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Gene Regulatory Networks of Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 Inferred by a Computational Biology Approach

Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 are well-known cellulase fungal producers. However, few studies addressing global mechanisms for gene regulation of these two important organisms are available so far. A recent finding that the 2HH wild-type is closely related to P. oxalicum...

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Autores principales: Lenz, Alexandre Rafael, Galán-Vásquez, Edgardo, Balbinot, Eduardo, de Abreu, Fernanda Pessi, Souza de Oliveira, Nikael, da Rosa, Letícia Osório, de Avila e Silva, Scheila, Camassola, Marli, Dillon, Aldo José Pinheiro, Perez-Rueda, Ernesto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7652724/
https://www.ncbi.nlm.nih.gov/pubmed/33193246
http://dx.doi.org/10.3389/fmicb.2020.588263
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author Lenz, Alexandre Rafael
Galán-Vásquez, Edgardo
Balbinot, Eduardo
de Abreu, Fernanda Pessi
Souza de Oliveira, Nikael
da Rosa, Letícia Osório
de Avila e Silva, Scheila
Camassola, Marli
Dillon, Aldo José Pinheiro
Perez-Rueda, Ernesto
author_facet Lenz, Alexandre Rafael
Galán-Vásquez, Edgardo
Balbinot, Eduardo
de Abreu, Fernanda Pessi
Souza de Oliveira, Nikael
da Rosa, Letícia Osório
de Avila e Silva, Scheila
Camassola, Marli
Dillon, Aldo José Pinheiro
Perez-Rueda, Ernesto
author_sort Lenz, Alexandre Rafael
collection PubMed
description Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 are well-known cellulase fungal producers. However, few studies addressing global mechanisms for gene regulation of these two important organisms are available so far. A recent finding that the 2HH wild-type is closely related to P. oxalicum leads to a combined study of these two species. Firstly, we provide a global gene regulatory network for P. echinulatum 2HH and P. oxalicum 114-2, based on TF-TG orthology relationships, considering three related species with well-known regulatory interactions combined with TFBSs prediction. The network was then analyzed in terms of topology, identifying TFs as hubs, and modules. Based on this approach, we explore numerous identified modules, such as the expression of cellulolytic and xylanolytic systems, where XlnR plays a key role in positive regulation of the xylanolytic system. It also regulates positively the cellulolytic system by acting indirectly through the cellodextrin induction system. This remarkable finding suggests that the XlnR-dependent cellulolytic and xylanolytic regulatory systems are probably conserved in both P. echinulatum and P. oxalicum. Finally, we explore the functional congruency on the genes clustered in terms of communities, where the genes related to cellular nitrogen, compound metabolic process and macromolecule metabolic process were the most abundant. Therefore, our approach allows us to confer a degree of accuracy regarding the existence of each inferred interaction.
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spelling pubmed-76527242020-11-13 Gene Regulatory Networks of Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 Inferred by a Computational Biology Approach Lenz, Alexandre Rafael Galán-Vásquez, Edgardo Balbinot, Eduardo de Abreu, Fernanda Pessi Souza de Oliveira, Nikael da Rosa, Letícia Osório de Avila e Silva, Scheila Camassola, Marli Dillon, Aldo José Pinheiro Perez-Rueda, Ernesto Front Microbiol Microbiology Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 are well-known cellulase fungal producers. However, few studies addressing global mechanisms for gene regulation of these two important organisms are available so far. A recent finding that the 2HH wild-type is closely related to P. oxalicum leads to a combined study of these two species. Firstly, we provide a global gene regulatory network for P. echinulatum 2HH and P. oxalicum 114-2, based on TF-TG orthology relationships, considering three related species with well-known regulatory interactions combined with TFBSs prediction. The network was then analyzed in terms of topology, identifying TFs as hubs, and modules. Based on this approach, we explore numerous identified modules, such as the expression of cellulolytic and xylanolytic systems, where XlnR plays a key role in positive regulation of the xylanolytic system. It also regulates positively the cellulolytic system by acting indirectly through the cellodextrin induction system. This remarkable finding suggests that the XlnR-dependent cellulolytic and xylanolytic regulatory systems are probably conserved in both P. echinulatum and P. oxalicum. Finally, we explore the functional congruency on the genes clustered in terms of communities, where the genes related to cellular nitrogen, compound metabolic process and macromolecule metabolic process were the most abundant. Therefore, our approach allows us to confer a degree of accuracy regarding the existence of each inferred interaction. Frontiers Media S.A. 2020-10-27 /pmc/articles/PMC7652724/ /pubmed/33193246 http://dx.doi.org/10.3389/fmicb.2020.588263 Text en Copyright © 2020 Lenz, Galán-Vásquez, Balbinot, de Abreu, Souza de Oliveira, da Rosa, de Avila e Silva, Camassola, Dillon and Perez-Rueda. 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) and the copyright owner(s) 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 Microbiology
Lenz, Alexandre Rafael
Galán-Vásquez, Edgardo
Balbinot, Eduardo
de Abreu, Fernanda Pessi
Souza de Oliveira, Nikael
da Rosa, Letícia Osório
de Avila e Silva, Scheila
Camassola, Marli
Dillon, Aldo José Pinheiro
Perez-Rueda, Ernesto
Gene Regulatory Networks of Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 Inferred by a Computational Biology Approach
title Gene Regulatory Networks of Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 Inferred by a Computational Biology Approach
title_full Gene Regulatory Networks of Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 Inferred by a Computational Biology Approach
title_fullStr Gene Regulatory Networks of Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 Inferred by a Computational Biology Approach
title_full_unstemmed Gene Regulatory Networks of Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 Inferred by a Computational Biology Approach
title_short Gene Regulatory Networks of Penicillium echinulatum 2HH and Penicillium oxalicum 114-2 Inferred by a Computational Biology Approach
title_sort gene regulatory networks of penicillium echinulatum 2hh and penicillium oxalicum 114-2 inferred by a computational biology approach
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7652724/
https://www.ncbi.nlm.nih.gov/pubmed/33193246
http://dx.doi.org/10.3389/fmicb.2020.588263
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