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Extremely chaotolerant and kosmotolerant Aspergillus atacamensis – a metabolically versatile fungus suitable for recalcitrant biosolid treatment

Obligate halophily is extremely rare in fungi. Nevertheless, Aspergillus atacamensis (strain EXF-6660), isolated from a salt water-exposed cave in the Coastal Range hills of the hyperarid Atacama Desert in Chile, is an obligate halophile, with a broad optimum range from 1.5 to 3.4 M of NaCl. When we...

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Autores principales: Moreno-Perlin, Tonatiuh, Valdés-Muñoz, Gisell, Jiménez-Gómez, Irina, Gunde-Cimerman, Nina, Yarzábal Rodríguez, Luis Andrés, Sánchez-Carbente, María del Rayo, Vargas-Fernández, Alfaniris, Gutiérrez-Cepeda, Adrián, Batista-García, Ramón Alberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10338856/
https://www.ncbi.nlm.nih.gov/pubmed/37455742
http://dx.doi.org/10.3389/fmicb.2023.1191312
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author Moreno-Perlin, Tonatiuh
Valdés-Muñoz, Gisell
Jiménez-Gómez, Irina
Gunde-Cimerman, Nina
Yarzábal Rodríguez, Luis Andrés
Sánchez-Carbente, María del Rayo
Vargas-Fernández, Alfaniris
Gutiérrez-Cepeda, Adrián
Batista-García, Ramón Alberto
author_facet Moreno-Perlin, Tonatiuh
Valdés-Muñoz, Gisell
Jiménez-Gómez, Irina
Gunde-Cimerman, Nina
Yarzábal Rodríguez, Luis Andrés
Sánchez-Carbente, María del Rayo
Vargas-Fernández, Alfaniris
Gutiérrez-Cepeda, Adrián
Batista-García, Ramón Alberto
author_sort Moreno-Perlin, Tonatiuh
collection PubMed
description Obligate halophily is extremely rare in fungi. Nevertheless, Aspergillus atacamensis (strain EXF-6660), isolated from a salt water-exposed cave in the Coastal Range hills of the hyperarid Atacama Desert in Chile, is an obligate halophile, with a broad optimum range from 1.5 to 3.4 M of NaCl. When we tested its ability to grow at varied concentrations of both kosmotropic (NaCl, KCl, and sorbitol) and chaotropic (MgCl(2), LiCl, CaCl(2), and glycerol) solutes, stereoscopy and laser scanning microscopy revealed the formation of phialides and conidia. A. atacamensis EXF-6660 grew up to saturating levels of NaCl and at 2.0 M concentration of the chaotropic salt MgCl(2). Our findings confirmed that A. atacamensis is an obligate halophile that can grow at substantially higher MgCl(2) concentrations than 1.26 M, previously considered as the maximum limit supporting prokaryotic life. To assess the fungus’ metabolic versatility, we used the phenotype microarray technology Biolog FF MicroPlates. In the presence of 2.0 M NaCl concentration, strain EXF-6660 metabolism was highly versatile. A vast repertoire of organic molecules (~95% of the substrates present in Biolog FF MicroPlates) was metabolized when supplied as sole carbon sources, including numerous polycyclic aromatic hydrocarbons, benzene derivatives, dyes, and several carbohydrates. Finally, the biotechnological potential of A. atacamensis for xenobiotic degradation and biosolid treatment was investigated. Interestingly, it could remove biphenyls, diphenyl ethers, different pharmaceuticals, phenols, and polyaromatic hydrocarbons. Our combined findings show that A. atacamensis EXF-6660 is a highly chaotolerant, kosmotolerant, and xerotolerant fungus, potentially useful for xenobiotic and biosolid treatments.
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spelling pubmed-103388562023-07-14 Extremely chaotolerant and kosmotolerant Aspergillus atacamensis – a metabolically versatile fungus suitable for recalcitrant biosolid treatment Moreno-Perlin, Tonatiuh Valdés-Muñoz, Gisell Jiménez-Gómez, Irina Gunde-Cimerman, Nina Yarzábal Rodríguez, Luis Andrés Sánchez-Carbente, María del Rayo Vargas-Fernández, Alfaniris Gutiérrez-Cepeda, Adrián Batista-García, Ramón Alberto Front Microbiol Microbiology Obligate halophily is extremely rare in fungi. Nevertheless, Aspergillus atacamensis (strain EXF-6660), isolated from a salt water-exposed cave in the Coastal Range hills of the hyperarid Atacama Desert in Chile, is an obligate halophile, with a broad optimum range from 1.5 to 3.4 M of NaCl. When we tested its ability to grow at varied concentrations of both kosmotropic (NaCl, KCl, and sorbitol) and chaotropic (MgCl(2), LiCl, CaCl(2), and glycerol) solutes, stereoscopy and laser scanning microscopy revealed the formation of phialides and conidia. A. atacamensis EXF-6660 grew up to saturating levels of NaCl and at 2.0 M concentration of the chaotropic salt MgCl(2). Our findings confirmed that A. atacamensis is an obligate halophile that can grow at substantially higher MgCl(2) concentrations than 1.26 M, previously considered as the maximum limit supporting prokaryotic life. To assess the fungus’ metabolic versatility, we used the phenotype microarray technology Biolog FF MicroPlates. In the presence of 2.0 M NaCl concentration, strain EXF-6660 metabolism was highly versatile. A vast repertoire of organic molecules (~95% of the substrates present in Biolog FF MicroPlates) was metabolized when supplied as sole carbon sources, including numerous polycyclic aromatic hydrocarbons, benzene derivatives, dyes, and several carbohydrates. Finally, the biotechnological potential of A. atacamensis for xenobiotic degradation and biosolid treatment was investigated. Interestingly, it could remove biphenyls, diphenyl ethers, different pharmaceuticals, phenols, and polyaromatic hydrocarbons. Our combined findings show that A. atacamensis EXF-6660 is a highly chaotolerant, kosmotolerant, and xerotolerant fungus, potentially useful for xenobiotic and biosolid treatments. Frontiers Media S.A. 2023-06-28 /pmc/articles/PMC10338856/ /pubmed/37455742 http://dx.doi.org/10.3389/fmicb.2023.1191312 Text en Copyright © 2023 Moreno-Perlin, Valdés-Muñoz, Jiménez-Gómez, Gunde-Cimerman, Yarzábal Rodríguez, Sánchez-Carbente, Vargas-Fernández, Gutiérrez-Cepeda and Batista-García. https://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
Moreno-Perlin, Tonatiuh
Valdés-Muñoz, Gisell
Jiménez-Gómez, Irina
Gunde-Cimerman, Nina
Yarzábal Rodríguez, Luis Andrés
Sánchez-Carbente, María del Rayo
Vargas-Fernández, Alfaniris
Gutiérrez-Cepeda, Adrián
Batista-García, Ramón Alberto
Extremely chaotolerant and kosmotolerant Aspergillus atacamensis – a metabolically versatile fungus suitable for recalcitrant biosolid treatment
title Extremely chaotolerant and kosmotolerant Aspergillus atacamensis – a metabolically versatile fungus suitable for recalcitrant biosolid treatment
title_full Extremely chaotolerant and kosmotolerant Aspergillus atacamensis – a metabolically versatile fungus suitable for recalcitrant biosolid treatment
title_fullStr Extremely chaotolerant and kosmotolerant Aspergillus atacamensis – a metabolically versatile fungus suitable for recalcitrant biosolid treatment
title_full_unstemmed Extremely chaotolerant and kosmotolerant Aspergillus atacamensis – a metabolically versatile fungus suitable for recalcitrant biosolid treatment
title_short Extremely chaotolerant and kosmotolerant Aspergillus atacamensis – a metabolically versatile fungus suitable for recalcitrant biosolid treatment
title_sort extremely chaotolerant and kosmotolerant aspergillus atacamensis – a metabolically versatile fungus suitable for recalcitrant biosolid treatment
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10338856/
https://www.ncbi.nlm.nih.gov/pubmed/37455742
http://dx.doi.org/10.3389/fmicb.2023.1191312
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