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Meyerozyma caribbica Isolated from Vinasse-Irrigated Sugarcane Plantation Soil: A Promising Yeast for Ethanol and Xylitol Production in Biorefineries

The production of fuels and other industrial products from renewable sources has intensified the search for new substrates or for the expansion of the use of substrates already in use, as well as the search for microorganisms with different metabolic capacities. In the present work, we isolated and...

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Autores principales: Alencar, Bárbara Ribeiro Alves, de Freitas, Renan Anderson Alves, Guimarães, Victor Emanuel Petrício, Silva, Rayssa Karla, Elsztein, Carolina, da Silva, Suzyanne Porfírio, Dutra, Emmanuel Damilano, de Morais Junior, Marcos Antonio, de Souza, Rafael Barros
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10455855/
https://www.ncbi.nlm.nih.gov/pubmed/37623560
http://dx.doi.org/10.3390/jof9080789
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author Alencar, Bárbara Ribeiro Alves
de Freitas, Renan Anderson Alves
Guimarães, Victor Emanuel Petrício
Silva, Rayssa Karla
Elsztein, Carolina
da Silva, Suzyanne Porfírio
Dutra, Emmanuel Damilano
de Morais Junior, Marcos Antonio
de Souza, Rafael Barros
author_facet Alencar, Bárbara Ribeiro Alves
de Freitas, Renan Anderson Alves
Guimarães, Victor Emanuel Petrício
Silva, Rayssa Karla
Elsztein, Carolina
da Silva, Suzyanne Porfírio
Dutra, Emmanuel Damilano
de Morais Junior, Marcos Antonio
de Souza, Rafael Barros
author_sort Alencar, Bárbara Ribeiro Alves
collection PubMed
description The production of fuels and other industrial products from renewable sources has intensified the search for new substrates or for the expansion of the use of substrates already in use, as well as the search for microorganisms with different metabolic capacities. In the present work, we isolated and tested a yeast from the soil of sugarcane irrigated with vinasse, that is, with high mineral content and acidic pH. The strain of Meyerozyma caribbica URM 8365 was able to ferment glucose, but the use of xylose occurred when some oxygenation was provided. However, some fermentation of xylose to ethanol in oxygen limitation also occurs if glucose was present. This strain was able to produce ethanol from molasses substrate with 76% efficiency, showing its tolerance to possible inhibitors. High ethanol production efficiencies were also observed in acidic hydrolysates of each bagasse, sorghum, and cactus pear biomass. Mixtures of these substrates were tested and the best composition was found for the use of excess plant biomass in supplementation of primary substrates. It was also possible to verify the production of xylitol from xylose when the acetic acid concentration is reduced. Finally, the proposed metabolic model allowed calculating how much of the xylose carbon can be directed to the production of ethanol and/or xylitol in the presence of glucose. With this, it is possible to design an industrial plant that combines the production of ethanol and/or xylitol using combinations of primary substrates with hydrolysates of their biomass.
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spelling pubmed-104558552023-08-26 Meyerozyma caribbica Isolated from Vinasse-Irrigated Sugarcane Plantation Soil: A Promising Yeast for Ethanol and Xylitol Production in Biorefineries Alencar, Bárbara Ribeiro Alves de Freitas, Renan Anderson Alves Guimarães, Victor Emanuel Petrício Silva, Rayssa Karla Elsztein, Carolina da Silva, Suzyanne Porfírio Dutra, Emmanuel Damilano de Morais Junior, Marcos Antonio de Souza, Rafael Barros J Fungi (Basel) Article The production of fuels and other industrial products from renewable sources has intensified the search for new substrates or for the expansion of the use of substrates already in use, as well as the search for microorganisms with different metabolic capacities. In the present work, we isolated and tested a yeast from the soil of sugarcane irrigated with vinasse, that is, with high mineral content and acidic pH. The strain of Meyerozyma caribbica URM 8365 was able to ferment glucose, but the use of xylose occurred when some oxygenation was provided. However, some fermentation of xylose to ethanol in oxygen limitation also occurs if glucose was present. This strain was able to produce ethanol from molasses substrate with 76% efficiency, showing its tolerance to possible inhibitors. High ethanol production efficiencies were also observed in acidic hydrolysates of each bagasse, sorghum, and cactus pear biomass. Mixtures of these substrates were tested and the best composition was found for the use of excess plant biomass in supplementation of primary substrates. It was also possible to verify the production of xylitol from xylose when the acetic acid concentration is reduced. Finally, the proposed metabolic model allowed calculating how much of the xylose carbon can be directed to the production of ethanol and/or xylitol in the presence of glucose. With this, it is possible to design an industrial plant that combines the production of ethanol and/or xylitol using combinations of primary substrates with hydrolysates of their biomass. MDPI 2023-07-26 /pmc/articles/PMC10455855/ /pubmed/37623560 http://dx.doi.org/10.3390/jof9080789 Text en © 2023 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
Alencar, Bárbara Ribeiro Alves
de Freitas, Renan Anderson Alves
Guimarães, Victor Emanuel Petrício
Silva, Rayssa Karla
Elsztein, Carolina
da Silva, Suzyanne Porfírio
Dutra, Emmanuel Damilano
de Morais Junior, Marcos Antonio
de Souza, Rafael Barros
Meyerozyma caribbica Isolated from Vinasse-Irrigated Sugarcane Plantation Soil: A Promising Yeast for Ethanol and Xylitol Production in Biorefineries
title Meyerozyma caribbica Isolated from Vinasse-Irrigated Sugarcane Plantation Soil: A Promising Yeast for Ethanol and Xylitol Production in Biorefineries
title_full Meyerozyma caribbica Isolated from Vinasse-Irrigated Sugarcane Plantation Soil: A Promising Yeast for Ethanol and Xylitol Production in Biorefineries
title_fullStr Meyerozyma caribbica Isolated from Vinasse-Irrigated Sugarcane Plantation Soil: A Promising Yeast for Ethanol and Xylitol Production in Biorefineries
title_full_unstemmed Meyerozyma caribbica Isolated from Vinasse-Irrigated Sugarcane Plantation Soil: A Promising Yeast for Ethanol and Xylitol Production in Biorefineries
title_short Meyerozyma caribbica Isolated from Vinasse-Irrigated Sugarcane Plantation Soil: A Promising Yeast for Ethanol and Xylitol Production in Biorefineries
title_sort meyerozyma caribbica isolated from vinasse-irrigated sugarcane plantation soil: a promising yeast for ethanol and xylitol production in biorefineries
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10455855/
https://www.ncbi.nlm.nih.gov/pubmed/37623560
http://dx.doi.org/10.3390/jof9080789
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