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Osmolyte Signatures for the Protection of Aspergillus sydowii Cells under Halophilic Conditions and Osmotic Shock

Aspergillus sydowii is a moderate halophile fungus extensively studied for its biotechnological potential and halophile responses, which has also been reported as a coral reef pathogen. In a recent publication, the transcriptomic analysis of this fungus, when growing on wheat straw, showed that gene...

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Autores principales: Rodríguez-Pupo, Eya Caridad, Pérez-Llano, Yordanis, Tinoco-Valencia, José Raunel, Sánchez, Norma Silvia, Padilla-Garfias, Francisco, Calahorra, Martha, Sánchez, Nilda del C., Sánchez-Reyes, Ayixón, Rodríguez-Hernández, María del Rocío, Peña, Antonio, Sánchez, Olivia, Aguirre, Jesús, Batista-García, Ramón Alberto, Folch-Mallol, Jorge Luis, Sánchez-Carbente, María del Rayo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8228332/
https://www.ncbi.nlm.nih.gov/pubmed/34073303
http://dx.doi.org/10.3390/jof7060414
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author Rodríguez-Pupo, Eya Caridad
Pérez-Llano, Yordanis
Tinoco-Valencia, José Raunel
Sánchez, Norma Silvia
Padilla-Garfias, Francisco
Calahorra, Martha
Sánchez, Nilda del C.
Sánchez-Reyes, Ayixón
Rodríguez-Hernández, María del Rocío
Peña, Antonio
Sánchez, Olivia
Aguirre, Jesús
Batista-García, Ramón Alberto
Folch-Mallol, Jorge Luis
Sánchez-Carbente, María del Rayo
author_facet Rodríguez-Pupo, Eya Caridad
Pérez-Llano, Yordanis
Tinoco-Valencia, José Raunel
Sánchez, Norma Silvia
Padilla-Garfias, Francisco
Calahorra, Martha
Sánchez, Nilda del C.
Sánchez-Reyes, Ayixón
Rodríguez-Hernández, María del Rocío
Peña, Antonio
Sánchez, Olivia
Aguirre, Jesús
Batista-García, Ramón Alberto
Folch-Mallol, Jorge Luis
Sánchez-Carbente, María del Rayo
author_sort Rodríguez-Pupo, Eya Caridad
collection PubMed
description Aspergillus sydowii is a moderate halophile fungus extensively studied for its biotechnological potential and halophile responses, which has also been reported as a coral reef pathogen. In a recent publication, the transcriptomic analysis of this fungus, when growing on wheat straw, showed that genes related to cell wall modification and cation transporters were upregulated under hypersaline conditions but not under 0.5 M NaCl, the optimal salinity for growth in this strain. This led us to study osmolyte accumulation as a mechanism to withstand moderate salinity. In this work, we show that A. sydowii accumulates trehalose, arabitol, mannitol, and glycerol with different temporal dynamics, which depend on whether the fungus is exposed to hypo- or hyperosmotic stress. The transcripts coding for enzymes responsible for polyalcohol synthesis were regulated in a stress-dependent manner. Interestingly, A. sydowii contains three homologs (Hog1, Hog2 and MpkC) of the Hog1 MAPK, the master regulator of hyperosmotic stress response in S. cerevisiae and other fungi. We show a differential regulation of these MAPKs under different salinity conditions, including sustained basal Hog1/Hog2 phosphorylation levels in the absence of NaCl or in the presence of 2.0 M NaCl, in contrast to what is observed in S. cerevisiae. These findings indicate that halophilic fungi such as A. sydowii utilize different osmoadaptation mechanisms to hypersaline conditions.
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spelling pubmed-82283322021-06-26 Osmolyte Signatures for the Protection of Aspergillus sydowii Cells under Halophilic Conditions and Osmotic Shock Rodríguez-Pupo, Eya Caridad Pérez-Llano, Yordanis Tinoco-Valencia, José Raunel Sánchez, Norma Silvia Padilla-Garfias, Francisco Calahorra, Martha Sánchez, Nilda del C. Sánchez-Reyes, Ayixón Rodríguez-Hernández, María del Rocío Peña, Antonio Sánchez, Olivia Aguirre, Jesús Batista-García, Ramón Alberto Folch-Mallol, Jorge Luis Sánchez-Carbente, María del Rayo J Fungi (Basel) Article Aspergillus sydowii is a moderate halophile fungus extensively studied for its biotechnological potential and halophile responses, which has also been reported as a coral reef pathogen. In a recent publication, the transcriptomic analysis of this fungus, when growing on wheat straw, showed that genes related to cell wall modification and cation transporters were upregulated under hypersaline conditions but not under 0.5 M NaCl, the optimal salinity for growth in this strain. This led us to study osmolyte accumulation as a mechanism to withstand moderate salinity. In this work, we show that A. sydowii accumulates trehalose, arabitol, mannitol, and glycerol with different temporal dynamics, which depend on whether the fungus is exposed to hypo- or hyperosmotic stress. The transcripts coding for enzymes responsible for polyalcohol synthesis were regulated in a stress-dependent manner. Interestingly, A. sydowii contains three homologs (Hog1, Hog2 and MpkC) of the Hog1 MAPK, the master regulator of hyperosmotic stress response in S. cerevisiae and other fungi. We show a differential regulation of these MAPKs under different salinity conditions, including sustained basal Hog1/Hog2 phosphorylation levels in the absence of NaCl or in the presence of 2.0 M NaCl, in contrast to what is observed in S. cerevisiae. These findings indicate that halophilic fungi such as A. sydowii utilize different osmoadaptation mechanisms to hypersaline conditions. MDPI 2021-05-26 /pmc/articles/PMC8228332/ /pubmed/34073303 http://dx.doi.org/10.3390/jof7060414 Text en © 2021 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
Rodríguez-Pupo, Eya Caridad
Pérez-Llano, Yordanis
Tinoco-Valencia, José Raunel
Sánchez, Norma Silvia
Padilla-Garfias, Francisco
Calahorra, Martha
Sánchez, Nilda del C.
Sánchez-Reyes, Ayixón
Rodríguez-Hernández, María del Rocío
Peña, Antonio
Sánchez, Olivia
Aguirre, Jesús
Batista-García, Ramón Alberto
Folch-Mallol, Jorge Luis
Sánchez-Carbente, María del Rayo
Osmolyte Signatures for the Protection of Aspergillus sydowii Cells under Halophilic Conditions and Osmotic Shock
title Osmolyte Signatures for the Protection of Aspergillus sydowii Cells under Halophilic Conditions and Osmotic Shock
title_full Osmolyte Signatures for the Protection of Aspergillus sydowii Cells under Halophilic Conditions and Osmotic Shock
title_fullStr Osmolyte Signatures for the Protection of Aspergillus sydowii Cells under Halophilic Conditions and Osmotic Shock
title_full_unstemmed Osmolyte Signatures for the Protection of Aspergillus sydowii Cells under Halophilic Conditions and Osmotic Shock
title_short Osmolyte Signatures for the Protection of Aspergillus sydowii Cells under Halophilic Conditions and Osmotic Shock
title_sort osmolyte signatures for the protection of aspergillus sydowii cells under halophilic conditions and osmotic shock
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8228332/
https://www.ncbi.nlm.nih.gov/pubmed/34073303
http://dx.doi.org/10.3390/jof7060414
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