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Haloadaptative Responses of Aspergillus sydowii to Extreme Water Deprivation: Morphology, Compatible Solutes, and Oxidative Stress at NaCl Saturation

Water activity (a(w)) is critical for microbial growth, as it is severely restricted at a(w) < 0.90. Saturating NaCl concentrations (~5.0 M) induce extreme water deprivation (a(w) ≅ 0.75) and cellular stress responses. Halophilic fungi have cellular adaptations that enable osmotic balance and ion...

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Autores principales: Jiménez-Gómez, Irina, Valdés-Muñoz, Gisell, Moreno-Perlin, Tonatiuh, Mouriño-Pérez, Rosa R., Sánchez-Carbente, María del Rayo, Folch-Mallol, Jorge Luis, Pérez-Llano, Yordanis, Gunde-Cimerman, Nina, Sánchez, Nilda del C., Batista-García, Ramón Alberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7711451/
https://www.ncbi.nlm.nih.gov/pubmed/33260894
http://dx.doi.org/10.3390/jof6040316
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author Jiménez-Gómez, Irina
Valdés-Muñoz, Gisell
Moreno-Perlin, Tonatiuh
Mouriño-Pérez, Rosa R.
Sánchez-Carbente, María del Rayo
Folch-Mallol, Jorge Luis
Pérez-Llano, Yordanis
Gunde-Cimerman, Nina
Sánchez, Nilda del C.
Batista-García, Ramón Alberto
author_facet Jiménez-Gómez, Irina
Valdés-Muñoz, Gisell
Moreno-Perlin, Tonatiuh
Mouriño-Pérez, Rosa R.
Sánchez-Carbente, María del Rayo
Folch-Mallol, Jorge Luis
Pérez-Llano, Yordanis
Gunde-Cimerman, Nina
Sánchez, Nilda del C.
Batista-García, Ramón Alberto
author_sort Jiménez-Gómez, Irina
collection PubMed
description Water activity (a(w)) is critical for microbial growth, as it is severely restricted at a(w) < 0.90. Saturating NaCl concentrations (~5.0 M) induce extreme water deprivation (a(w) ≅ 0.75) and cellular stress responses. Halophilic fungi have cellular adaptations that enable osmotic balance and ionic/oxidative stress prevention to grow at high salinity. Here we studied the morphology, osmolyte synthesis, and oxidative stress defenses of the halophile Aspergillus sydowii EXF-12860 at 1.0 M and 5.13 M NaCl. Colony growth, pigmentation, exudate, and spore production were inhibited at NaCl-saturated media. Additionally, hyphae showed unpolarized growth, lower diameter, and increased septation, multicellularity and branching compared to optimal NaCl concentration. Trehalose, mannitol, arabitol, erythritol, and glycerol were produced in the presence of both 1.0 M and 5.13 M NaCl. Exposing A. sydowii cells to 5.13 M NaCl resulted in oxidative stress evidenced by an increase in antioxidant enzymes and lipid peroxidation biomarkers. Also, genes involved in cellular antioxidant defense systems were upregulated. This is the most comprehensive study that investigates the micromorphology and the adaptative cellular response of different non-enzymatic and enzymatic oxidative stress biomarkers in halophilic filamentous fungi.
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spelling pubmed-77114512020-12-04 Haloadaptative Responses of Aspergillus sydowii to Extreme Water Deprivation: Morphology, Compatible Solutes, and Oxidative Stress at NaCl Saturation Jiménez-Gómez, Irina Valdés-Muñoz, Gisell Moreno-Perlin, Tonatiuh Mouriño-Pérez, Rosa R. Sánchez-Carbente, María del Rayo Folch-Mallol, Jorge Luis Pérez-Llano, Yordanis Gunde-Cimerman, Nina Sánchez, Nilda del C. Batista-García, Ramón Alberto J Fungi (Basel) Article Water activity (a(w)) is critical for microbial growth, as it is severely restricted at a(w) < 0.90. Saturating NaCl concentrations (~5.0 M) induce extreme water deprivation (a(w) ≅ 0.75) and cellular stress responses. Halophilic fungi have cellular adaptations that enable osmotic balance and ionic/oxidative stress prevention to grow at high salinity. Here we studied the morphology, osmolyte synthesis, and oxidative stress defenses of the halophile Aspergillus sydowii EXF-12860 at 1.0 M and 5.13 M NaCl. Colony growth, pigmentation, exudate, and spore production were inhibited at NaCl-saturated media. Additionally, hyphae showed unpolarized growth, lower diameter, and increased septation, multicellularity and branching compared to optimal NaCl concentration. Trehalose, mannitol, arabitol, erythritol, and glycerol were produced in the presence of both 1.0 M and 5.13 M NaCl. Exposing A. sydowii cells to 5.13 M NaCl resulted in oxidative stress evidenced by an increase in antioxidant enzymes and lipid peroxidation biomarkers. Also, genes involved in cellular antioxidant defense systems were upregulated. This is the most comprehensive study that investigates the micromorphology and the adaptative cellular response of different non-enzymatic and enzymatic oxidative stress biomarkers in halophilic filamentous fungi. MDPI 2020-11-27 /pmc/articles/PMC7711451/ /pubmed/33260894 http://dx.doi.org/10.3390/jof6040316 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Jiménez-Gómez, Irina
Valdés-Muñoz, Gisell
Moreno-Perlin, Tonatiuh
Mouriño-Pérez, Rosa R.
Sánchez-Carbente, María del Rayo
Folch-Mallol, Jorge Luis
Pérez-Llano, Yordanis
Gunde-Cimerman, Nina
Sánchez, Nilda del C.
Batista-García, Ramón Alberto
Haloadaptative Responses of Aspergillus sydowii to Extreme Water Deprivation: Morphology, Compatible Solutes, and Oxidative Stress at NaCl Saturation
title Haloadaptative Responses of Aspergillus sydowii to Extreme Water Deprivation: Morphology, Compatible Solutes, and Oxidative Stress at NaCl Saturation
title_full Haloadaptative Responses of Aspergillus sydowii to Extreme Water Deprivation: Morphology, Compatible Solutes, and Oxidative Stress at NaCl Saturation
title_fullStr Haloadaptative Responses of Aspergillus sydowii to Extreme Water Deprivation: Morphology, Compatible Solutes, and Oxidative Stress at NaCl Saturation
title_full_unstemmed Haloadaptative Responses of Aspergillus sydowii to Extreme Water Deprivation: Morphology, Compatible Solutes, and Oxidative Stress at NaCl Saturation
title_short Haloadaptative Responses of Aspergillus sydowii to Extreme Water Deprivation: Morphology, Compatible Solutes, and Oxidative Stress at NaCl Saturation
title_sort haloadaptative responses of aspergillus sydowii to extreme water deprivation: morphology, compatible solutes, and oxidative stress at nacl saturation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7711451/
https://www.ncbi.nlm.nih.gov/pubmed/33260894
http://dx.doi.org/10.3390/jof6040316
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