis conidial effectorome. Gene Ontology classification suggests that they are involved in many biological processes and metabolisms, expanding our current knowledge of fungal effectors.
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spelling pubmed-106078382023-10-28 Pseudocercospora fijiensis Conidial Germination Is Dominated by Pathogenicity Factors and Effectors Carreón-Anguiano, Karla Gisel Gómez-Tah, Rufino Pech-Balan, Efren Ek-Hernández, Gemaly Elisama De los Santos-Briones, César Islas-Flores, Ignacio Canto-Canché, Blondy J Fungi (Basel) Article Conidia play a vital role in the survival and rapid spread of fungi. Many biological processes of conidia, such as adhesion, signal transduction, the regulation of oxidative stress, and autophagy, have been well studied. In contrast, the contribution of pathogenicity factors during the development of conidia in fungal phytopathogens has been poorly investigated. To date, few reports have centered on the pathogenicity functions of fungal phytopathogen conidia. Pseudocercospora fijiensis is a hemibiotrophic fungus and the causal agent of the black Sigatoka disease in bananas and plantains. Here, a conidial transcriptome of P. fijiensis was characterized computationally. Carbohydrates, amino acids, and lipid metabolisms presented the highest number of annotations in Gene Ontology. Common conidial functions were found, but interestingly, pathogenicity factors and effectors were also identified. Upon analysis of the resulting proteins against the Pathogen–Host Interaction (PHI) database, 754 hits were identified. WideEffHunter and EffHunter effector predictors identified 618 effectors, 265 of them were shared with the PHI database. A total of 1107 conidial functions devoted to pathogenesis were found after our analysis. Regarding the conidial effectorome, it was found to comprise 40 canonical and 578 non-canonical effectors. Effectorome characterization revealed that RXLR, LysM, and Y/F/WxC are the largest effector families in the P. fijiensis conidial effectorome. Gene Ontology classification suggests that they are involved in many biological processes and metabolisms, expanding our current knowledge of fungal effectors. MDPI 2023-09-27 /pmc/articles/PMC10607838/ /pubmed/37888226 http://dx.doi.org/10.3390/jof9100970 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Carreón-Anguiano, Karla Gisel
Gómez-Tah, Rufino
Pech-Balan, Efren
Ek-Hernández, Gemaly Elisama
De los Santos-Briones, César
Islas-Flores, Ignacio
Canto-Canché, Blondy
Pseudocercospora fijiensis Conidial Germination Is Dominated by Pathogenicity Factors and Effectors
title Pseudocercospora fijiensis Conidial Germination Is Dominated by Pathogenicity Factors and Effectors
title_full Pseudocercospora fijiensis Conidial Germination Is Dominated by Pathogenicity Factors and Effectors
title_fullStr Pseudocercospora fijiensis Conidial Germination Is Dominated by Pathogenicity Factors and Effectors
title_full_unstemmed Pseudocercospora fijiensis Conidial Germination Is Dominated by Pathogenicity Factors and Effectors
title_short Pseudocercospora fijiensis Conidial Germination Is Dominated by Pathogenicity Factors and Effectors
title_sort pseudocercospora fijiensis conidial germination is dominated by pathogenicity factors and effectors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10607838/
https://www.ncbi.nlm.nih.gov/pubmed/37888226
http://dx.doi.org/10.3390/jof9100970
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