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Mixotrophy in a Local Strain of Nannochloropsis granulata for Renewable High-Value Biomass Production on the West Coast of Sweden

A local strain of Nannochloropsis granulata (Ng) has been reported as the most productive microalgal strain in terms of both biomass yield and lipid content when cultivated in photobioreactors that simulate the light and temperature conditions during the summer on the west coast of Sweden. To furthe...

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Autores principales: Villanova, Valeria, Galasso, Christian, Vitale, Giovanni Andrea, Della Sala, Gerardo, Engelbrektsson, Johan, Strömberg, Niklas, Shaikh, Kashif Mohd, Andersson, Mats X., Palma Esposito, Fortunato, Ekendahl, Susanne, De Pascale, Donatella, Spetea, Cornelia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316773/
https://www.ncbi.nlm.nih.gov/pubmed/35877717
http://dx.doi.org/10.3390/md20070424
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author Villanova, Valeria
Galasso, Christian
Vitale, Giovanni Andrea
Della Sala, Gerardo
Engelbrektsson, Johan
Strömberg, Niklas
Shaikh, Kashif Mohd
Andersson, Mats X.
Palma Esposito, Fortunato
Ekendahl, Susanne
De Pascale, Donatella
Spetea, Cornelia
author_facet Villanova, Valeria
Galasso, Christian
Vitale, Giovanni Andrea
Della Sala, Gerardo
Engelbrektsson, Johan
Strömberg, Niklas
Shaikh, Kashif Mohd
Andersson, Mats X.
Palma Esposito, Fortunato
Ekendahl, Susanne
De Pascale, Donatella
Spetea, Cornelia
author_sort Villanova, Valeria
collection PubMed
description A local strain of Nannochloropsis granulata (Ng) has been reported as the most productive microalgal strain in terms of both biomass yield and lipid content when cultivated in photobioreactors that simulate the light and temperature conditions during the summer on the west coast of Sweden. To further increase the biomass and the biotechnological potential of this strain in these conditions, mixotrophic growth (i.e., the simultaneous use of photosynthesis and respiration) with glycerol as an external carbon source was investigated in this study and compared with phototrophic growth that made use of air enriched with 1–2% CO(2). The addition of either glycerol or CO(2)-enriched air stimulated the growth of Ng and theproduction of high-value long-chain polyunsaturated fatty acids (EPA) as well as the carotenoid canthaxanthin. Bioassays in human prostate cell lines indicated the highest antitumoral activity for Ng extracts and fractions from mixotrophic conditions. Metabolomics detected betaine lipids specifically in the bioactive fractions, suggesting their involvement in the observed antitumoral effect. Genes related to autophagy were found to be upregulated by the most bioactive fraction, suggesting a possible therapeutic target against prostate cancer progression. Taken together, our results suggest that the local Ng strain can be cultivated mixotrophically in summer conditions on the west coast of Sweden for the production of high-value biomass containing antiproliferative compounds, carotenoids, and EPA.
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spelling pubmed-93167732022-07-27 Mixotrophy in a Local Strain of Nannochloropsis granulata for Renewable High-Value Biomass Production on the West Coast of Sweden Villanova, Valeria Galasso, Christian Vitale, Giovanni Andrea Della Sala, Gerardo Engelbrektsson, Johan Strömberg, Niklas Shaikh, Kashif Mohd Andersson, Mats X. Palma Esposito, Fortunato Ekendahl, Susanne De Pascale, Donatella Spetea, Cornelia Mar Drugs Article A local strain of Nannochloropsis granulata (Ng) has been reported as the most productive microalgal strain in terms of both biomass yield and lipid content when cultivated in photobioreactors that simulate the light and temperature conditions during the summer on the west coast of Sweden. To further increase the biomass and the biotechnological potential of this strain in these conditions, mixotrophic growth (i.e., the simultaneous use of photosynthesis and respiration) with glycerol as an external carbon source was investigated in this study and compared with phototrophic growth that made use of air enriched with 1–2% CO(2). The addition of either glycerol or CO(2)-enriched air stimulated the growth of Ng and theproduction of high-value long-chain polyunsaturated fatty acids (EPA) as well as the carotenoid canthaxanthin. Bioassays in human prostate cell lines indicated the highest antitumoral activity for Ng extracts and fractions from mixotrophic conditions. Metabolomics detected betaine lipids specifically in the bioactive fractions, suggesting their involvement in the observed antitumoral effect. Genes related to autophagy were found to be upregulated by the most bioactive fraction, suggesting a possible therapeutic target against prostate cancer progression. Taken together, our results suggest that the local Ng strain can be cultivated mixotrophically in summer conditions on the west coast of Sweden for the production of high-value biomass containing antiproliferative compounds, carotenoids, and EPA. MDPI 2022-06-28 /pmc/articles/PMC9316773/ /pubmed/35877717 http://dx.doi.org/10.3390/md20070424 Text en © 2022 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
Villanova, Valeria
Galasso, Christian
Vitale, Giovanni Andrea
Della Sala, Gerardo
Engelbrektsson, Johan
Strömberg, Niklas
Shaikh, Kashif Mohd
Andersson, Mats X.
Palma Esposito, Fortunato
Ekendahl, Susanne
De Pascale, Donatella
Spetea, Cornelia
Mixotrophy in a Local Strain of Nannochloropsis granulata for Renewable High-Value Biomass Production on the West Coast of Sweden
title Mixotrophy in a Local Strain of Nannochloropsis granulata for Renewable High-Value Biomass Production on the West Coast of Sweden
title_full Mixotrophy in a Local Strain of Nannochloropsis granulata for Renewable High-Value Biomass Production on the West Coast of Sweden
title_fullStr Mixotrophy in a Local Strain of Nannochloropsis granulata for Renewable High-Value Biomass Production on the West Coast of Sweden
title_full_unstemmed Mixotrophy in a Local Strain of Nannochloropsis granulata for Renewable High-Value Biomass Production on the West Coast of Sweden
title_short Mixotrophy in a Local Strain of Nannochloropsis granulata for Renewable High-Value Biomass Production on the West Coast of Sweden
title_sort mixotrophy in a local strain of nannochloropsis granulata for renewable high-value biomass production on the west coast of sweden
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9316773/
https://www.ncbi.nlm.nih.gov/pubmed/35877717
http://dx.doi.org/10.3390/md20070424
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