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Unraveling the Secrets of a Double-Life Fungus by Genomics: Ophiocordyceps australis CCMB661 Displays Molecular Machinery for Both Parasitic and Endophytic Lifestyles
Ophiocordyceps australis (Ascomycota, Hypocreales, Ophiocordycipitaceae) is a classic entomopathogenic fungus that parasitizes ants (Hymenoptera, Ponerinae, Ponerini). Nonetheless, according to our results, this fungal species also exhibits a complete set of genes coding for plant cell wall degradin...
Autores principales: | , , , , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9864599/ https://www.ncbi.nlm.nih.gov/pubmed/36675931 http://dx.doi.org/10.3390/jof9010110 |
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author | de Menezes, Thaís Almeida Aburjaile, Flávia Figueira Quintanilha-Peixoto, Gabriel Tomé, Luiz Marcelo Ribeiro Fonseca, Paula Luize Camargos Mendes-Pereira, Thairine Araújo, Daniel Silva Melo, Tarcisio Silva Kato, Rodrigo Bentes Delabie, Jacques Hubert Charles Ribeiro, Sérvio Pontes Brenig, Bertram Azevedo, Vasco Drechsler-Santos, Elisandro Ricardo Andrade, Bruno Silva Góes-Neto, Aristóteles |
author_facet | de Menezes, Thaís Almeida Aburjaile, Flávia Figueira Quintanilha-Peixoto, Gabriel Tomé, Luiz Marcelo Ribeiro Fonseca, Paula Luize Camargos Mendes-Pereira, Thairine Araújo, Daniel Silva Melo, Tarcisio Silva Kato, Rodrigo Bentes Delabie, Jacques Hubert Charles Ribeiro, Sérvio Pontes Brenig, Bertram Azevedo, Vasco Drechsler-Santos, Elisandro Ricardo Andrade, Bruno Silva Góes-Neto, Aristóteles |
author_sort | de Menezes, Thaís Almeida |
collection | PubMed |
description | Ophiocordyceps australis (Ascomycota, Hypocreales, Ophiocordycipitaceae) is a classic entomopathogenic fungus that parasitizes ants (Hymenoptera, Ponerinae, Ponerini). Nonetheless, according to our results, this fungal species also exhibits a complete set of genes coding for plant cell wall degrading Carbohydrate-Active enZymes (CAZymes), enabling a full endophytic stage and, consequently, its dual ability to both parasitize insects and live inside plant tissue. The main objective of our study was the sequencing and full characterization of the genome of the fungal strain of O. australis (CCMB661) and its predicted secretome. The assembled genome had a total length of 30.31 Mb, N50 of 92.624 bp, GC content of 46.36%, and 8,043 protein-coding genes, 175 of which encoded CAZymes. In addition, the primary genes encoding proteins and critical enzymes during the infection process and those responsible for the host–pathogen interaction have been identified, including proteases (Pr1, Pr4), aminopeptidases, chitinases (Cht2), adhesins, lectins, lipases, and behavioral manipulators, such as enterotoxins, Protein Tyrosine Phosphatases (PTPs), and Glycoside Hydrolases (GHs). Our findings indicate that the presence of genes coding for Mad2 and GHs in O. australis may facilitate the infection process in plants, suggesting interkingdom colonization. Furthermore, our study elucidated the pathogenicity mechanisms for this Ophiocordyceps species, which still is scarcely studied. |
format | Online Article Text |
id | pubmed-9864599 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-98645992023-01-22 Unraveling the Secrets of a Double-Life Fungus by Genomics: Ophiocordyceps australis CCMB661 Displays Molecular Machinery for Both Parasitic and Endophytic Lifestyles de Menezes, Thaís Almeida Aburjaile, Flávia Figueira Quintanilha-Peixoto, Gabriel Tomé, Luiz Marcelo Ribeiro Fonseca, Paula Luize Camargos Mendes-Pereira, Thairine Araújo, Daniel Silva Melo, Tarcisio Silva Kato, Rodrigo Bentes Delabie, Jacques Hubert Charles Ribeiro, Sérvio Pontes Brenig, Bertram Azevedo, Vasco Drechsler-Santos, Elisandro Ricardo Andrade, Bruno Silva Góes-Neto, Aristóteles J Fungi (Basel) Article Ophiocordyceps australis (Ascomycota, Hypocreales, Ophiocordycipitaceae) is a classic entomopathogenic fungus that parasitizes ants (Hymenoptera, Ponerinae, Ponerini). Nonetheless, according to our results, this fungal species also exhibits a complete set of genes coding for plant cell wall degrading Carbohydrate-Active enZymes (CAZymes), enabling a full endophytic stage and, consequently, its dual ability to both parasitize insects and live inside plant tissue. The main objective of our study was the sequencing and full characterization of the genome of the fungal strain of O. australis (CCMB661) and its predicted secretome. The assembled genome had a total length of 30.31 Mb, N50 of 92.624 bp, GC content of 46.36%, and 8,043 protein-coding genes, 175 of which encoded CAZymes. In addition, the primary genes encoding proteins and critical enzymes during the infection process and those responsible for the host–pathogen interaction have been identified, including proteases (Pr1, Pr4), aminopeptidases, chitinases (Cht2), adhesins, lectins, lipases, and behavioral manipulators, such as enterotoxins, Protein Tyrosine Phosphatases (PTPs), and Glycoside Hydrolases (GHs). Our findings indicate that the presence of genes coding for Mad2 and GHs in O. australis may facilitate the infection process in plants, suggesting interkingdom colonization. Furthermore, our study elucidated the pathogenicity mechanisms for this Ophiocordyceps species, which still is scarcely studied. MDPI 2023-01-13 /pmc/articles/PMC9864599/ /pubmed/36675931 http://dx.doi.org/10.3390/jof9010110 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 de Menezes, Thaís Almeida Aburjaile, Flávia Figueira Quintanilha-Peixoto, Gabriel Tomé, Luiz Marcelo Ribeiro Fonseca, Paula Luize Camargos Mendes-Pereira, Thairine Araújo, Daniel Silva Melo, Tarcisio Silva Kato, Rodrigo Bentes Delabie, Jacques Hubert Charles Ribeiro, Sérvio Pontes Brenig, Bertram Azevedo, Vasco Drechsler-Santos, Elisandro Ricardo Andrade, Bruno Silva Góes-Neto, Aristóteles Unraveling the Secrets of a Double-Life Fungus by Genomics: Ophiocordyceps australis CCMB661 Displays Molecular Machinery for Both Parasitic and Endophytic Lifestyles |
title | Unraveling the Secrets of a Double-Life Fungus by Genomics: Ophiocordyceps australis CCMB661 Displays Molecular Machinery for Both Parasitic and Endophytic Lifestyles |
title_full | Unraveling the Secrets of a Double-Life Fungus by Genomics: Ophiocordyceps australis CCMB661 Displays Molecular Machinery for Both Parasitic and Endophytic Lifestyles |
title_fullStr | Unraveling the Secrets of a Double-Life Fungus by Genomics: Ophiocordyceps australis CCMB661 Displays Molecular Machinery for Both Parasitic and Endophytic Lifestyles |
title_full_unstemmed | Unraveling the Secrets of a Double-Life Fungus by Genomics: Ophiocordyceps australis CCMB661 Displays Molecular Machinery for Both Parasitic and Endophytic Lifestyles |
title_short | Unraveling the Secrets of a Double-Life Fungus by Genomics: Ophiocordyceps australis CCMB661 Displays Molecular Machinery for Both Parasitic and Endophytic Lifestyles |
title_sort | unraveling the secrets of a double-life fungus by genomics: ophiocordyceps australis ccmb661 displays molecular machinery for both parasitic and endophytic lifestyles |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9864599/ https://www.ncbi.nlm.nih.gov/pubmed/36675931 http://dx.doi.org/10.3390/jof9010110 |
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