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A comprehensive transcription factor and DNA-binding motif resource for the construction of gene regulatory networks in Botrytis cinerea and Trichoderma atroviride

Botrytis cinerea and Trichoderma atroviride are two relevant fungi in agricultural systems. To gain insights into these organisms’ transcriptional gene regulatory networks (GRNs), we generated a manually curated transcription factor (TF) dataset for each of them, followed by a GRN inference utilizin...

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Autores principales: Olivares-Yañez, Consuelo, Sánchez, Evelyn, Pérez-Lara, Gabriel, Seguel, Aldo, Camejo, Pamela Y., Larrondo, Luis F., Vidal, Elena A., Canessa, Paulo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Research Network of Computational and Structural Biotechnology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8637145/
https://www.ncbi.nlm.nih.gov/pubmed/34900134
http://dx.doi.org/10.1016/j.csbj.2021.11.012
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author Olivares-Yañez, Consuelo
Sánchez, Evelyn
Pérez-Lara, Gabriel
Seguel, Aldo
Camejo, Pamela Y.
Larrondo, Luis F.
Vidal, Elena A.
Canessa, Paulo
author_facet Olivares-Yañez, Consuelo
Sánchez, Evelyn
Pérez-Lara, Gabriel
Seguel, Aldo
Camejo, Pamela Y.
Larrondo, Luis F.
Vidal, Elena A.
Canessa, Paulo
author_sort Olivares-Yañez, Consuelo
collection PubMed
description Botrytis cinerea and Trichoderma atroviride are two relevant fungi in agricultural systems. To gain insights into these organisms’ transcriptional gene regulatory networks (GRNs), we generated a manually curated transcription factor (TF) dataset for each of them, followed by a GRN inference utilizing available sequence motifs describing DNA-binding specificity and global gene expression data. As a proof of concept of the usefulness of this resource to pinpoint key transcriptional regulators, we employed publicly available transcriptomics data and a newly generated dual RNA-seq dataset to build context-specific Botrytis and Trichoderma GRNs under two different biological paradigms: exposure to continuous light and Botrytis-Trichoderma confrontation assays. Network analysis of fungal responses to constant light revealed striking differences in the transcriptional landscape of both fungi. On the other hand, we found that the confrontation of both microorganisms elicited a distinct set of differentially expressed genes with changes in T. atroviride exceeding those in B. cinerea. Using our regulatory network data, we were able to determine, in both fungi, central TFs involved in this interaction response, including TFs controlling a large set of extracellular peptidases in the biocontrol agent T. atroviride. In summary, our work provides a comprehensive catalog of transcription factors and regulatory interactions for both organisms. This catalog can now serve as a basis for generating novel hypotheses on transcriptional regulatory circuits in different experimental contexts.
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spelling pubmed-86371452021-12-09 A comprehensive transcription factor and DNA-binding motif resource for the construction of gene regulatory networks in Botrytis cinerea and Trichoderma atroviride Olivares-Yañez, Consuelo Sánchez, Evelyn Pérez-Lara, Gabriel Seguel, Aldo Camejo, Pamela Y. Larrondo, Luis F. Vidal, Elena A. Canessa, Paulo Comput Struct Biotechnol J Research Article Botrytis cinerea and Trichoderma atroviride are two relevant fungi in agricultural systems. To gain insights into these organisms’ transcriptional gene regulatory networks (GRNs), we generated a manually curated transcription factor (TF) dataset for each of them, followed by a GRN inference utilizing available sequence motifs describing DNA-binding specificity and global gene expression data. As a proof of concept of the usefulness of this resource to pinpoint key transcriptional regulators, we employed publicly available transcriptomics data and a newly generated dual RNA-seq dataset to build context-specific Botrytis and Trichoderma GRNs under two different biological paradigms: exposure to continuous light and Botrytis-Trichoderma confrontation assays. Network analysis of fungal responses to constant light revealed striking differences in the transcriptional landscape of both fungi. On the other hand, we found that the confrontation of both microorganisms elicited a distinct set of differentially expressed genes with changes in T. atroviride exceeding those in B. cinerea. Using our regulatory network data, we were able to determine, in both fungi, central TFs involved in this interaction response, including TFs controlling a large set of extracellular peptidases in the biocontrol agent T. atroviride. In summary, our work provides a comprehensive catalog of transcription factors and regulatory interactions for both organisms. This catalog can now serve as a basis for generating novel hypotheses on transcriptional regulatory circuits in different experimental contexts. Research Network of Computational and Structural Biotechnology 2021-11-18 /pmc/articles/PMC8637145/ /pubmed/34900134 http://dx.doi.org/10.1016/j.csbj.2021.11.012 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Olivares-Yañez, Consuelo
Sánchez, Evelyn
Pérez-Lara, Gabriel
Seguel, Aldo
Camejo, Pamela Y.
Larrondo, Luis F.
Vidal, Elena A.
Canessa, Paulo
A comprehensive transcription factor and DNA-binding motif resource for the construction of gene regulatory networks in Botrytis cinerea and Trichoderma atroviride
title A comprehensive transcription factor and DNA-binding motif resource for the construction of gene regulatory networks in Botrytis cinerea and Trichoderma atroviride
title_full A comprehensive transcription factor and DNA-binding motif resource for the construction of gene regulatory networks in Botrytis cinerea and Trichoderma atroviride
title_fullStr A comprehensive transcription factor and DNA-binding motif resource for the construction of gene regulatory networks in Botrytis cinerea and Trichoderma atroviride
title_full_unstemmed A comprehensive transcription factor and DNA-binding motif resource for the construction of gene regulatory networks in Botrytis cinerea and Trichoderma atroviride
title_short A comprehensive transcription factor and DNA-binding motif resource for the construction of gene regulatory networks in Botrytis cinerea and Trichoderma atroviride
title_sort comprehensive transcription factor and dna-binding motif resource for the construction of gene regulatory networks in botrytis cinerea and trichoderma atroviride
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8637145/
https://www.ncbi.nlm.nih.gov/pubmed/34900134
http://dx.doi.org/10.1016/j.csbj.2021.11.012
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